ccdc180 cDNA ORF clone, Danio rerio(zebrafish)

The following ccdc180 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ccdc180 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
ODa59268 XM_021476628.1
Latest version!
Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $426.30
$609.00
ODa59268 XM_017356333.2
Latest version!
Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $426.30
$609.00
ODa50621 XM_009301798.3
Latest version!
Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 20 $629.30
$899.00
ODa50621 XM_021476626.1
Latest version!
Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 20 $629.30
$899.00
ODa10940 XM_003198660.4
Latest version!
Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $797.30
$1139.00
ODa10940 XM_021476625.1
Latest version!
Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $797.30
$1139.00
View Old Accession Versions >>
ODa10940 XM_003198660.3 Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $797.30
$1139.00
ODa50621 XM_009301798.2 Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 20 $629.30
$899.00
ODa59268 XM_017356333.1 Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $426.30
$609.00
Hide Old Accession Versions >>

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID ODa59268
    Clone ID Related Accession (Same CDS sequence) XM_017356333.1 , XM_021476628.1 , XM_017356333.2
    Accession Version XM_017356333.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2229bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-06-23
    Organism Danio rerio(Zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X3
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.6) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGGCTAA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_017211822.1
    CDS177..2405
    Translation

    Target ORF information:

    RefSeq Version XM_017356333.1
    Organism Danio rerio(Zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017356333.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGGCTAA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ODa59268
    Clone ID Related Accession (Same CDS sequence) XM_017356333.1 , XM_021476628.1 , XM_017356333.2
    Accession Version XM_021476628.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2229bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-06-14
    Organism Danio rerio(zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.7) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGGCTAA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021332303.1
    CDS347..2575
    Translation

    Target ORF information:

    RefSeq Version XM_021476628.1
    Organism Danio rerio(zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021476628.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGGCTAA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ODa59268
    Clone ID Related Accession (Same CDS sequence) XM_017356333.1 , XM_021476628.1 , XM_017356333.2
    Accession Version XM_017356333.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2229bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-06-14
    Organism Danio rerio(zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_018394610.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 15, 2017 this sequence version replaced XM_017356333.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGGCTAA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_017211822.1
    CDS347..2575
    Translation

    Target ORF information:

    RefSeq Version XM_017356333.2
    Organism Danio rerio(zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017356333.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGGCTAA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ODa50621
    Clone ID Related Accession (Same CDS sequence) XM_009301798.2 , XM_021476626.1 , XM_009301798.3
    Accession Version XM_009301798.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3267bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-06-23
    Organism Danio rerio(Zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X2
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.6) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2016 this sequence version replaced XM_009301798.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGTCCACAT GCGGTTTCAC TTCGGATGAG ATACAGAATT TTGTTAACAC TGATATATTA 
    CCTCTCATTG GCCCATGCCA GTCACAAACG GAGATCTATT TGGAAAAACT GGATAAAGCT
    TTTGAAAGTC TGGCCAAAAC TACTGCTGAC GAGAGCAAGT GCTTATTCAG GTTAATGTGT
    GGGGCAGCTC AGCTGTGGGA GATCCACTGC AAAGGCCTGT TGAGCAGAGA ACAGCAACTG
    CAAAATTCAT TGGAGGTCAT CAGTCAAGTC CATGAGCAAG AGAACCAGAG GAAAGAGGCC
    CAGCTGGATA TGATGTTGGA CAAACTCAGA CAGGAAAGTT CAGAAGAAGC TCTGAAGGCC
    TCATTAGAGA AAATACTAAC CTATTTGGAG GAAGTTAAGA ATGGGTATGT GCAAACCTAT
    GAAGAGGAAG TGGAAATTGT GGAGTATTAT CCATCTACAG TACTGCAGGA ACTACAAGCA
    TACAGTCTTT CTGTTAGCCA GTTCTTCAGT GCTGAAGAGG TTTATGGTCA GGACCATAAG
    GATTTTTGCC AAATTTATCC TTCTCTTAAA CTTGATCAAA ACATAAAAAC TGGTAAAAAC
    ATAACACATA AAGATGCACC AAAGTCACAT TTCAACAATC AAGAAAGCTC AAACTTCGAC
    CTGTCCTGTG CAACGGATGA CCAACACTGT ACGGCTTTAG CATTTTTATT CTCAAACACC
    AAGGAGACTC TGATCACTGC AAAAGGAAAT GTGTACAGCT GCTCTGGGTT TCATACTACT
    AATGATGAGG AAGAGGAGAA AAACTTAAAG GAAATTGAAT TGGTTTTGTA CCCAAAAACT
    TTTACTGTTG AAGTTCTAAA AGAAGTAAGA CAAACATTTT TTAGCACTCT GGAAGAGCGA
    TTTCACATTA TTCTAACCAA CACAACAGCT ATTGTGGAGG CCAAGAAGGA GAAACTGAAA
    GCTGAGTTTA ACCTTCGCGT CCAGCTACAC CAAACTCGTG CTGCAAGAAT CGAAATGGAC
    ATTTACAGTG TCAGAGCAGC TGAACTCGCA CACCATCGAG AACGTGTGGA TCAACACTGT
    AGGGGTATAC AGCAGGTGCT CGAAAACTCC CAGACAGACT TACAAGAGTT ACAGGTCCAG
    CTGAATAAAC TGACTGAAGA CTTTCAAATG CAAATCTACA AAAGAGAGAA AGATTTCATC
    GTTGGCACTA GTTCTGAAAA GCTAAATAGA CTTTGGAACT CACTTCAATC CAGCCTGGAC
    AAACTCATCA GTGTTATCCA GATTTCACAA AGAGACTTCA GACAAAAGAT TGAGTTCAGG
    ATGGAGGGTC TGAGGGAGTC AAATGTTCAG ATAATGAGAT CTTTTAAATT GTTTTCTGAG
    GGGGGGAATT TTACACCCCA GGAAATTGAG GTCTTTCAGT CACAACTGGA AAAGATGGAC
    AAGCGCATTG ATACCGCAGA GGGGGCCGTG ATACAGGACA TGGAGGATAG AGAATCAAAG
    TGTCTGGACC AGGCCAAGGA TATTTTCAGG AGGTTTGGGG AAAAATTCAG TTTTCATGCT
    AATGACCTGA AGTTTCTTGA AAAAATGCAA CAAATTTTTA CCAACACACG AGTCCAGATT
    AAGAGCGAGG CTTTGAAGAG TAACATGCAG AAAAAGATGA TTGATAGCAT GCTGCGTGAT
    TTAAAACAAA TGACTGCTGA GTATTACCAA CCATGTCCTG ATAAGAAGAT TGTAACCGTA
    GTGGAGATAA CCAGTTTAAC AACTTCTCTG ATGGAGGAAC TAAAGAAGAG GTGTCAGTAC
    CTTGACTGCT TTTTGGATGC CTCAATGGCT GCCCCCCGAC CAGAGACTCC ATTTCAGGGG
    GCTTTTGCAG TCGCAGCCCG CTCCAGATCT CGTACACAGG AAACCACAGG CAGTCCAGAG
    AGAGAGGGCC TGCTACATCC TAGTCGCATT GGAGCTTCTT TTCTGGATGA TGCGGCAGTG
    GGAGTTATTA AAAGCCTACT CAAGGTAGGT AAAGCTCAAA ACCTCAAGGA AGACAACTGT
    GACTCAGCAG AACAACGCGC TTCATCAGCA AGGTTAAACT CACCCCATGG ATCAGGTCGA
    AGGTCAGGAA AGAGTCTCAG TCAGTCTGGA ATAGAAACTG TCCGCAGAAA GTCAGTGGAG
    TCAATAAACA TACAAAGTTC TATAAGTGTA AAGAGGTTGC CAAAACTTAA CCGATTTGAC
    AAGAAGTACC TTATTTTTGG CTCCAACCCC GAAGAGCAGA AGAACAGTGT TTGCTTCAAA
    ACTTCAATTA CTGGTATTCT GTGGAAAGCC AATGATATTC TTCTCATGGT GGCTGAGGAG
    TTCTATAAGA AAGAGCGCCG CCCTATCACT CGTTCCGAGC AACTGCAGGA GACGTTTGAT
    CAATGTGCAG AGGAGATACA GAAAAGACTT CTGGTCTACC AGAGCCAAGC ACATGACTAC
    CACAACAGCT GCCTGCAAGA ATTTCAGCAG CAGTTGAAAG CCATTGAAGA GTTTCTGTCA
    TGTGTACCAG AGATACTTTT CTCTAAACTG AGAGATCAAC ACCTTGAGGA GCTGACGCAA
    AGCATGATAC AAATTCAACA CCGGTTCAAA CTAGTTCAAC AGCGGAGTGA ACAAAACAGG
    AGAGAGCATA GTGGTCAGTT GCGTGTGCGT CTCAGTCACC CGGCTTGTGA GAGGGAACTC
    AAAGCGTTGG TGGAGGCTGA AGAGCAGAGA CAGAGACATC ACAGAGAGGC CATCCAGCAT
    ACCAGACAGG AACTTCAGGC CTGTGTCATC AAAAACGCCG AGGAATCTGT CACTGCTTTT
    GCCAGGTTGG CAGAGGCCCT GCTATTTCAG TTCGACAATC TCATTACCAT CCATGAGGTT
    CAAGTGGGAC ATGCTGAACA AAAGGAGAAT TTCACTACTC TGCTTCGACA AACACAAACT
    GGACTTTTGC AAGAGGACAC GAGCAGTGCT GTGATACAGA AAGGCAGCAG AATATGGCCA
    GGCATTTGTT ATTTCGGTTT CACTGATGGC AGCTCAGAAC ATAAACAATC ACAAGGAACA
    GCCACAATCA CAACGGCTAA AACCACACTG GCACATCTTA AGACCATTGA AGTTCGAGAC
    ACCATGCATG AGCGGTATGG GCGGAGGGTT CAGGAGGAGC TGGATAGAGC TCATCGGGAG
    TGTGACGCTC AGGAAAAAGA GCTGCAGCAG TGGCATGAGC ACTGGCAGAG TCAGCTAAAA
    TCCCTCGCCT CACTCAACTC CGAATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_009300073.1
    CDS70..3336
    Translation

    Target ORF information:

    RefSeq Version XM_009301798.2
    Organism Danio rerio(Zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_009301798.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGTCCACAT GCGGTTTCAC TTCGGATGAG ATACAGAATT TTGTTAACAC TGATATATTA 
    CCTCTCATTG GCCCATGCCA GTCACAAACG GAGATCTATT TGGAAAAACT GGATAAAGCT
    TTTGAAAGTC TGGCCAAAAC TACTGCTGAC GAGAGCAAGT GCTTATTCAG GTTAATGTGT
    GGGGCAGCTC AGCTGTGGGA GATCCACTGC AAAGGCCTGT TGAGCAGAGA ACAGCAACTG
    CAAAATTCAT TGGAGGTCAT CAGTCAAGTC CATGAGCAAG AGAACCAGAG GAAAGAGGCC
    CAGCTGGATA TGATGTTGGA CAAACTCAGA CAGGAAAGTT CAGAAGAAGC TCTGAAGGCC
    TCATTAGAGA AAATACTAAC CTATTTGGAG GAAGTTAAGA ATGGGTATGT GCAAACCTAT
    GAAGAGGAAG TGGAAATTGT GGAGTATTAT CCATCTACAG TACTGCAGGA ACTACAAGCA
    TACAGTCTTT CTGTTAGCCA GTTCTTCAGT GCTGAAGAGG TTTATGGTCA GGACCATAAG
    GATTTTTGCC AAATTTATCC TTCTCTTAAA CTTGATCAAA ACATAAAAAC TGGTAAAAAC
    ATAACACATA AAGATGCACC AAAGTCACAT TTCAACAATC AAGAAAGCTC AAACTTCGAC
    CTGTCCTGTG CAACGGATGA CCAACACTGT ACGGCTTTAG CATTTTTATT CTCAAACACC
    AAGGAGACTC TGATCACTGC AAAAGGAAAT GTGTACAGCT GCTCTGGGTT TCATACTACT
    AATGATGAGG AAGAGGAGAA AAACTTAAAG GAAATTGAAT TGGTTTTGTA CCCAAAAACT
    TTTACTGTTG AAGTTCTAAA AGAAGTAAGA CAAACATTTT TTAGCACTCT GGAAGAGCGA
    TTTCACATTA TTCTAACCAA CACAACAGCT ATTGTGGAGG CCAAGAAGGA GAAACTGAAA
    GCTGAGTTTA ACCTTCGCGT CCAGCTACAC CAAACTCGTG CTGCAAGAAT CGAAATGGAC
    ATTTACAGTG TCAGAGCAGC TGAACTCGCA CACCATCGAG AACGTGTGGA TCAACACTGT
    AGGGGTATAC AGCAGGTGCT CGAAAACTCC CAGACAGACT TACAAGAGTT ACAGGTCCAG
    CTGAATAAAC TGACTGAAGA CTTTCAAATG CAAATCTACA AAAGAGAGAA AGATTTCATC
    GTTGGCACTA GTTCTGAAAA GCTAAATAGA CTTTGGAACT CACTTCAATC CAGCCTGGAC
    AAACTCATCA GTGTTATCCA GATTTCACAA AGAGACTTCA GACAAAAGAT TGAGTTCAGG
    ATGGAGGGTC TGAGGGAGTC AAATGTTCAG ATAATGAGAT CTTTTAAATT GTTTTCTGAG
    GGGGGGAATT TTACACCCCA GGAAATTGAG GTCTTTCAGT CACAACTGGA AAAGATGGAC
    AAGCGCATTG ATACCGCAGA GGGGGCCGTG ATACAGGACA TGGAGGATAG AGAATCAAAG
    TGTCTGGACC AGGCCAAGGA TATTTTCAGG AGGTTTGGGG AAAAATTCAG TTTTCATGCT
    AATGACCTGA AGTTTCTTGA AAAAATGCAA CAAATTTTTA CCAACACACG AGTCCAGATT
    AAGAGCGAGG CTTTGAAGAG TAACATGCAG AAAAAGATGA TTGATAGCAT GCTGCGTGAT
    TTAAAACAAA TGACTGCTGA GTATTACCAA CCATGTCCTG ATAAGAAGAT TGTAACCGTA
    GTGGAGATAA CCAGTTTAAC AACTTCTCTG ATGGAGGAAC TAAAGAAGAG GTGTCAGTAC
    CTTGACTGCT TTTTGGATGC CTCAATGGCT GCCCCCCGAC CAGAGACTCC ATTTCAGGGG
    GCTTTTGCAG TCGCAGCCCG CTCCAGATCT CGTACACAGG AAACCACAGG CAGTCCAGAG
    AGAGAGGGCC TGCTACATCC TAGTCGCATT GGAGCTTCTT TTCTGGATGA TGCGGCAGTG
    GGAGTTATTA AAAGCCTACT CAAGGTAGGT AAAGCTCAAA ACCTCAAGGA AGACAACTGT
    GACTCAGCAG AACAACGCGC TTCATCAGCA AGGTTAAACT CACCCCATGG ATCAGGTCGA
    AGGTCAGGAA AGAGTCTCAG TCAGTCTGGA ATAGAAACTG TCCGCAGAAA GTCAGTGGAG
    TCAATAAACA TACAAAGTTC TATAAGTGTA AAGAGGTTGC CAAAACTTAA CCGATTTGAC
    AAGAAGTACC TTATTTTTGG CTCCAACCCC GAAGAGCAGA AGAACAGTGT TTGCTTCAAA
    ACTTCAATTA CTGGTATTCT GTGGAAAGCC AATGATATTC TTCTCATGGT GGCTGAGGAG
    TTCTATAAGA AAGAGCGCCG CCCTATCACT CGTTCCGAGC AACTGCAGGA GACGTTTGAT
    CAATGTGCAG AGGAGATACA GAAAAGACTT CTGGTCTACC AGAGCCAAGC ACATGACTAC
    CACAACAGCT GCCTGCAAGA ATTTCAGCAG CAGTTGAAAG CCATTGAAGA GTTTCTGTCA
    TGTGTACCAG AGATACTTTT CTCTAAACTG AGAGATCAAC ACCTTGAGGA GCTGACGCAA
    AGCATGATAC AAATTCAACA CCGGTTCAAA CTAGTTCAAC AGCGGAGTGA ACAAAACAGG
    AGAGAGCATA GTGGTCAGTT GCGTGTGCGT CTCAGTCACC CGGCTTGTGA GAGGGAACTC
    AAAGCGTTGG TGGAGGCTGA AGAGCAGAGA CAGAGACATC ACAGAGAGGC CATCCAGCAT
    ACCAGACAGG AACTTCAGGC CTGTGTCATC AAAAACGCCG AGGAATCTGT CACTGCTTTT
    GCCAGGTTGG CAGAGGCCCT GCTATTTCAG TTCGACAATC TCATTACCAT CCATGAGGTT
    CAAGTGGGAC ATGCTGAACA AAAGGAGAAT TTCACTACTC TGCTTCGACA AACACAAACT
    GGACTTTTGC AAGAGGACAC GAGCAGTGCT GTGATACAGA AAGGCAGCAG AATATGGCCA
    GGCATTTGTT ATTTCGGTTT CACTGATGGC AGCTCAGAAC ATAAACAATC ACAAGGAACA
    GCCACAATCA CAACGGCTAA AACCACACTG GCACATCTTA AGACCATTGA AGTTCGAGAC
    ACCATGCATG AGCGGTATGG GCGGAGGGTT CAGGAGGAGC TGGATAGAGC TCATCGGGAG
    TGTGACGCTC AGGAAAAAGA GCTGCAGCAG TGGCATGAGC ACTGGCAGAG TCAGCTAAAA
    TCCCTCGCCT CACTCAACTC CGAATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ODa50621
    Clone ID Related Accession (Same CDS sequence) XM_009301798.2 , XM_021476626.1 , XM_009301798.3
    Accession Version XM_021476626.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3267bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-06-14
    Organism Danio rerio(zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.7) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGTCCACAT GCGGTTTCAC TTCGGATGAG ATACAGAATT TTGTTAACAC TGATATATTA 
    CCTCTCATTG GCCCATGCCA GTCACAAACG GAGATCTATT TGGAAAAACT GGATAAAGCT
    TTTGAAAGTC TGGCCAAAAC TACTGCTGAC GAGAGCAAGT GCTTATTCAG GTTAATGTGT
    GGGGCAGCTC AGCTGTGGGA GATCCACTGC AAAGGCCTGT TGAGCAGAGA ACAGCAACTG
    CAAAATTCAT TGGAGGTCAT CAGTCAAGTC CATGAGCAAG AGAACCAGAG GAAAGAGGCC
    CAGCTGGATA TGATGTTGGA CAAACTCAGA CAGGAAAGTT CAGAAGAAGC TCTGAAGGCC
    TCATTAGAGA AAATACTAAC CTATTTGGAG GAAGTTAAGA ATGGGTATGT GCAAACCTAT
    GAAGAGGAAG TGGAAATTGT GGAGTATTAT CCATCTACAG TACTGCAGGA ACTACAAGCA
    TACAGTCTTT CTGTTAGCCA GTTCTTCAGT GCTGAAGAGG TTTATGGTCA GGACCATAAG
    GATTTTTGCC AAATTTATCC TTCTCTTAAA CTTGATCAAA ACATAAAAAC TGGTAAAAAC
    ATAACACATA AAGATGCACC AAAGTCACAT TTCAACAATC AAGAAAGCTC AAACTTCGAC
    CTGTCCTGTG CAACGGATGA CCAACACTGT ACGGCTTTAG CATTTTTATT CTCAAACACC
    AAGGAGACTC TGATCACTGC AAAAGGAAAT GTGTACAGCT GCTCTGGGTT TCATACTACT
    AATGATGAGG AAGAGGAGAA AAACTTAAAG GAAATTGAAT TGGTTTTGTA CCCAAAAACT
    TTTACTGTTG AAGTTCTAAA AGAAGTAAGA CAAACATTTT TTAGCACTCT GGAAGAGCGA
    TTTCACATTA TTCTAACCAA CACAACAGCT ATTGTGGAGG CCAAGAAGGA GAAACTGAAA
    GCTGAGTTTA ACCTTCGCGT CCAGCTACAC CAAACTCGTG CTGCAAGAAT CGAAATGGAC
    ATTTACAGTG TCAGAGCAGC TGAACTCGCA CACCATCGAG AACGTGTGGA TCAACACTGT
    AGGGGTATAC AGCAGGTGCT CGAAAACTCC CAGACAGACT TACAAGAGTT ACAGGTCCAG
    CTGAATAAAC TGACTGAAGA CTTTCAAATG CAAATCTACA AAAGAGAGAA AGATTTCATC
    GTTGGCACTA GTTCTGAAAA GCTAAATAGA CTTTGGAACT CACTTCAATC CAGCCTGGAC
    AAACTCATCA GTGTTATCCA GATTTCACAA AGAGACTTCA GACAAAAGAT TGAGTTCAGG
    ATGGAGGGTC TGAGGGAGTC AAATGTTCAG ATAATGAGAT CTTTTAAATT GTTTTCTGAG
    GGGGGGAATT TTACACCCCA GGAAATTGAG GTCTTTCAGT CACAACTGGA AAAGATGGAC
    AAGCGCATTG ATACCGCAGA GGGGGCCGTG ATACAGGACA TGGAGGATAG AGAATCAAAG
    TGTCTGGACC AGGCCAAGGA TATTTTCAGG AGGTTTGGGG AAAAATTCAG TTTTCATGCT
    AATGACCTGA AGTTTCTTGA AAAAATGCAA CAAATTTTTA CCAACACACG AGTCCAGATT
    AAGAGCGAGG CTTTGAAGAG TAACATGCAG AAAAAGATGA TTGATAGCAT GCTGCGTGAT
    TTAAAACAAA TGACTGCTGA GTATTACCAA CCATGTCCTG ATAAGAAGAT TGTAACCGTA
    GTGGAGATAA CCAGTTTAAC AACTTCTCTG ATGGAGGAAC TAAAGAAGAG GTGTCAGTAC
    CTTGACTGCT TTTTGGATGC CTCAATGGCT GCCCCCCGAC CAGAGACTCC ATTTCAGGGG
    GCTTTTGCAG TCGCAGCCCG CTCCAGATCT CGTACACAGG AAACCACAGG CAGTCCAGAG
    AGAGAGGGCC TGCTACATCC TAGTCGCATT GGAGCTTCTT TTCTGGATGA TGCGGCAGTG
    GGAGTTATTA AAAGCCTACT CAAGGTAGGT AAAGCTCAAA ACCTCAAGGA AGACAACTGT
    GACTCAGCAG AACAACGCGC TTCATCAGCA AGGTTAAACT CACCCCATGG ATCAGGTCGA
    AGGTCAGGAA AGAGTCTCAG TCAGTCTGGA ATAGAAACTG TCCGCAGAAA GTCAGTGGAG
    TCAATAAACA TACAAAGTTC TATAAGTGTA AAGAGGTTGC CAAAACTTAA CCGATTTGAC
    AAGAAGTACC TTATTTTTGG CTCCAACCCC GAAGAGCAGA AGAACAGTGT TTGCTTCAAA
    ACTTCAATTA CTGGTATTCT GTGGAAAGCC AATGATATTC TTCTCATGGT GGCTGAGGAG
    TTCTATAAGA AAGAGCGCCG CCCTATCACT CGTTCCGAGC AACTGCAGGA GACGTTTGAT
    CAATGTGCAG AGGAGATACA GAAAAGACTT CTGGTCTACC AGAGCCAAGC ACATGACTAC
    CACAACAGCT GCCTGCAAGA ATTTCAGCAG CAGTTGAAAG CCATTGAAGA GTTTCTGTCA
    TGTGTACCAG AGATACTTTT CTCTAAACTG AGAGATCAAC ACCTTGAGGA GCTGACGCAA
    AGCATGATAC AAATTCAACA CCGGTTCAAA CTAGTTCAAC AGCGGAGTGA ACAAAACAGG
    AGAGAGCATA GTGGTCAGTT GCGTGTGCGT CTCAGTCACC CGGCTTGTGA GAGGGAACTC
    AAAGCGTTGG TGGAGGCTGA AGAGCAGAGA CAGAGACATC ACAGAGAGGC CATCCAGCAT
    ACCAGACAGG AACTTCAGGC CTGTGTCATC AAAAACGCCG AGGAATCTGT CACTGCTTTT
    GCCAGGTTGG CAGAGGCCCT GCTATTTCAG TTCGACAATC TCATTACCAT CCATGAGGTT
    CAAGTGGGAC ATGCTGAACA AAAGGAGAAT TTCACTACTC TGCTTCGACA AACACAAACT
    GGACTTTTGC AAGAGGACAC GAGCAGTGCT GTGATACAGA AAGGCAGCAG AATATGGCCA
    GGCATTTGTT ATTTCGGTTT CACTGATGGC AGCTCAGAAC ATAAACAATC ACAAGGAACA
    GCCACAATCA CAACGGCTAA AACCACACTG GCACATCTTA AGACCATTGA AGTTCGAGAC
    ACCATGCATG AGCGGTATGG GCGGAGGGTT CAGGAGGAGC TGGATAGAGC TCATCGGGAG
    TGTGACGCTC AGGAAAAAGA GCTGCAGCAG TGGCATGAGC ACTGGCAGAG TCAGCTAAAA
    TCCCTCGCCT CACTCAACTC CGAATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021332301.1
    CDS83..3349
    Translation

