coro1c cDNA ORF clone, Callorhinchus milii(elephant shark)

The following coro1c gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the coro1c 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
OCa382262 XM_007901881.1
Latest version!
Callorhinchus milii coronin, actin binding protein, 1C (coro1c), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 9-11 $258.30
$369.00
OCa382259 XM_007901878.1
Latest version!
Callorhinchus milii coronin, actin binding protein, 1C (coro1c), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OCa382260 XM_007901879.1
Latest version!
Callorhinchus milii coronin, actin binding protein, 1C (coro1c), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OCa382261 XM_007901880.1
Latest version!
Callorhinchus milii coronin, actin binding protein, 1C (coro1c), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** 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 OCa382262
    Clone ID Related Accession (Same CDS sequence) XM_007901881.1
    Accession Version XM_007901881.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 1449bp)
    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 2014-05-08
    Organism Callorhinchus milii(elephant shark)
    Product coronin-1C isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006890144.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Callorhinchus milii Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.0 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
    ATGTTACGGG TTGTACGAAC GAGCAAGGTT CGGCATGTCT ATGGCCAAGT GATGAAAAAT 
    GACCAGTGCT ACGATGACAT CCAAGTTTCC AGGGTGACCT GGGATAGTTC GTTCTGTGAC
    GTGAATCCCA AGTTTGTAGC GATAATCATC CAGGCGTGTG GTGGTGGAGC ATTCTTGGTA
    CTTCCTTTGC AAAAGACGGG TCGGATTGAT AAGACCTATC CAACAGTATG TGGACACACG
    GCACCGGTGC TTGACATTAA CTGGTGCCCG CACAATGACT TCATTATTGC CAGTGGATCA
    GAGGATTGCT TCGTCAAGGT CTGGCAGATC CCGGAGAATG GCCTCACTGT TCCTCTCACA
    GAACCAGTCG TCACCTTGGA GGGACATTGC AAGAAGGTTG GAATTGTATC TTGGCATCCG
    ACTGCTCGCA ATGTGCTACT GAGCGCAGCG TGTGAAAGTA TCATGATCTG GAACGTGGGG
    ACTGGCGAGG CTTTGCTGGA GCTCAACGAC ATGCACAACG AAACGATCTA CAGCATATCC
    TGGAACCGAG ACGGGAGCCT ATTCTGCACC GCATCCAAGG ACAAGAAATT GCGTTTGATT
    GATCCACGGA ATGGGAGGAT CATTTTAGAA AAGGACAAAC CTCATGAAGG GGCTCGGCCC
    ATCAGAGCCA TCTTCCTCGC GGACGGCAAG ATCTTCACCA CCGGCTTCAG CCGTATGAGT
    GAGCGGCAGC TCGCCCTGTG GAACCCAGAA AACATGGACG AACCGATAGC TTTGCAGGAG
    ATGGACTCGA GTAGTGGAGT GCTATTGCCA TTCTACGATG CAGACACGAA CATAATTTAC
    TTGTGTGGAA AGGGTGACAG CAGCATCCGC TACTTTGAGA TCAGCGACGA GGCCCCGTAC
    GTGCACTACC TGAACACCTT CTCCACCAAG GAGCCCCAGC GGGGCATGGG CTATATGCCA
    AAGCGAGGCC TGGAAGTTGG CAAGTGCGAG ATTGCCAGGT TTTTTAAACT TCATGAAAGG
    AAATGCGAGC CCATCACCAT GATTGTGCCA AGGAAGTCGG ACCTATTCCA AGATGACCTG
    TACCCCGACA CAGTGGGGCT GGAGGCAGCG ATCGAAGCAG ACGAGTGGCT TGACGGGAAA
    AACGCAGAGC CCATCCTGAT CTCCCTTAAA CCCGGCTCCG TCCCCACCAA AACCCGGGAA
    GTCCGAGTCA AGCAGAACAT TTTAGATAAG CCCTTGCTGA TCAAGAAAAC TGACAAGGGC
    ATTGCCCCGA TCAAGACTAG TTCCAACACA TCTCCCGAAT TCAAGGTGGA GGAGTTATTG
    GACGAGATCA GGACTCTGAA GGCCACCATA GCTACCCAAG ATCAGCGGAT TGCCAACCTC
    GAGGAGCAGA TGGCCAAGGT TGTCATCTGC GACGTGAAGA ACACTGTGTC CCCTGGGGCG
    ATGCAGTGA