    Target ORF information:

    RefSeq Version XM_021476626.1
    Organism Danio rerio(zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021476626.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGTCCACAT GCGGTTTCAC TTCGGATGAG ATACAGAATT TTGTTAACAC TGATATATTA 
    CCTCTCATTG GCCCATGCCA GTCACAAACG GAGATCTATT TGGAAAAACT GGATAAAGCT
    TTTGAAAGTC TGGCCAAAAC TACTGCTGAC GAGAGCAAGT GCTTATTCAG GTTAATGTGT
    GGGGCAGCTC AGCTGTGGGA GATCCACTGC AAAGGCCTGT TGAGCAGAGA ACAGCAACTG
    CAAAATTCAT TGGAGGTCAT CAGTCAAGTC CATGAGCAAG AGAACCAGAG GAAAGAGGCC
    CAGCTGGATA TGATGTTGGA CAAACTCAGA CAGGAAAGTT CAGAAGAAGC TCTGAAGGCC
    TCATTAGAGA AAATACTAAC CTATTTGGAG GAAGTTAAGA ATGGGTATGT GCAAACCTAT
    GAAGAGGAAG TGGAAATTGT GGAGTATTAT CCATCTACAG TACTGCAGGA ACTACAAGCA
    TACAGTCTTT CTGTTAGCCA GTTCTTCAGT GCTGAAGAGG TTTATGGTCA GGACCATAAG
    GATTTTTGCC AAATTTATCC TTCTCTTAAA CTTGATCAAA ACATAAAAAC TGGTAAAAAC
    ATAACACATA AAGATGCACC AAAGTCACAT TTCAACAATC AAGAAAGCTC AAACTTCGAC
    CTGTCCTGTG CAACGGATGA CCAACACTGT ACGGCTTTAG CATTTTTATT CTCAAACACC
    AAGGAGACTC TGATCACTGC AAAAGGAAAT GTGTACAGCT GCTCTGGGTT TCATACTACT
    AATGATGAGG AAGAGGAGAA AAACTTAAAG GAAATTGAAT TGGTTTTGTA CCCAAAAACT
    TTTACTGTTG AAGTTCTAAA AGAAGTAAGA CAAACATTTT TTAGCACTCT GGAAGAGCGA
    TTTCACATTA TTCTAACCAA CACAACAGCT ATTGTGGAGG CCAAGAAGGA GAAACTGAAA
    GCTGAGTTTA ACCTTCGCGT CCAGCTACAC CAAACTCGTG CTGCAAGAAT CGAAATGGAC
    ATTTACAGTG TCAGAGCAGC TGAACTCGCA CACCATCGAG AACGTGTGGA TCAACACTGT
    AGGGGTATAC AGCAGGTGCT CGAAAACTCC CAGACAGACT TACAAGAGTT ACAGGTCCAG
    CTGAATAAAC TGACTGAAGA CTTTCAAATG CAAATCTACA AAAGAGAGAA AGATTTCATC
    GTTGGCACTA GTTCTGAAAA GCTAAATAGA CTTTGGAACT CACTTCAATC CAGCCTGGAC
    AAACTCATCA GTGTTATCCA GATTTCACAA AGAGACTTCA GACAAAAGAT TGAGTTCAGG
    ATGGAGGGTC TGAGGGAGTC AAATGTTCAG ATAATGAGAT CTTTTAAATT GTTTTCTGAG
    GGGGGGAATT TTACACCCCA GGAAATTGAG GTCTTTCAGT CACAACTGGA AAAGATGGAC
    AAGCGCATTG ATACCGCAGA GGGGGCCGTG ATACAGGACA TGGAGGATAG AGAATCAAAG
    TGTCTGGACC AGGCCAAGGA TATTTTCAGG AGGTTTGGGG AAAAATTCAG TTTTCATGCT
    AATGACCTGA AGTTTCTTGA AAAAATGCAA CAAATTTTTA CCAACACACG AGTCCAGATT
    AAGAGCGAGG CTTTGAAGAG TAACATGCAG AAAAAGATGA TTGATAGCAT GCTGCGTGAT
    TTAAAACAAA TGACTGCTGA GTATTACCAA CCATGTCCTG ATAAGAAGAT TGTAACCGTA
    GTGGAGATAA CCAGTTTAAC AACTTCTCTG ATGGAGGAAC TAAAGAAGAG GTGTCAGTAC
    CTTGACTGCT TTTTGGATGC CTCAATGGCT GCCCCCCGAC CAGAGACTCC ATTTCAGGGG
    GCTTTTGCAG TCGCAGCCCG CTCCAGATCT CGTACACAGG AAACCACAGG CAGTCCAGAG
    AGAGAGGGCC TGCTACATCC TAGTCGCATT GGAGCTTCTT TTCTGGATGA TGCGGCAGTG
    GGAGTTATTA AAAGCCTACT CAAGGTAGGT AAAGCTCAAA ACCTCAAGGA AGACAACTGT
    GACTCAGCAG AACAACGCGC TTCATCAGCA AGGTTAAACT CACCCCATGG ATCAGGTCGA
    AGGTCAGGAA AGAGTCTCAG TCAGTCTGGA ATAGAAACTG TCCGCAGAAA GTCAGTGGAG
    TCAATAAACA TACAAAGTTC TATAAGTGTA AAGAGGTTGC CAAAACTTAA CCGATTTGAC
    AAGAAGTACC TTATTTTTGG CTCCAACCCC GAAGAGCAGA AGAACAGTGT TTGCTTCAAA
    ACTTCAATTA CTGGTATTCT GTGGAAAGCC AATGATATTC TTCTCATGGT GGCTGAGGAG
    TTCTATAAGA AAGAGCGCCG CCCTATCACT CGTTCCGAGC AACTGCAGGA GACGTTTGAT
    CAATGTGCAG AGGAGATACA GAAAAGACTT CTGGTCTACC AGAGCCAAGC ACATGACTAC
    CACAACAGCT GCCTGCAAGA ATTTCAGCAG CAGTTGAAAG CCATTGAAGA GTTTCTGTCA
    TGTGTACCAG AGATACTTTT CTCTAAACTG AGAGATCAAC ACCTTGAGGA GCTGACGCAA
    AGCATGATAC AAATTCAACA CCGGTTCAAA CTAGTTCAAC AGCGGAGTGA ACAAAACAGG
    AGAGAGCATA GTGGTCAGTT GCGTGTGCGT CTCAGTCACC CGGCTTGTGA GAGGGAACTC
    AAAGCGTTGG TGGAGGCTGA AGAGCAGAGA CAGAGACATC ACAGAGAGGC CATCCAGCAT
    ACCAGACAGG AACTTCAGGC CTGTGTCATC AAAAACGCCG AGGAATCTGT CACTGCTTTT
    GCCAGGTTGG CAGAGGCCCT GCTATTTCAG TTCGACAATC TCATTACCAT CCATGAGGTT
    CAAGTGGGAC ATGCTGAACA AAAGGAGAAT TTCACTACTC TGCTTCGACA AACACAAACT
    GGACTTTTGC AAGAGGACAC GAGCAGTGCT GTGATACAGA AAGGCAGCAG AATATGGCCA
    GGCATTTGTT ATTTCGGTTT CACTGATGGC AGCTCAGAAC ATAAACAATC ACAAGGAACA
    GCCACAATCA CAACGGCTAA AACCACACTG GCACATCTTA AGACCATTGA AGTTCGAGAC
    ACCATGCATG AGCGGTATGG GCGGAGGGTT CAGGAGGAGC TGGATAGAGC TCATCGGGAG
    TGTGACGCTC AGGAAAAAGA GCTGCAGCAG TGGCATGAGC ACTGGCAGAG TCAGCTAAAA
    TCCCTCGCCT CACTCAACTC CGAATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ODa50621
    Clone ID Related Accession (Same CDS sequence) XM_009301798.2 , XM_021476626.1 , XM_009301798.3
    Accession Version XM_009301798.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3267bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-06-14
    Organism Danio rerio(zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_018394610.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 15, 2017 this sequence version replaced XM_009301798.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGTCCACAT GCGGTTTCAC TTCGGATGAG ATACAGAATT TTGTTAACAC TGATATATTA 
    CCTCTCATTG GCCCATGCCA GTCACAAACG GAGATCTATT TGGAAAAACT GGATAAAGCT
    TTTGAAAGTC TGGCCAAAAC TACTGCTGAC GAGAGCAAGT GCTTATTCAG GTTAATGTGT
    GGGGCAGCTC AGCTGTGGGA GATCCACTGC AAAGGCCTGT TGAGCAGAGA ACAGCAACTG
    CAAAATTCAT TGGAGGTCAT CAGTCAAGTC CATGAGCAAG AGAACCAGAG GAAAGAGGCC
    CAGCTGGATA TGATGTTGGA CAAACTCAGA CAGGAAAGTT CAGAAGAAGC TCTGAAGGCC
    TCATTAGAGA AAATACTAAC CTATTTGGAG GAAGTTAAGA ATGGGTATGT GCAAACCTAT
    GAAGAGGAAG TGGAAATTGT GGAGTATTAT CCATCTACAG TACTGCAGGA ACTACAAGCA
    TACAGTCTTT CTGTTAGCCA GTTCTTCAGT GCTGAAGAGG TTTATGGTCA GGACCATAAG
    GATTTTTGCC AAATTTATCC TTCTCTTAAA CTTGATCAAA ACATAAAAAC TGGTAAAAAC
    ATAACACATA AAGATGCACC AAAGTCACAT TTCAACAATC AAGAAAGCTC AAACTTCGAC
    CTGTCCTGTG CAACGGATGA CCAACACTGT ACGGCTTTAG CATTTTTATT CTCAAACACC
    AAGGAGACTC TGATCACTGC AAAAGGAAAT GTGTACAGCT GCTCTGGGTT TCATACTACT
    AATGATGAGG AAGAGGAGAA AAACTTAAAG GAAATTGAAT TGGTTTTGTA CCCAAAAACT
    TTTACTGTTG AAGTTCTAAA AGAAGTAAGA CAAACATTTT TTAGCACTCT GGAAGAGCGA
    TTTCACATTA TTCTAACCAA CACAACAGCT ATTGTGGAGG CCAAGAAGGA GAAACTGAAA
    GCTGAGTTTA ACCTTCGCGT CCAGCTACAC CAAACTCGTG CTGCAAGAAT CGAAATGGAC
    ATTTACAGTG TCAGAGCAGC TGAACTCGCA CACCATCGAG AACGTGTGGA TCAACACTGT
    AGGGGTATAC AGCAGGTGCT CGAAAACTCC CAGACAGACT TACAAGAGTT ACAGGTCCAG
    CTGAATAAAC TGACTGAAGA CTTTCAAATG CAAATCTACA AAAGAGAGAA AGATTTCATC
    GTTGGCACTA GTTCTGAAAA GCTAAATAGA CTTTGGAACT CACTTCAATC CAGCCTGGAC
    AAACTCATCA GTGTTATCCA GATTTCACAA AGAGACTTCA GACAAAAGAT TGAGTTCAGG
    ATGGAGGGTC TGAGGGAGTC AAATGTTCAG ATAATGAGAT CTTTTAAATT GTTTTCTGAG
    GGGGGGAATT TTACACCCCA GGAAATTGAG GTCTTTCAGT CACAACTGGA AAAGATGGAC
    AAGCGCATTG ATACCGCAGA GGGGGCCGTG ATACAGGACA TGGAGGATAG AGAATCAAAG
    TGTCTGGACC AGGCCAAGGA TATTTTCAGG AGGTTTGGGG AAAAATTCAG TTTTCATGCT
    AATGACCTGA AGTTTCTTGA AAAAATGCAA CAAATTTTTA CCAACACACG AGTCCAGATT
    AAGAGCGAGG CTTTGAAGAG TAACATGCAG AAAAAGATGA TTGATAGCAT GCTGCGTGAT
    TTAAAACAAA TGACTGCTGA GTATTACCAA CCATGTCCTG ATAAGAAGAT TGTAACCGTA
    GTGGAGATAA CCAGTTTAAC AACTTCTCTG ATGGAGGAAC TAAAGAAGAG GTGTCAGTAC
    CTTGACTGCT TTTTGGATGC CTCAATGGCT GCCCCCCGAC CAGAGACTCC ATTTCAGGGG
    GCTTTTGCAG TCGCAGCCCG CTCCAGATCT CGTACACAGG AAACCACAGG CAGTCCAGAG
    AGAGAGGGCC TGCTACATCC TAGTCGCATT GGAGCTTCTT TTCTGGATGA TGCGGCAGTG
    GGAGTTATTA AAAGCCTACT CAAGGTAGGT AAAGCTCAAA ACCTCAAGGA AGACAACTGT
    GACTCAGCAG AACAACGCGC TTCATCAGCA AGGTTAAACT CACCCCATGG ATCAGGTCGA
    AGGTCAGGAA AGAGTCTCAG TCAGTCTGGA ATAGAAACTG TCCGCAGAAA GTCAGTGGAG
    TCAATAAACA TACAAAGTTC TATAAGTGTA AAGAGGTTGC CAAAACTTAA CCGATTTGAC
    AAGAAGTACC TTATTTTTGG CTCCAACCCC GAAGAGCAGA AGAACAGTGT TTGCTTCAAA
    ACTTCAATTA CTGGTATTCT GTGGAAAGCC AATGATATTC TTCTCATGGT GGCTGAGGAG
    TTCTATAAGA AAGAGCGCCG CCCTATCACT CGTTCCGAGC AACTGCAGGA GACGTTTGAT
    CAATGTGCAG AGGAGATACA GAAAAGACTT CTGGTCTACC AGAGCCAAGC ACATGACTAC
    CACAACAGCT GCCTGCAAGA ATTTCAGCAG CAGTTGAAAG CCATTGAAGA GTTTCTGTCA
    TGTGTACCAG AGATACTTTT CTCTAAACTG AGAGATCAAC ACCTTGAGGA GCTGACGCAA
    AGCATGATAC AAATTCAACA CCGGTTCAAA CTAGTTCAAC AGCGGAGTGA ACAAAACAGG
    AGAGAGCATA GTGGTCAGTT GCGTGTGCGT CTCAGTCACC CGGCTTGTGA GAGGGAACTC
    AAAGCGTTGG TGGAGGCTGA AGAGCAGAGA CAGAGACATC ACAGAGAGGC CATCCAGCAT
    ACCAGACAGG AACTTCAGGC CTGTGTCATC AAAAACGCCG AGGAATCTGT CACTGCTTTT
    GCCAGGTTGG CAGAGGCCCT GCTATTTCAG TTCGACAATC TCATTACCAT CCATGAGGTT
    CAAGTGGGAC ATGCTGAACA AAAGGAGAAT TTCACTACTC TGCTTCGACA AACACAAACT
    GGACTTTTGC AAGAGGACAC GAGCAGTGCT GTGATACAGA AAGGCAGCAG AATATGGCCA
    GGCATTTGTT ATTTCGGTTT CACTGATGGC AGCTCAGAAC ATAAACAATC ACAAGGAACA
    GCCACAATCA CAACGGCTAA AACCACACTG GCACATCTTA AGACCATTGA AGTTCGAGAC
    ACCATGCATG AGCGGTATGG GCGGAGGGTT CAGGAGGAGC TGGATAGAGC TCATCGGGAG
    TGTGACGCTC AGGAAAAAGA GCTGCAGCAG TGGCATGAGC ACTGGCAGAG TCAGCTAAAA
    TCCCTCGCCT CACTCAACTC CGAATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_009300073.1
    CDS83..3349
    Translation

    Target ORF information:

    RefSeq Version XM_009301798.3
    Organism Danio rerio(zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_009301798.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGTCCACAT GCGGTTTCAC TTCGGATGAG ATACAGAATT TTGTTAACAC TGATATATTA 
    CCTCTCATTG GCCCATGCCA GTCACAAACG GAGATCTATT TGGAAAAACT GGATAAAGCT
    TTTGAAAGTC TGGCCAAAAC TACTGCTGAC GAGAGCAAGT GCTTATTCAG GTTAATGTGT
    GGGGCAGCTC AGCTGTGGGA GATCCACTGC AAAGGCCTGT TGAGCAGAGA ACAGCAACTG
    CAAAATTCAT TGGAGGTCAT CAGTCAAGTC CATGAGCAAG AGAACCAGAG GAAAGAGGCC
    CAGCTGGATA TGATGTTGGA CAAACTCAGA CAGGAAAGTT CAGAAGAAGC TCTGAAGGCC
    TCATTAGAGA AAATACTAAC CTATTTGGAG GAAGTTAAGA ATGGGTATGT GCAAACCTAT
    GAAGAGGAAG TGGAAATTGT GGAGTATTAT CCATCTACAG TACTGCAGGA ACTACAAGCA
    TACAGTCTTT CTGTTAGCCA GTTCTTCAGT GCTGAAGAGG TTTATGGTCA GGACCATAAG
    GATTTTTGCC AAATTTATCC TTCTCTTAAA CTTGATCAAA ACATAAAAAC TGGTAAAAAC
    ATAACACATA AAGATGCACC AAAGTCACAT TTCAACAATC AAGAAAGCTC AAACTTCGAC
    CTGTCCTGTG CAACGGATGA CCAACACTGT ACGGCTTTAG CATTTTTATT CTCAAACACC
    AAGGAGACTC TGATCACTGC AAAAGGAAAT GTGTACAGCT GCTCTGGGTT TCATACTACT
    AATGATGAGG AAGAGGAGAA AAACTTAAAG GAAATTGAAT TGGTTTTGTA CCCAAAAACT
    TTTACTGTTG AAGTTCTAAA AGAAGTAAGA CAAACATTTT TTAGCACTCT GGAAGAGCGA
    TTTCACATTA TTCTAACCAA CACAACAGCT ATTGTGGAGG CCAAGAAGGA GAAACTGAAA
    GCTGAGTTTA ACCTTCGCGT CCAGCTACAC CAAACTCGTG CTGCAAGAAT CGAAATGGAC
    ATTTACAGTG TCAGAGCAGC TGAACTCGCA CACCATCGAG AACGTGTGGA TCAACACTGT
    AGGGGTATAC AGCAGGTGCT CGAAAACTCC CAGACAGACT TACAAGAGTT ACAGGTCCAG
    CTGAATAAAC TGACTGAAGA CTTTCAAATG CAAATCTACA AAAGAGAGAA AGATTTCATC
    GTTGGCACTA GTTCTGAAAA GCTAAATAGA CTTTGGAACT CACTTCAATC CAGCCTGGAC
    AAACTCATCA GTGTTATCCA GATTTCACAA AGAGACTTCA GACAAAAGAT TGAGTTCAGG
    ATGGAGGGTC TGAGGGAGTC AAATGTTCAG ATAATGAGAT CTTTTAAATT GTTTTCTGAG
    GGGGGGAATT TTACACCCCA GGAAATTGAG GTCTTTCAGT CACAACTGGA AAAGATGGAC
    AAGCGCATTG ATACCGCAGA GGGGGCCGTG ATACAGGACA TGGAGGATAG AGAATCAAAG
    TGTCTGGACC AGGCCAAGGA TATTTTCAGG AGGTTTGGGG AAAAATTCAG TTTTCATGCT
    AATGACCTGA AGTTTCTTGA AAAAATGCAA CAAATTTTTA CCAACACACG AGTCCAGATT
    AAGAGCGAGG CTTTGAAGAG TAACATGCAG AAAAAGATGA TTGATAGCAT GCTGCGTGAT
    TTAAAACAAA TGACTGCTGA GTATTACCAA CCATGTCCTG ATAAGAAGAT TGTAACCGTA
    GTGGAGATAA CCAGTTTAAC AACTTCTCTG ATGGAGGAAC TAAAGAAGAG GTGTCAGTAC
    CTTGACTGCT TTTTGGATGC CTCAATGGCT GCCCCCCGAC CAGAGACTCC ATTTCAGGGG
    GCTTTTGCAG TCGCAGCCCG CTCCAGATCT CGTACACAGG AAACCACAGG CAGTCCAGAG
    AGAGAGGGCC TGCTACATCC TAGTCGCATT GGAGCTTCTT TTCTGGATGA TGCGGCAGTG
    GGAGTTATTA AAAGCCTACT CAAGGTAGGT AAAGCTCAAA ACCTCAAGGA AGACAACTGT
    GACTCAGCAG AACAACGCGC TTCATCAGCA AGGTTAAACT CACCCCATGG ATCAGGTCGA
    AGGTCAGGAA AGAGTCTCAG TCAGTCTGGA ATAGAAACTG TCCGCAGAAA GTCAGTGGAG
    TCAATAAACA TACAAAGTTC TATAAGTGTA AAGAGGTTGC CAAAACTTAA CCGATTTGAC
    AAGAAGTACC TTATTTTTGG CTCCAACCCC GAAGAGCAGA AGAACAGTGT TTGCTTCAAA
    ACTTCAATTA CTGGTATTCT GTGGAAAGCC AATGATATTC TTCTCATGGT GGCTGAGGAG
    TTCTATAAGA AAGAGCGCCG CCCTATCACT CGTTCCGAGC AACTGCAGGA GACGTTTGAT
    CAATGTGCAG AGGAGATACA GAAAAGACTT CTGGTCTACC AGAGCCAAGC ACATGACTAC
    CACAACAGCT GCCTGCAAGA ATTTCAGCAG CAGTTGAAAG CCATTGAAGA GTTTCTGTCA
    TGTGTACCAG AGATACTTTT CTCTAAACTG AGAGATCAAC ACCTTGAGGA GCTGACGCAA
    AGCATGATAC AAATTCAACA CCGGTTCAAA CTAGTTCAAC AGCGGAGTGA ACAAAACAGG
    AGAGAGCATA GTGGTCAGTT GCGTGTGCGT CTCAGTCACC CGGCTTGTGA GAGGGAACTC
    AAAGCGTTGG TGGAGGCTGA AGAGCAGAGA CAGAGACATC ACAGAGAGGC CATCCAGCAT
    ACCAGACAGG AACTTCAGGC CTGTGTCATC AAAAACGCCG AGGAATCTGT CACTGCTTTT
    GCCAGGTTGG CAGAGGCCCT GCTATTTCAG TTCGACAATC TCATTACCAT CCATGAGGTT
    CAAGTGGGAC ATGCTGAACA AAAGGAGAAT TTCACTACTC TGCTTCGACA AACACAAACT
    GGACTTTTGC AAGAGGACAC GAGCAGTGCT GTGATACAGA AAGGCAGCAG AATATGGCCA
    GGCATTTGTT ATTTCGGTTT CACTGATGGC AGCTCAGAAC ATAAACAATC ACAAGGAACA
    GCCACAATCA CAACGGCTAA AACCACACTG GCACATCTTA AGACCATTGA AGTTCGAGAC
    ACCATGCATG AGCGGTATGG GCGGAGGGTT CAGGAGGAGC TGGATAGAGC TCATCGGGAG
    TGTGACGCTC AGGAAAAAGA GCTGCAGCAG TGGCATGAGC ACTGGCAGAG TCAGCTAAAA
    TCCCTCGCCT CACTCAACTC CGAATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ODa10940
    Clone ID Related Accession (Same CDS sequence) XM_003198660.3 , XM_021476625.1 , XM_003198660.4
    Accession Version XM_003198660.3 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4452bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-06-23
    Organism Danio rerio(Zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X1
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.6) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Sep 24, 2014 this sequence version replaced XM_003198660.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGCTGAAC TCGCACACCA TCGAGAACGT GTGGATCAAC ACTGTAGGGG TATACAGCAG
    GTGCTCGAAA ACTCCCAGAC AGACTTACAA GAGTTACAGG TCCAGCTGAA TAAACTGACT
    GAAGACTTTC AAATGCAAAT CTACAAAAGA GAGAAAGATT TCATCGTTGG CACTAGTTCT
    GAAAAGCTAA ATAGACTTTG GAACTCACTT CAATCCAGCC TGGACAAACT CATCAGTGTT
    ATCCAGATTT CACAAAGAGA CTTCAGACAA AAGATTGAGT TCAGGATGGA GGGTCTGAGG
    GAGTCAAATG TTCAGATAAT GAGATCTTTT AAATTGTTTT CTGAGGGGGG GAATTTTACA
    CCCCAGGAAA TTGAGGTCTT TCAGTCACAA CTGGAAAAGA TGGACAAGCG CATTGATACC
    GCAGAGGGGG CCGTGATACA GGACATGGAG GATAGAGAAT CAAAGTGTCT GGACCAGGCC
    AAGGATATTT TCAGGAGGTT TGGGGAAAAA TTCAGTTTTC ATGCTAATGA CCTGAAGTTT
    CTTGAAAAAA TGCAACAAAT TTTTACCAAC ACACGAGTCC AGATTAAGAG CGAGGCTTTG
    AAGAGTAACA TGCAGAAAAA GATGATTGAT AGCATGCTGC GTGATTTAAA ACAAATGACT
    GCTGAGTATT ACCAACCATG TCCTGATAAG AAGATTGTAA CCGTAGTGGA GATAACCAGT
    TTAACAACTT CTCTGATGGA GGAACTAAAG AAGAGGTGTC AGTACCTTGA CTGCTTTTTG
    GATGCCTCAA TGGCTGCCCC CCGACCAGAG ACTCCATTTC AGGGGGCTTT TGCAGTCGCA
    GCCCGCTCCA GATCTCGTAC ACAGGAAACC ACAGGCAGTC CAGAGAGAGA GGGCCTGCTA
    CATCCTAGTC GCATTGGAGC TTCTTTTCTG GATGATGCGG CAGTGGGAGT TATTAAAAGC
    CTACTCAAGG TAGGTAAAGC TCAAAACCTC AAGGAAGACA ACTGTGACTC AGCAGAACAA
    CGCGCTTCAT CAGCAAGGTT AAACTCACCC CATGGATCAG GTCGAAGGTC AGGAAAGAGT
    CTCAGTCAGT CTGGAATAGA AACTGTCCGC AGAAAGTCAG TGGAGTCAAT AAACATACAA
    AGTTCTATAA GTGTAAAGAG GTTGCCAAAA CTTAACCGAT TTGACAAGAA GTACCTTATT
    TTTGGCTCCA ACCCCGAAGA GCAGAAGAAC AGTGTTTGCT TCAAAACTTC AATTACTGGT
    ATTCTGTGGA AAGCCAATGA TATTCTTCTC ATGGTGGCTG AGGAGTTCTA TAAGAAAGAG
    CGCCGCCCTA TCACTCGTTC CGAGCAACTG CAGGAGACGT TTGATCAATG TGCAGAGGAG
    ATACAGAAAA GACTTCTGGT CTACCAGAGC CAAGCACATG ACTACCACAA CAGCTGCCTG
    CAAGAATTTC AGCAGCAGTT GAAAGCCATT GAAGAGTTTC TGTCATGTGT ACCAGAGATA
    CTTTTCTCTA AACTGAGAGA TCAACACCTT GAGGAGCTGA CGCAAAGCAT GATACAAATT
    CAACACCGGT TCAAACTAGT TCAACAGCGG AGTGAACAAA ACAGGAGAGA GCATAGTGGT
    CAGTTGCGTG TGCGTCTCAG TCACCCGGCT TGTGAGAGGG AACTCAAAGC GTTGGTGGAG
    GCTGAAGAGC AGAGACAGAG ACATCACAGA GAGGCCATCC AGCATACCAG ACAGGAACTT
    CAGGCCTGTG TCATCAAAAA CGCCGAGGAA TCTGTCACTG CTTTTGCCAG GTTGGCAGAG
    GCCCTGCTAT TTCAGTTCGA CAATCTCATT ACCATCCATG AGGTTCAAGT GGGACATGCT
    GAACAAAAGG AGAATTTCAC TACTCTGCTT CGACAAACAC AAACTGGACT TTTGCAAGAG
    GACACGAGCA GTGCTGTGAT ACAGAAAGGC AGCAGAATAT GGCCAGGCAT TTGTTATTTC
    GGTTTCACTG ATGGCAGCTC AGAACATAAA CAATCACAAG GAACAGCCAC AATCACAACG
    GCTAAAACCA CACTGGCACA TCTTAAGACC ATTGAAGTTC GAGACACCAT GCATGAGCGG
    TATGGGCGGA GGGTTCAGGA GGAGCTGGAT AGAGCTCATC GGGAGTGTGA CGCTCAGGAA
    AAAGAGCTGC AGCAGTGGCA TGAGCACTGG CAGAGTCAGC TAAAATCCCT CGCCTCACTC
    AACTCCGAAT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_003198708.2
    CDS173..4624
    Translation