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

    RefSeq XP_007900072.1
    CDS145..1593
    Translation

    Target ORF information:

    RefSeq Version XM_007901881.1
    Organism Callorhinchus milii(elephant shark)
    Definition Callorhinchus milii coronin, actin binding protein, 1C (coro1c), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007901881.1

    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
    ATGTTACGGG TTGTACGAAC GAGCAAGGTT CGGCATGTCT ATGGCCAAGT GATGAAAAAT 
    GACCAGTGCT ACGATGACAT CCAAGTTTCC AGGGTGACCT GGGATAGTTC GTTCTGTGAC
    GTGAATCCCA AGTTTGTAGC GATAATCATC CAGGCGTGTG GTGGTGGAGC ATTCTTGGTA
    CTTCCTTTGC AAAAGACGGG TCGGATTGAT AAGACCTATC CAACAGTATG TGGACACACG
    GCACCGGTGC TTGACATTAA CTGGTGCCCG CACAATGACT TCATTATTGC CAGTGGATCA
    GAGGATTGCT TCGTCAAGGT CTGGCAGATC CCGGAGAATG GCCTCACTGT TCCTCTCACA
    GAACCAGTCG TCACCTTGGA GGGACATTGC AAGAAGGTTG GAATTGTATC TTGGCATCCG
    ACTGCTCGCA ATGTGCTACT GAGCGCAGCG TGTGAAAGTA TCATGATCTG GAACGTGGGG
    ACTGGCGAGG CTTTGCTGGA GCTCAACGAC ATGCACAACG AAACGATCTA CAGCATATCC
    TGGAACCGAG ACGGGAGCCT ATTCTGCACC GCATCCAAGG ACAAGAAATT GCGTTTGATT
    GATCCACGGA ATGGGAGGAT CATTTTAGAA AAGGACAAAC CTCATGAAGG GGCTCGGCCC
    ATCAGAGCCA TCTTCCTCGC GGACGGCAAG ATCTTCACCA CCGGCTTCAG CCGTATGAGT
    GAGCGGCAGC TCGCCCTGTG GAACCCAGAA AACATGGACG AACCGATAGC TTTGCAGGAG
    ATGGACTCGA GTAGTGGAGT GCTATTGCCA TTCTACGATG CAGACACGAA CATAATTTAC
    TTGTGTGGAA AGGGTGACAG CAGCATCCGC TACTTTGAGA TCAGCGACGA GGCCCCGTAC
    GTGCACTACC TGAACACCTT CTCCACCAAG GAGCCCCAGC GGGGCATGGG CTATATGCCA
    AAGCGAGGCC TGGAAGTTGG CAAGTGCGAG ATTGCCAGGT TTTTTAAACT TCATGAAAGG
    AAATGCGAGC CCATCACCAT GATTGTGCCA AGGAAGTCGG ACCTATTCCA AGATGACCTG
    TACCCCGACA CAGTGGGGCT GGAGGCAGCG ATCGAAGCAG ACGAGTGGCT TGACGGGAAA
    AACGCAGAGC CCATCCTGAT CTCCCTTAAA CCCGGCTCCG TCCCCACCAA AACCCGGGAA
    GTCCGAGTCA AGCAGAACAT TTTAGATAAG CCCTTGCTGA TCAAGAAAAC TGACAAGGGC
    ATTGCCCCGA TCAAGACTAG TTCCAACACA TCTCCCGAAT TCAAGGTGGA GGAGTTATTG
    GACGAGATCA GGACTCTGAA GGCCACCATA GCTACCCAAG ATCAGCGGAT TGCCAACCTC
    GAGGAGCAGA TGGCCAAGGT TGTCATCTGC GACGTGAAGA ACACTGTGTC CCCTGGGGCG
    ATGCAGTGA