    Target ORF information:

    RefSeq Version XM_003198660.3
    Organism Danio rerio(Zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003198660.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGCTGAAC TCGCACACCA TCGAGAACGT GTGGATCAAC ACTGTAGGGG TATACAGCAG
    GTGCTCGAAA ACTCCCAGAC AGACTTACAA GAGTTACAGG TCCAGCTGAA TAAACTGACT
    GAAGACTTTC AAATGCAAAT CTACAAAAGA GAGAAAGATT TCATCGTTGG CACTAGTTCT
    GAAAAGCTAA ATAGACTTTG GAACTCACTT CAATCCAGCC TGGACAAACT CATCAGTGTT
    ATCCAGATTT CACAAAGAGA CTTCAGACAA AAGATTGAGT TCAGGATGGA GGGTCTGAGG
    GAGTCAAATG TTCAGATAAT GAGATCTTTT AAATTGTTTT CTGAGGGGGG GAATTTTACA
    CCCCAGGAAA TTGAGGTCTT TCAGTCACAA CTGGAAAAGA TGGACAAGCG CATTGATACC
    GCAGAGGGGG CCGTGATACA GGACATGGAG GATAGAGAAT CAAAGTGTCT GGACCAGGCC
    AAGGATATTT TCAGGAGGTT TGGGGAAAAA TTCAGTTTTC ATGCTAATGA CCTGAAGTTT
    CTTGAAAAAA TGCAACAAAT TTTTACCAAC ACACGAGTCC AGATTAAGAG CGAGGCTTTG
    AAGAGTAACA TGCAGAAAAA GATGATTGAT AGCATGCTGC GTGATTTAAA ACAAATGACT
    GCTGAGTATT ACCAACCATG TCCTGATAAG AAGATTGTAA CCGTAGTGGA GATAACCAGT
    TTAACAACTT CTCTGATGGA GGAACTAAAG AAGAGGTGTC AGTACCTTGA CTGCTTTTTG
    GATGCCTCAA TGGCTGCCCC CCGACCAGAG ACTCCATTTC AGGGGGCTTT TGCAGTCGCA
    GCCCGCTCCA GATCTCGTAC ACAGGAAACC ACAGGCAGTC CAGAGAGAGA GGGCCTGCTA
    CATCCTAGTC GCATTGGAGC TTCTTTTCTG GATGATGCGG CAGTGGGAGT TATTAAAAGC
    CTACTCAAGG TAGGTAAAGC TCAAAACCTC AAGGAAGACA ACTGTGACTC AGCAGAACAA
    CGCGCTTCAT CAGCAAGGTT AAACTCACCC CATGGATCAG GTCGAAGGTC AGGAAAGAGT
    CTCAGTCAGT CTGGAATAGA AACTGTCCGC AGAAAGTCAG TGGAGTCAAT AAACATACAA
    AGTTCTATAA GTGTAAAGAG GTTGCCAAAA CTTAACCGAT TTGACAAGAA GTACCTTATT
    TTTGGCTCCA ACCCCGAAGA GCAGAAGAAC AGTGTTTGCT TCAAAACTTC AATTACTGGT
    ATTCTGTGGA AAGCCAATGA TATTCTTCTC ATGGTGGCTG AGGAGTTCTA TAAGAAAGAG
    CGCCGCCCTA TCACTCGTTC CGAGCAACTG CAGGAGACGT TTGATCAATG TGCAGAGGAG
    ATACAGAAAA GACTTCTGGT CTACCAGAGC CAAGCACATG ACTACCACAA CAGCTGCCTG
    CAAGAATTTC AGCAGCAGTT GAAAGCCATT GAAGAGTTTC TGTCATGTGT ACCAGAGATA
    CTTTTCTCTA AACTGAGAGA TCAACACCTT GAGGAGCTGA CGCAAAGCAT GATACAAATT
    CAACACCGGT TCAAACTAGT TCAACAGCGG AGTGAACAAA ACAGGAGAGA GCATAGTGGT
    CAGTTGCGTG TGCGTCTCAG TCACCCGGCT TGTGAGAGGG AACTCAAAGC GTTGGTGGAG
    GCTGAAGAGC AGAGACAGAG ACATCACAGA GAGGCCATCC AGCATACCAG ACAGGAACTT
    CAGGCCTGTG TCATCAAAAA CGCCGAGGAA TCTGTCACTG CTTTTGCCAG GTTGGCAGAG
    GCCCTGCTAT TTCAGTTCGA CAATCTCATT ACCATCCATG AGGTTCAAGT GGGACATGCT
    GAACAAAAGG AGAATTTCAC TACTCTGCTT CGACAAACAC AAACTGGACT TTTGCAAGAG
    GACACGAGCA GTGCTGTGAT ACAGAAAGGC AGCAGAATAT GGCCAGGCAT TTGTTATTTC
    GGTTTCACTG ATGGCAGCTC AGAACATAAA CAATCACAAG GAACAGCCAC AATCACAACG
    GCTAAAACCA CACTGGCACA TCTTAAGACC ATTGAAGTTC GAGACACCAT GCATGAGCGG
    TATGGGCGGA GGGTTCAGGA GGAGCTGGAT AGAGCTCATC GGGAGTGTGA CGCTCAGGAA
    AAAGAGCTGC AGCAGTGGCA TGAGCACTGG CAGAGTCAGC TAAAATCCCT CGCCTCACTC
    AACTCCGAAT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ODa10940
    Clone ID Related Accession (Same CDS sequence) XM_003198660.3 , XM_021476625.1 , XM_003198660.4
    Accession Version XM_021476625.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4452bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-06-14
    Organism Danio rerio(zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.7) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGCTGAAC TCGCACACCA TCGAGAACGT GTGGATCAAC ACTGTAGGGG TATACAGCAG
    GTGCTCGAAA ACTCCCAGAC AGACTTACAA GAGTTACAGG TCCAGCTGAA TAAACTGACT
    GAAGACTTTC AAATGCAAAT CTACAAAAGA GAGAAAGATT TCATCGTTGG CACTAGTTCT
    GAAAAGCTAA ATAGACTTTG GAACTCACTT CAATCCAGCC TGGACAAACT CATCAGTGTT
    ATCCAGATTT CACAAAGAGA CTTCAGACAA AAGATTGAGT TCAGGATGGA GGGTCTGAGG
    GAGTCAAATG TTCAGATAAT GAGATCTTTT AAATTGTTTT CTGAGGGGGG GAATTTTACA
    CCCCAGGAAA TTGAGGTCTT TCAGTCACAA CTGGAAAAGA TGGACAAGCG CATTGATACC
    GCAGAGGGGG CCGTGATACA GGACATGGAG GATAGAGAAT CAAAGTGTCT GGACCAGGCC
    AAGGATATTT TCAGGAGGTT TGGGGAAAAA TTCAGTTTTC ATGCTAATGA CCTGAAGTTT
    CTTGAAAAAA TGCAACAAAT TTTTACCAAC ACACGAGTCC AGATTAAGAG CGAGGCTTTG
    AAGAGTAACA TGCAGAAAAA GATGATTGAT AGCATGCTGC GTGATTTAAA ACAAATGACT
    GCTGAGTATT ACCAACCATG TCCTGATAAG AAGATTGTAA CCGTAGTGGA GATAACCAGT
    TTAACAACTT CTCTGATGGA GGAACTAAAG AAGAGGTGTC AGTACCTTGA CTGCTTTTTG
    GATGCCTCAA TGGCTGCCCC CCGACCAGAG ACTCCATTTC AGGGGGCTTT TGCAGTCGCA
    GCCCGCTCCA GATCTCGTAC ACAGGAAACC ACAGGCAGTC CAGAGAGAGA GGGCCTGCTA
    CATCCTAGTC GCATTGGAGC TTCTTTTCTG GATGATGCGG CAGTGGGAGT TATTAAAAGC
    CTACTCAAGG TAGGTAAAGC TCAAAACCTC AAGGAAGACA ACTGTGACTC AGCAGAACAA
    CGCGCTTCAT CAGCAAGGTT AAACTCACCC CATGGATCAG GTCGAAGGTC AGGAAAGAGT
    CTCAGTCAGT CTGGAATAGA AACTGTCCGC AGAAAGTCAG TGGAGTCAAT AAACATACAA
    AGTTCTATAA GTGTAAAGAG GTTGCCAAAA CTTAACCGAT TTGACAAGAA GTACCTTATT
    TTTGGCTCCA ACCCCGAAGA GCAGAAGAAC AGTGTTTGCT TCAAAACTTC AATTACTGGT
    ATTCTGTGGA AAGCCAATGA TATTCTTCTC ATGGTGGCTG AGGAGTTCTA TAAGAAAGAG
    CGCCGCCCTA TCACTCGTTC CGAGCAACTG CAGGAGACGT TTGATCAATG TGCAGAGGAG
    ATACAGAAAA GACTTCTGGT CTACCAGAGC CAAGCACATG ACTACCACAA CAGCTGCCTG
    CAAGAATTTC AGCAGCAGTT GAAAGCCATT GAAGAGTTTC TGTCATGTGT ACCAGAGATA
    CTTTTCTCTA AACTGAGAGA TCAACACCTT GAGGAGCTGA CGCAAAGCAT GATACAAATT
    CAACACCGGT TCAAACTAGT TCAACAGCGG AGTGAACAAA ACAGGAGAGA GCATAGTGGT
    CAGTTGCGTG TGCGTCTCAG TCACCCGGCT TGTGAGAGGG AACTCAAAGC GTTGGTGGAG
    GCTGAAGAGC AGAGACAGAG ACATCACAGA GAGGCCATCC AGCATACCAG ACAGGAACTT
    CAGGCCTGTG TCATCAAAAA CGCCGAGGAA TCTGTCACTG CTTTTGCCAG GTTGGCAGAG
    GCCCTGCTAT TTCAGTTCGA CAATCTCATT ACCATCCATG AGGTTCAAGT GGGACATGCT
    GAACAAAAGG AGAATTTCAC TACTCTGCTT CGACAAACAC AAACTGGACT TTTGCAAGAG
    GACACGAGCA GTGCTGTGAT ACAGAAAGGC AGCAGAATAT GGCCAGGCAT TTGTTATTTC
    GGTTTCACTG ATGGCAGCTC AGAACATAAA CAATCACAAG GAACAGCCAC AATCACAACG
    GCTAAAACCA CACTGGCACA TCTTAAGACC ATTGAAGTTC GAGACACCAT GCATGAGCGG
    TATGGGCGGA GGGTTCAGGA GGAGCTGGAT AGAGCTCATC GGGAGTGTGA CGCTCAGGAA
    AAAGAGCTGC AGCAGTGGCA TGAGCACTGG CAGAGTCAGC TAAAATCCCT CGCCTCACTC
    AACTCCGAAT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021332300.1
    CDS182..4633
    Translation