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

    CloneID OCa382259
    Clone ID Related Accession (Same CDS sequence) XM_007901878.1
    Accession Version XM_007901878.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3375bp)
    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 2014-05-08
    Organism Callorhinchus milii(elephant shark)
    Product coronin-1C isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006890144.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Callorhinchus milii Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.0 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
    ATGGTGCTCT GGGACGCGAT CGGTAAAATG GAACATCTGA AGGACTCGAG AGAGATGGAA 
    AGGATGGGGA CTGAAGAAGG TCGAACCCAT GATGGTGAGT GTTCTGTTGG TCCAAAGCTG
    GAAAAAGGAA CCAAGGATCT AGTCTTAATA GGGGAGAAAC TCGATGAGAA AGATACAGGA
    AGGAAAATAA TACAAGGTGA ACCTTCTGCA CGGCAACCAT CACTTGATCT TCTGTTGTCG
    CCCTTTCACC AAACCAAAAG CTGTGTGGAA TTTGTGAGCG ACAGCGAGTG GGTTCAAACA
    AAACTCGACA CCCTTTTGGC GCCAGAGACC GAAGCACGAC CGCGTGAGAT GGGTGGTCAA
    CTGAGTGGCG AGAGCGGAGA GCCTACTGAG GGTGGGGCGC TGGTTGTAGA GGGCTTCGAG
    CAAAGAGATG GTCTCGGTTC AGATCAGATT GCAAACGGTC AGAAAGGAAC TGCATGGCGG
    GTTAGTGAAA AGGTTAGTGA GGTGTCTGAG ATGCCACTTA TGGAACGGGC AGGATGGGAT
    CTGAGCAAGC AAAGGGCAGG CATTTTCAAT CCTGAAGCTG TGGAAAGTGT GGGAGAACTT
    CCACGGGAGA AAGGGTATCA GGAGGATGTG GGTGATGCGA ATGCAGGTGG AAGTAACTGG
    CTCCAGCTCA CGAAATCAGG CCCATGTTTG TCTGGCCGCC AGCTCTGTGA CCAGAACCCC
    TCCAATGAGC TAACGGCAAG TCGTTATAGA GCTGTGCACA TGCATGGCCT GATGTCACCC
    AGGATACCGA GCCACACGAT ACTGAGTCCA GGCAATCGTG AACTTGGTGA CGACCAAGTG
    AATGACCAGA CACCGAGGCT GTGGCCAATC TTACTGACTG CCGAGCTGGC CTCCAACACA
    GAGCGAGTTG ATTGTGAGGA GCAATCTAGC TCTTCCAGCA ATGGTGACCA AACAGGGCCA
    CAGGCTGAGG TGTCGTGTGA ACCGACCTGT CAATTGGACC CGACTGATGT CGGTTATGGT
    TTTGGACATT GGAGAGCGTC GACCGGTGAG GGAGACGGAT GTGAGCCAGG AAACCAGCCC
    AGGGGAGTGT CCCAAACAGG CTTTGTGCAA GGAGAGGAGA CTGTTCTCTC TGAAGACATG
    GACATCAATG ACCAGGATAT GCTGAGTGGA GGGAGTGGTT TGTCTCCAAC ACTGGGAAGT
    GCAGGATGGA GGTTGGGCCG AGGGAACCTG CATGGATGGA AGGACGAGGT AACCCAAGTT
    TGTGGCCTAG AATGGCTCGG CCTGCATGAA CCCCATCAAG GATCGGGCGA TGTGGCTCAG
    CACAGCATGG AGCGAGTGCA GGGCAAGGAG TCCGGCCACA CAGGGCGCTC TGCACAGGAG
    CGAGAGGTTT GGCCAACAGG CGTGGAAAAC GATCGATCTG ATTCCGATCA ACACACGCAG