    Target ORF information:

    RefSeq Version XM_021476625.1
    Organism Danio rerio(zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021476625.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGCTGAAC TCGCACACCA TCGAGAACGT GTGGATCAAC ACTGTAGGGG TATACAGCAG
    GTGCTCGAAA ACTCCCAGAC AGACTTACAA GAGTTACAGG TCCAGCTGAA TAAACTGACT
    GAAGACTTTC AAATGCAAAT CTACAAAAGA GAGAAAGATT TCATCGTTGG CACTAGTTCT
    GAAAAGCTAA ATAGACTTTG GAACTCACTT CAATCCAGCC TGGACAAACT CATCAGTGTT
    ATCCAGATTT CACAAAGAGA CTTCAGACAA AAGATTGAGT TCAGGATGGA GGGTCTGAGG
    GAGTCAAATG TTCAGATAAT GAGATCTTTT AAATTGTTTT CTGAGGGGGG GAATTTTACA
    CCCCAGGAAA TTGAGGTCTT TCAGTCACAA CTGGAAAAGA TGGACAAGCG CATTGATACC
    GCAGAGGGGG CCGTGATACA GGACATGGAG GATAGAGAAT CAAAGTGTCT GGACCAGGCC
    AAGGATATTT TCAGGAGGTT TGGGGAAAAA TTCAGTTTTC ATGCTAATGA CCTGAAGTTT
    CTTGAAAAAA TGCAACAAAT TTTTACCAAC ACACGAGTCC AGATTAAGAG CGAGGCTTTG
    AAGAGTAACA TGCAGAAAAA GATGATTGAT AGCATGCTGC GTGATTTAAA ACAAATGACT
    GCTGAGTATT ACCAACCATG TCCTGATAAG AAGATTGTAA CCGTAGTGGA GATAACCAGT
    TTAACAACTT CTCTGATGGA GGAACTAAAG AAGAGGTGTC AGTACCTTGA CTGCTTTTTG
    GATGCCTCAA TGGCTGCCCC CCGACCAGAG ACTCCATTTC AGGGGGCTTT TGCAGTCGCA
    GCCCGCTCCA GATCTCGTAC ACAGGAAACC ACAGGCAGTC CAGAGAGAGA GGGCCTGCTA
    CATCCTAGTC GCATTGGAGC TTCTTTTCTG GATGATGCGG CAGTGGGAGT TATTAAAAGC
    CTACTCAAGG TAGGTAAAGC TCAAAACCTC AAGGAAGACA ACTGTGACTC AGCAGAACAA
    CGCGCTTCAT CAGCAAGGTT AAACTCACCC CATGGATCAG GTCGAAGGTC AGGAAAGAGT
    CTCAGTCAGT CTGGAATAGA AACTGTCCGC AGAAAGTCAG TGGAGTCAAT AAACATACAA
    AGTTCTATAA GTGTAAAGAG GTTGCCAAAA CTTAACCGAT TTGACAAGAA GTACCTTATT
    TTTGGCTCCA ACCCCGAAGA GCAGAAGAAC AGTGTTTGCT TCAAAACTTC AATTACTGGT
    ATTCTGTGGA AAGCCAATGA TATTCTTCTC ATGGTGGCTG AGGAGTTCTA TAAGAAAGAG
    CGCCGCCCTA TCACTCGTTC CGAGCAACTG CAGGAGACGT TTGATCAATG TGCAGAGGAG
    ATACAGAAAA GACTTCTGGT CTACCAGAGC CAAGCACATG ACTACCACAA CAGCTGCCTG
    CAAGAATTTC AGCAGCAGTT GAAAGCCATT GAAGAGTTTC TGTCATGTGT ACCAGAGATA
    CTTTTCTCTA AACTGAGAGA TCAACACCTT GAGGAGCTGA CGCAAAGCAT GATACAAATT
    CAACACCGGT TCAAACTAGT TCAACAGCGG AGTGAACAAA ACAGGAGAGA GCATAGTGGT
    CAGTTGCGTG TGCGTCTCAG TCACCCGGCT TGTGAGAGGG AACTCAAAGC GTTGGTGGAG
    GCTGAAGAGC AGAGACAGAG ACATCACAGA GAGGCCATCC AGCATACCAG ACAGGAACTT
    CAGGCCTGTG TCATCAAAAA CGCCGAGGAA TCTGTCACTG CTTTTGCCAG GTTGGCAGAG
    GCCCTGCTAT TTCAGTTCGA CAATCTCATT ACCATCCATG AGGTTCAAGT GGGACATGCT
    GAACAAAAGG AGAATTTCAC TACTCTGCTT CGACAAACAC AAACTGGACT TTTGCAAGAG
    GACACGAGCA GTGCTGTGAT ACAGAAAGGC AGCAGAATAT GGCCAGGCAT TTGTTATTTC
    GGTTTCACTG ATGGCAGCTC AGAACATAAA CAATCACAAG GAACAGCCAC AATCACAACG
    GCTAAAACCA CACTGGCACA TCTTAAGACC ATTGAAGTTC GAGACACCAT GCATGAGCGG
    TATGGGCGGA GGGTTCAGGA GGAGCTGGAT AGAGCTCATC GGGAGTGTGA CGCTCAGGAA
    AAAGAGCTGC AGCAGTGGCA TGAGCACTGG CAGAGTCAGC TAAAATCCCT CGCCTCACTC
    AACTCCGAAT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ODa10940
    Clone ID Related Accession (Same CDS sequence) XM_003198660.3 , XM_021476625.1 , XM_003198660.4
    Accession Version XM_003198660.4 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4452bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-06-14
    Organism Danio rerio(zebrafish)
    Product coiled-coil domain-containing protein 180 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_018394610.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 15, 2017 this sequence version replaced XM_003198660.3. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGCTGAAC TCGCACACCA TCGAGAACGT GTGGATCAAC ACTGTAGGGG TATACAGCAG
    GTGCTCGAAA ACTCCCAGAC AGACTTACAA GAGTTACAGG TCCAGCTGAA TAAACTGACT
    GAAGACTTTC AAATGCAAAT CTACAAAAGA GAGAAAGATT TCATCGTTGG CACTAGTTCT
    GAAAAGCTAA ATAGACTTTG GAACTCACTT CAATCCAGCC TGGACAAACT CATCAGTGTT
    ATCCAGATTT CACAAAGAGA CTTCAGACAA AAGATTGAGT TCAGGATGGA GGGTCTGAGG
    GAGTCAAATG TTCAGATAAT GAGATCTTTT AAATTGTTTT CTGAGGGGGG GAATTTTACA
    CCCCAGGAAA TTGAGGTCTT TCAGTCACAA CTGGAAAAGA TGGACAAGCG CATTGATACC
    GCAGAGGGGG CCGTGATACA GGACATGGAG GATAGAGAAT CAAAGTGTCT GGACCAGGCC
    AAGGATATTT TCAGGAGGTT TGGGGAAAAA TTCAGTTTTC ATGCTAATGA CCTGAAGTTT
    CTTGAAAAAA TGCAACAAAT TTTTACCAAC ACACGAGTCC AGATTAAGAG CGAGGCTTTG
    AAGAGTAACA TGCAGAAAAA GATGATTGAT AGCATGCTGC GTGATTTAAA ACAAATGACT
    GCTGAGTATT ACCAACCATG TCCTGATAAG AAGATTGTAA CCGTAGTGGA GATAACCAGT
    TTAACAACTT CTCTGATGGA GGAACTAAAG AAGAGGTGTC AGTACCTTGA CTGCTTTTTG
    GATGCCTCAA TGGCTGCCCC CCGACCAGAG ACTCCATTTC AGGGGGCTTT TGCAGTCGCA
    GCCCGCTCCA GATCTCGTAC ACAGGAAACC ACAGGCAGTC CAGAGAGAGA GGGCCTGCTA
    CATCCTAGTC GCATTGGAGC TTCTTTTCTG GATGATGCGG CAGTGGGAGT TATTAAAAGC
    CTACTCAAGG TAGGTAAAGC TCAAAACCTC AAGGAAGACA ACTGTGACTC AGCAGAACAA
    CGCGCTTCAT CAGCAAGGTT AAACTCACCC CATGGATCAG GTCGAAGGTC AGGAAAGAGT
    CTCAGTCAGT CTGGAATAGA AACTGTCCGC AGAAAGTCAG TGGAGTCAAT AAACATACAA
    AGTTCTATAA GTGTAAAGAG GTTGCCAAAA CTTAACCGAT TTGACAAGAA GTACCTTATT
    TTTGGCTCCA ACCCCGAAGA GCAGAAGAAC AGTGTTTGCT TCAAAACTTC AATTACTGGT
    ATTCTGTGGA AAGCCAATGA TATTCTTCTC ATGGTGGCTG AGGAGTTCTA TAAGAAAGAG
    CGCCGCCCTA TCACTCGTTC CGAGCAACTG CAGGAGACGT TTGATCAATG TGCAGAGGAG
    ATACAGAAAA GACTTCTGGT CTACCAGAGC CAAGCACATG ACTACCACAA CAGCTGCCTG
    CAAGAATTTC AGCAGCAGTT GAAAGCCATT GAAGAGTTTC TGTCATGTGT ACCAGAGATA
    CTTTTCTCTA AACTGAGAGA TCAACACCTT GAGGAGCTGA CGCAAAGCAT GATACAAATT
    CAACACCGGT TCAAACTAGT TCAACAGCGG AGTGAACAAA ACAGGAGAGA GCATAGTGGT
    CAGTTGCGTG TGCGTCTCAG TCACCCGGCT TGTGAGAGGG AACTCAAAGC GTTGGTGGAG
    GCTGAAGAGC AGAGACAGAG ACATCACAGA GAGGCCATCC AGCATACCAG ACAGGAACTT
    CAGGCCTGTG TCATCAAAAA CGCCGAGGAA TCTGTCACTG CTTTTGCCAG GTTGGCAGAG
    GCCCTGCTAT TTCAGTTCGA CAATCTCATT ACCATCCATG AGGTTCAAGT GGGACATGCT
    GAACAAAAGG AGAATTTCAC TACTCTGCTT CGACAAACAC AAACTGGACT TTTGCAAGAG
    GACACGAGCA GTGCTGTGAT ACAGAAAGGC AGCAGAATAT GGCCAGGCAT TTGTTATTTC
    GGTTTCACTG ATGGCAGCTC AGAACATAAA CAATCACAAG GAACAGCCAC AATCACAACG
    GCTAAAACCA CACTGGCACA TCTTAAGACC ATTGAAGTTC GAGACACCAT GCATGAGCGG
    TATGGGCGGA GGGTTCAGGA GGAGCTGGAT AGAGCTCATC GGGAGTGTGA CGCTCAGGAA
    AAAGAGCTGC AGCAGTGGCA TGAGCACTGG CAGAGTCAGC TAAAATCCCT CGCCTCACTC
    AACTCCGAAT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_003198708.2
    CDS182..4633
    Translation

    Target ORF information:

    RefSeq Version XM_003198660.4
    Organism Danio rerio(zebrafish)
    Definition Danio rerio coiled-coil domain containing 180 (ccdc180), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003198660.4

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGGCAGACA CCCGTGTGCT TCCCAGTGGT AAAGTGTACC GTCAAATGTT TGACGCCCAG 
    GTTCAGTTGT CGCTGGCTCT CTATGACTCG CGGAGGAAGC GCGCTGCCGA TGAAGGCGAC
    GGTGATGGTC TGTTGAGTGG AGATGCAGCG GACTCCGCGT CTCAGCACCA CAACGGGACG
    TACAACACGG CCACTTCACA GAACTTTCTT TATTCCGGTG AAAAGAGAAG GGAAGACCAG
    GATGATAGTG AAGTGGTTTG TGGTCTTCCA GACATAATTG TTCCAGATAA AAAAAACTCA
    GACATCATTG ATCGTCTTAA GGAGAAAAGG CAGAAGGATC ACAATGAAGC TGTTTCTCAG
    TTGCAGGCAG ATCTTTCCAG CATCAATCTG GTTGTTGAAC CATTATTTAG ACATACTGGA
    AATGATATCT TACACAGACT GTCAGAGTAT AATGACAATA TTGAAAGAAT TATGCAGAAG
    ATTGAAAGCA TCTGTGACTT GACAGCACAC AGCTATCAGG ACTTGCATGA AATCAGGAAC
    AAAGTCTGCA GTGAATCGTC CTTGAAAACA AAGTTGATTA AACAGCTAGA TGAGATATAT
    TCTGAATATG AGTCTAAGAG AAAAGCCATG ATATCAGCAT TACTGAGAAA GTACACTTCA
    AAATTGGAGA AAATCAGTTA TGTGATGCCC TGTGATGTCC ACAGACTGAT TGATAATGAA
    GCCATGATGA TAAACCAAGC TCTGCTAGCA AATCGACGTG CTTTGGCCAA ACTGCATTTG
    AATTTGATGG AGAAACATTT GCAGATGGAT GTTTTTCAAA GGCTGAAATG GGAGGAAAAG
    CTTCAAGATT GGAAAAGAAT AAAACTTAAT GATGCAATCA ACCAGTTTAA AGACTTTATG
    AACAGTCCTC AAGTTCAGAA CCCAAAAAAC ATTCAAGATA CTCTGGGAAC ACTAAAGTCA
    GAACAGAAAA CACTGAGTGA GAAACGCATC CAAACCTTGG AGGTTCTTAG AGACATGACA
    CCTCCAAGAA TCTCAAAGTC ATCAGTTTCA GAATGGTTTT CAGCTCTGTC TGTTATCAAT
    GAGCAGATAG GTCATATTCA CGTTGCCACA ATGGAAACAC TTCATAAAAT CTATGACAAT
    AACTGGCAAG TGTGTTTGGC AGAGGTTGAT CTATTTAAGA CAGAGATGTC CACATGCGGT
    TTCACTTCGG ATGAGATACA GAATTTTGTT AACACTGATA TATTACCTCT CATTGGCCCA
    TGCCAGTCAC AAACGGAGAT CTATTTGGAA AAACTGGATA AAGCTTTTGA AAGTCTGGCC
    AAAACTACTG CTGACGAGAG CAAGTGCTTA TTCAGGTTAA TGTGTGGGGC AGCTCAGCTG
    TGGGAGATCC ACTGCAAAGG CCTGTTGAGC AGAGAACAGC AACTGCAAAA TTCATTGGAG
    GTCATCAGTC AAGTCCATGA GCAAGAGAAC CAGAGGAAAG AGGCCCAGCT GGATATGATG
    TTGGACAAAC TCAGACAGGA AAGTTCAGAA GAAGCTCTGA AGGCCTCATT AGAGAAAATA
    CTAACCTATT TGGAGGAAGT TAAGAATGGG TATGTGCAAA CCTATGAAGA GGAAGTGGAA
    ATTGTGGAGT ATTATCCATC TACAGTACTG CAGGAACTAC AAGCATACAG TCTTTCTGTT
    AGCCAGTTCT TCAGTGCTGA AGAGGTTTAT GGTCAGGACC ATAAGGATTT TTGCCAAATT
    TATCCTTCTC TTAAACTTGA TCAAAACATA AAAACTGGTA AAAACATAAC ACATAAAGAT
    GCACCAAAGT CACATTTCAA CAATCAAGAA AGCTCAAACT TCGACCTGTC CTGTGCAACG
    GATGACCAAC ACTGTACGGC TTTAGCATTT TTATTCTCAA ACACCAAGGA GACTCTGATC
    ACTGCAAAAG GAAATGTGTA CAGCTGCTCT GGGTTTCATA CTACTAATGA TGAGGAAGAG
    GAGAAAAACT TAAAGGAAAT TGAATTGGTT TTGTACCCAA AAACTTTTAC TGTTGAAGTT
    CTAAAAGAAG TAAGACAAAC ATTTTTTAGC ACTCTGGAAG AGCGATTTCA CATTATTCTA
    ACCAACACAA CAGCTATTGT GGAGGCCAAG AAGGAGAAAC TGAAAGCTGA GTTTAACCTT
    CGCGTCCAGC TACACCAAAC TCGTGCTGCA AGAATCGAAA TGGACATTTA CAGTGTCAGA
    GCAGCTGAAC TCGCACACCA TCGAGAACGT GTGGATCAAC ACTGTAGGGG TATACAGCAG
    GTGCTCGAAA ACTCCCAGAC AGACTTACAA GAGTTACAGG TCCAGCTGAA TAAACTGACT
    GAAGACTTTC AAATGCAAAT CTACAAAAGA GAGAAAGATT TCATCGTTGG CACTAGTTCT
    GAAAAGCTAA ATAGACTTTG GAACTCACTT CAATCCAGCC TGGACAAACT CATCAGTGTT
    ATCCAGATTT CACAAAGAGA CTTCAGACAA AAGATTGAGT TCAGGATGGA GGGTCTGAGG
    GAGTCAAATG TTCAGATAAT GAGATCTTTT AAATTGTTTT CTGAGGGGGG GAATTTTACA
    CCCCAGGAAA TTGAGGTCTT TCAGTCACAA CTGGAAAAGA TGGACAAGCG CATTGATACC
    GCAGAGGGGG CCGTGATACA GGACATGGAG GATAGAGAAT CAAAGTGTCT GGACCAGGCC
    AAGGATATTT TCAGGAGGTT TGGGGAAAAA TTCAGTTTTC ATGCTAATGA CCTGAAGTTT
    CTTGAAAAAA TGCAACAAAT TTTTACCAAC ACACGAGTCC AGATTAAGAG CGAGGCTTTG
    AAGAGTAACA TGCAGAAAAA GATGATTGAT AGCATGCTGC GTGATTTAAA ACAAATGACT
    GCTGAGTATT ACCAACCATG TCCTGATAAG AAGATTGTAA CCGTAGTGGA GATAACCAGT
    TTAACAACTT CTCTGATGGA GGAACTAAAG AAGAGGTGTC AGTACCTTGA CTGCTTTTTG
    GATGCCTCAA TGGCTGCCCC CCGACCAGAG ACTCCATTTC AGGGGGCTTT TGCAGTCGCA
    GCCCGCTCCA GATCTCGTAC ACAGGAAACC ACAGGCAGTC CAGAGAGAGA GGGCCTGCTA
    CATCCTAGTC GCATTGGAGC TTCTTTTCTG GATGATGCGG CAGTGGGAGT TATTAAAAGC
    CTACTCAAGG TAGGTAAAGC TCAAAACCTC AAGGAAGACA ACTGTGACTC AGCAGAACAA
    CGCGCTTCAT CAGCAAGGTT AAACTCACCC CATGGATCAG GTCGAAGGTC AGGAAAGAGT
    CTCAGTCAGT CTGGAATAGA AACTGTCCGC AGAAAGTCAG TGGAGTCAAT AAACATACAA
    AGTTCTATAA GTGTAAAGAG GTTGCCAAAA CTTAACCGAT TTGACAAGAA GTACCTTATT
    TTTGGCTCCA ACCCCGAAGA GCAGAAGAAC AGTGTTTGCT TCAAAACTTC AATTACTGGT
    ATTCTGTGGA AAGCCAATGA TATTCTTCTC ATGGTGGCTG AGGAGTTCTA TAAGAAAGAG
    CGCCGCCCTA TCACTCGTTC CGAGCAACTG CAGGAGACGT TTGATCAATG TGCAGAGGAG
    ATACAGAAAA GACTTCTGGT CTACCAGAGC CAAGCACATG ACTACCACAA CAGCTGCCTG
    CAAGAATTTC AGCAGCAGTT GAAAGCCATT GAAGAGTTTC TGTCATGTGT ACCAGAGATA
    CTTTTCTCTA AACTGAGAGA TCAACACCTT GAGGAGCTGA CGCAAAGCAT GATACAAATT
    CAACACCGGT TCAAACTAGT TCAACAGCGG AGTGAACAAA ACAGGAGAGA GCATAGTGGT
    CAGTTGCGTG TGCGTCTCAG TCACCCGGCT TGTGAGAGGG AACTCAAAGC GTTGGTGGAG
    GCTGAAGAGC AGAGACAGAG ACATCACAGA GAGGCCATCC AGCATACCAG ACAGGAACTT
    CAGGCCTGTG TCATCAAAAA CGCCGAGGAA TCTGTCACTG CTTTTGCCAG GTTGGCAGAG
    GCCCTGCTAT TTCAGTTCGA CAATCTCATT ACCATCCATG AGGTTCAAGT GGGACATGCT
    GAACAAAAGG AGAATTTCAC TACTCTGCTT CGACAAACAC AAACTGGACT TTTGCAAGAG
    GACACGAGCA GTGCTGTGAT ACAGAAAGGC AGCAGAATAT GGCCAGGCAT TTGTTATTTC
    GGTTTCACTG ATGGCAGCTC AGAACATAAA CAATCACAAG GAACAGCCAC AATCACAACG
    GCTAAAACCA CACTGGCACA TCTTAAGACC ATTGAAGTTC GAGACACCAT GCATGAGCGG
    TATGGGCGGA GGGTTCAGGA GGAGCTGGAT AGAGCTCATC GGGAGTGTGA CGCTCAGGAA
    AAAGAGCTGC AGCAGTGGCA TGAGCACTGG CAGAGTCAGC TAAAATCCCT CGCCTCACTC
    AACTCCGAAT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.