    CACAGTGGCC GCGACATGAA ATCTGGCCGA GTCCCACCCA GCAAGCGGAG CAGACCATCT
    GAAGACTGTG ACACGAGCAA AGCTTCACGC CAGGCGCTGG CAGGCGGACC TGCACACAAT
    GAACTGAGCG GATCATCCGA GTACAGGAAG CGAGATGCCA ACAGTGAGGA GTTGGAGTCG
    AGGGAAGATG TTGGCAAGCC CAGACCCACC AAGTCGAGGG GAAGAGCTGA GGAGCTCGGT
    GTGCCCGCCA GGCAGGGGAG AGAGGTAATC TGCCAAGCAA GGGCCAGAAC GCAGCAGATT
    TTGCCCGTGG CCGCGGAGCG CAAACTGACC CCTGCATTTG CGGGACTGTC TGAGGAACAT
    TGTCCAGCCA CCCAGACACC GGGGAAGCCG GACAGCAACC AGACCATCAA GGTGTCTGAC
    GTGAAGAAAG CGTTTGAGAA GAAAGAGCGC GAAAAGAAGA CTCCAGAGAT CCACAAGAAA
    ACGGAGATGT TACGGGTTGT ACGAACGAGC AAGGTTCGGC ATGTCTATGG CCAAGTGATG
    AAAAATGACC AGTGCTACGA TGACATCCAA GTTTCCAGGG TGACCTGGGA TAGTTCGTTC
    TGTGACGTGA ATCCCAAGTT TGTAGCGATA ATCATCCAGG CGTGTGGTGG TGGAGCATTC
    TTGGTACTTC CTTTGCAAAA GACGGGTCGG ATTGATAAGA CCTATCCAAC AGTATGTGGA
    CACACGGCAC CGGTGCTTGA CATTAACTGG TGCCCGCACA ATGACTTCAT TATTGCCAGT
    GGATCAGAGG ATTGCTTCGT CAAGGTCTGG CAGATCCCGG AGAATGGCCT CACTGTTCCT
    CTCACAGAAC CAGTCGTCAC CTTGGAGGGA CATTGCAAGA AGGTTGGAAT TGTATCTTGG
    CATCCGACTG CTCGCAATGT GCTACTGAGC GCAGCGTGTG AAAGTATCAT GATCTGGAAC
    GTGGGGACTG GCGAGGCTTT GCTGGAGCTC AACGACATGC ACAACGAAAC GATCTACAGC
    ATATCCTGGA ACCGAGACGG GAGCCTATTC TGCACCGCAT CCAAGGACAA GAAATTGCGT
    TTGATTGATC CACGGAATGG GAGGATCATT TTAGAAAAGG ACAAACCTCA TGAAGGGGCT
    CGGCCCATCA GAGCCATCTT CCTCGCGGAC GGCAAGATCT TCACCACCGG CTTCAGCCGT
    ATGAGTGAGC GGCAGCTCGC CCTGTGGAAC CCAGAAAACA TGGACGAACC GATAGCTTTG
    CAGGAGATGG ACTCGAGTAG TGGAGTGCTA TTGCCATTCT ACGATGCAGA CACGAACATA
    ATTTACTTGT GTGGAAAGGG TGACAGCAGC ATCCGCTACT TTGAGATCAG CGACGAGGCC
    CCGTACGTGC ACTACCTGAA CACCTTCTCC ACCAAGGAGC CCCAGCGGGG CATGGGCTAT
    ATGCCAAAGC GAGGCCTGGA AGTTGGCAAG TGCGAGATTG CCAGGTTTTT TAAACTTCAT
    GAAAGGAAAT GCGAGCCCAT CACCATGATT GTGCCAAGGA AGTCGGACCT ATTCCAAGAT
    GACCTGTACC CCGACACAGT GGGGCTGGAG GCAGCGATCG AAGCAGACGA GTGGCTTGAC
    GGGAAAAACG CAGAGCCCAT CCTGATCTCC CTTAAACCCG GCTCCGTCCC CACCAAAACC
    CGGGAAGTCC GAGTCAAGCA GAACATTTTA GATAAGCCCT TGCTGATCAA GAAAACTGAC
    AAGGGCATTG CCCCGATCAA GACTAGTTCC AACACATCTC CCGAATTCAA GGTGGAGGAG
    TTATTGGACG AGATCAGGAC TCTGAAGGCC ACCATAGCTA CCCAAGATCA GCGGATTGCC
    AACCTCGAGG AGCAGATGGC CAAGGTTGTC ATCTGCGACG TGAAGAACAC TGTGTCCCCT
    GGGGCGATGC AGTGA

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

    RefSeq XP_007900069.1
    CDS1..3375
    Translation

    Target ORF information:

    RefSeq Version XM_007901878.1
    Organism Callorhinchus milii(elephant shark)
    Definition Callorhinchus milii coronin, actin binding protein, 1C (coro1c), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007901878.1

    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
    ATGGTGCTCT GGGACGCGAT CGGTAAAATG GAACATCTGA AGGACTCGAG AGAGATGGAA 
    AGGATGGGGA CTGAAGAAGG TCGAACCCAT GATGGTGAGT GTTCTGTTGG TCCAAAGCTG
    GAAAAAGGAA CCAAGGATCT AGTCTTAATA GGGGAGAAAC TCGATGAGAA AGATACAGGA
    AGGAAAATAA TACAAGGTGA ACCTTCTGCA CGGCAACCAT CACTTGATCT TCTGTTGTCG
    CCCTTTCACC AAACCAAAAG CTGTGTGGAA TTTGTGAGCG ACAGCGAGTG GGTTCAAACA
    AAACTCGACA CCCTTTTGGC GCCAGAGACC GAAGCACGAC CGCGTGAGAT GGGTGGTCAA
    CTGAGTGGCG AGAGCGGAGA GCCTACTGAG GGTGGGGCGC TGGTTGTAGA GGGCTTCGAG
    CAAAGAGATG GTCTCGGTTC AGATCAGATT GCAAACGGTC AGAAAGGAAC TGCATGGCGG
    GTTAGTGAAA AGGTTAGTGA GGTGTCTGAG ATGCCACTTA TGGAACGGGC AGGATGGGAT
    CTGAGCAAGC AAAGGGCAGG CATTTTCAAT CCTGAAGCTG TGGAAAGTGT GGGAGAACTT
    CCACGGGAGA AAGGGTATCA GGAGGATGTG GGTGATGCGA ATGCAGGTGG AAGTAACTGG
    CTCCAGCTCA CGAAATCAGG CCCATGTTTG TCTGGCCGCC AGCTCTGTGA CCAGAACCCC
    TCCAATGAGC TAACGGCAAG TCGTTATAGA GCTGTGCACA TGCATGGCCT GATGTCACCC
    AGGATACCGA GCCACACGAT ACTGAGTCCA GGCAATCGTG AACTTGGTGA CGACCAAGTG
    AATGACCAGA CACCGAGGCT GTGGCCAATC TTACTGACTG CCGAGCTGGC CTCCAACACA
    GAGCGAGTTG ATTGTGAGGA GCAATCTAGC TCTTCCAGCA ATGGTGACCA AACAGGGCCA
    CAGGCTGAGG TGTCGTGTGA ACCGACCTGT CAATTGGACC CGACTGATGT CGGTTATGGT
    TTTGGACATT GGAGAGCGTC GACCGGTGAG GGAGACGGAT GTGAGCCAGG AAACCAGCCC
    AGGGGAGTGT CCCAAACAGG CTTTGTGCAA GGAGAGGAGA CTGTTCTCTC TGAAGACATG
    GACATCAATG ACCAGGATAT GCTGAGTGGA GGGAGTGGTT TGTCTCCAAC ACTGGGAAGT
    GCAGGATGGA GGTTGGGCCG AGGGAACCTG CATGGATGGA AGGACGAGGT AACCCAAGTT
    TGTGGCCTAG AATGGCTCGG CCTGCATGAA CCCCATCAAG GATCGGGCGA TGTGGCTCAG
    CACAGCATGG AGCGAGTGCA GGGCAAGGAG TCCGGCCACA CAGGGCGCTC TGCACAGGAG
    CGAGAGGTTT GGCCAACAGG CGTGGAAAAC GATCGATCTG ATTCCGATCA ACACACGCAG
    CACAGTGGCC GCGACATGAA ATCTGGCCGA GTCCCACCCA GCAAGCGGAG CAGACCATCT
    GAAGACTGTG ACACGAGCAA AGCTTCACGC CAGGCGCTGG CAGGCGGACC TGCACACAAT
    GAACTGAGCG GATCATCCGA GTACAGGAAG CGAGATGCCA ACAGTGAGGA GTTGGAGTCG
    AGGGAAGATG TTGGCAAGCC CAGACCCACC AAGTCGAGGG GAAGAGCTGA GGAGCTCGGT
    GTGCCCGCCA GGCAGGGGAG AGAGGTAATC TGCCAAGCAA GGGCCAGAAC GCAGCAGATT
    TTGCCCGTGG CCGCGGAGCG CAAACTGACC CCTGCATTTG CGGGACTGTC TGAGGAACAT
    TGTCCAGCCA CCCAGACACC GGGGAAGCCG GACAGCAACC AGACCATCAA GGTGTCTGAC
    GTGAAGAAAG CGTTTGAGAA GAAAGAGCGC GAAAAGAAGA CTCCAGAGAT CCACAAGAAA
    ACGGAGATGT TACGGGTTGT ACGAACGAGC AAGGTTCGGC ATGTCTATGG CCAAGTGATG
    AAAAATGACC AGTGCTACGA TGACATCCAA GTTTCCAGGG TGACCTGGGA TAGTTCGTTC
    TGTGACGTGA ATCCCAAGTT TGTAGCGATA ATCATCCAGG CGTGTGGTGG TGGAGCATTC
    TTGGTACTTC CTTTGCAAAA GACGGGTCGG ATTGATAAGA CCTATCCAAC AGTATGTGGA
    CACACGGCAC CGGTGCTTGA CATTAACTGG TGCCCGCACA ATGACTTCAT TATTGCCAGT
    GGATCAGAGG ATTGCTTCGT CAAGGTCTGG CAGATCCCGG AGAATGGCCT CACTGTTCCT
    CTCACAGAAC CAGTCGTCAC CTTGGAGGGA CATTGCAAGA AGGTTGGAAT TGTATCTTGG
    CATCCGACTG CTCGCAATGT GCTACTGAGC GCAGCGTGTG AAAGTATCAT GATCTGGAAC
    GTGGGGACTG GCGAGGCTTT GCTGGAGCTC AACGACATGC ACAACGAAAC GATCTACAGC
    ATATCCTGGA ACCGAGACGG GAGCCTATTC TGCACCGCAT CCAAGGACAA GAAATTGCGT
    TTGATTGATC CACGGAATGG GAGGATCATT TTAGAAAAGG ACAAACCTCA TGAAGGGGCT
    CGGCCCATCA GAGCCATCTT CCTCGCGGAC GGCAAGATCT TCACCACCGG CTTCAGCCGT
    ATGAGTGAGC GGCAGCTCGC CCTGTGGAAC CCAGAAAACA TGGACGAACC GATAGCTTTG
    CAGGAGATGG ACTCGAGTAG TGGAGTGCTA TTGCCATTCT ACGATGCAGA CACGAACATA
    ATTTACTTGT GTGGAAAGGG TGACAGCAGC ATCCGCTACT TTGAGATCAG CGACGAGGCC
    CCGTACGTGC ACTACCTGAA CACCTTCTCC ACCAAGGAGC CCCAGCGGGG CATGGGCTAT
    ATGCCAAAGC GAGGCCTGGA AGTTGGCAAG TGCGAGATTG CCAGGTTTTT TAAACTTCAT
    GAAAGGAAAT GCGAGCCCAT CACCATGATT GTGCCAAGGA AGTCGGACCT ATTCCAAGAT
    GACCTGTACC CCGACACAGT GGGGCTGGAG GCAGCGATCG AAGCAGACGA GTGGCTTGAC
    GGGAAAAACG CAGAGCCCAT CCTGATCTCC CTTAAACCCG GCTCCGTCCC CACCAAAACC
    CGGGAAGTCC GAGTCAAGCA GAACATTTTA GATAAGCCCT TGCTGATCAA GAAAACTGAC
    AAGGGCATTG CCCCGATCAA GACTAGTTCC AACACATCTC CCGAATTCAA GGTGGAGGAG
    TTATTGGACG AGATCAGGAC TCTGAAGGCC ACCATAGCTA CCCAAGATCA GCGGATTGCC
    AACCTCGAGG AGCAGATGGC CAAGGTTGTC ATCTGCGACG TGAAGAACAC TGTGTCCCCT
    GGGGCGATGC AGTGA

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

    CloneID OCa382260
    Clone ID Related Accession (Same CDS sequence) XM_007901879.1
    Accession Version XM_007901879.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3360bp)
    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 2014-05-08
    Organism Callorhinchus milii(elephant shark)
    Product coronin-1C isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006890144.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Callorhinchus milii Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.0 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
    ATGAGCGGTA AAATGGAACA TCTGAAGGAC TCGAGAGAGA TGGAAAGGAT GGGGACTGAA 
    GAAGGTCGAA CCCATGATGG TGAGTGTTCT GTTGGTCCAA AGCTGGAAAA AGGAACCAAG
    GATCTAGTCT TAATAGGGGA GAAACTCGAT GAGAAAGATA CAGGAAGGAA AATAATACAA
    GGTGAACCTT CTGCACGGCA ACCATCACTT GATCTTCTGT TGTCGCCCTT TCACCAAACC
    AAAAGCTGTG TGGAATTTGT GAGCGACAGC GAGTGGGTTC AAACAAAACT CGACACCCTT
    TTGGCGCCAG AGACCGAAGC ACGACCGCGT GAGATGGGTG GTCAACTGAG TGGCGAGAGC
    GGAGAGCCTA CTGAGGGTGG GGCGCTGGTT GTAGAGGGCT TCGAGCAAAG AGATGGTCTC
    GGTTCAGATC AGATTGCAAA CGGTCAGAAA GGAACTGCAT GGCGGGTTAG TGAAAAGGTT
    AGTGAGGTGT CTGAGATGCC ACTTATGGAA CGGGCAGGAT GGGATCTGAG CAAGCAAAGG
    GCAGGCATTT TCAATCCTGA AGCTGTGGAA AGTGTGGGAG AACTTCCACG GGAGAAAGGG
    TATCAGGAGG ATGTGGGTGA TGCGAATGCA GGTGGAAGTA ACTGGCTCCA GCTCACGAAA
    TCAGGCCCAT GTTTGTCTGG CCGCCAGCTC TGTGACCAGA ACCCCTCCAA TGAGCTAACG
    GCAAGTCGTT ATAGAGCTGT GCACATGCAT GGCCTGATGT CACCCAGGAT ACCGAGCCAC
    ACGATACTGA GTCCAGGCAA TCGTGAACTT GGTGACGACC AAGTGAATGA CCAGACACCG
    AGGCTGTGGC CAATCTTACT GACTGCCGAG CTGGCCTCCA ACACAGAGCG AGTTGATTGT
    GAGGAGCAAT CTAGCTCTTC CAGCAATGGT GACCAAACAG GGCCACAGGC TGAGGTGTCG
    TGTGAACCGA CCTGTCAATT GGACCCGACT GATGTCGGTT ATGGTTTTGG ACATTGGAGA
    GCGTCGACCG GTGAGGGAGA CGGATGTGAG CCAGGAAACC AGCCCAGGGG AGTGTCCCAA
    ACAGGCTTTG TGCAAGGAGA GGAGACTGTT CTCTCTGAAG ACATGGACAT CAATGACCAG
    GATATGCTGA GTGGAGGGAG TGGTTTGTCT CCAACACTGG GAAGTGCAGG ATGGAGGTTG
    GGCCGAGGGA ACCTGCATGG ATGGAAGGAC GAGGTAACCC AAGTTTGTGG CCTAGAATGG
    CTCGGCCTGC ATGAACCCCA TCAAGGATCG GGCGATGTGG CTCAGCACAG CATGGAGCGA
    GTGCAGGGCA AGGAGTCCGG CCACACAGGG CGCTCTGCAC AGGAGCGAGA GGTTTGGCCA
    ACAGGCGTGG AAAACGATCG ATCTGATTCC GATCAACACA CGCAGCACAG TGGCCGCGAC
    ATGAAATCTG GCCGAGTCCC ACCCAGCAAG CGGAGCAGAC CATCTGAAGA CTGTGACACG
    AGCAAAGCTT CACGCCAGGC GCTGGCAGGC GGACCTGCAC ACAATGAACT GAGCGGATCA
    TCCGAGTACA GGAAGCGAGA TGCCAACAGT GAGGAGTTGG AGTCGAGGGA AGATGTTGGC
    AAGCCCAGAC CCACCAAGTC GAGGGGAAGA GCTGAGGAGC TCGGTGTGCC CGCCAGGCAG
    GGGAGAGAGG TAATCTGCCA AGCAAGGGCC AGAACGCAGC AGATTTTGCC CGTGGCCGCG
    GAGCGCAAAC TGACCCCTGC ATTTGCGGGA CTGTCTGAGG AACATTGTCC AGCCACCCAG
    ACACCGGGGA AGCCGGACAG CAACCAGACC ATCAAGGTGT CTGACGTGAA GAAAGCGTTT
    GAGAAGAAAG AGCGCGAAAA GAAGACTCCA GAGATCCACA AGAAAACGGA GATGTTACGG
    GTTGTACGAA CGAGCAAGGT TCGGCATGTC TATGGCCAAG TGATGAAAAA TGACCAGTGC
    TACGATGACA TCCAAGTTTC CAGGGTGACC TGGGATAGTT CGTTCTGTGA CGTGAATCCC
    AAGTTTGTAG CGATAATCAT CCAGGCGTGT GGTGGTGGAG CATTCTTGGT ACTTCCTTTG
    CAAAAGACGG GTCGGATTGA TAAGACCTAT CCAACAGTAT GTGGACACAC GGCACCGGTG
    CTTGACATTA ACTGGTGCCC GCACAATGAC TTCATTATTG CCAGTGGATC AGAGGATTGC
    TTCGTCAAGG TCTGGCAGAT CCCGGAGAAT GGCCTCACTG TTCCTCTCAC AGAACCAGTC
    GTCACCTTGG AGGGACATTG CAAGAAGGTT GGAATTGTAT CTTGGCATCC GACTGCTCGC
    AATGTGCTAC TGAGCGCAGC GTGTGAAAGT ATCATGATCT GGAACGTGGG GACTGGCGAG
    GCTTTGCTGG AGCTCAACGA CATGCACAAC GAAACGATCT ACAGCATATC CTGGAACCGA
    GACGGGAGCC TATTCTGCAC CGCATCCAAG GACAAGAAAT TGCGTTTGAT TGATCCACGG
    AATGGGAGGA TCATTTTAGA AAAGGACAAA CCTCATGAAG GGGCTCGGCC CATCAGAGCC
    ATCTTCCTCG CGGACGGCAA GATCTTCACC ACCGGCTTCA GCCGTATGAG TGAGCGGCAG
    CTCGCCCTGT GGAACCCAGA AAACATGGAC GAACCGATAG CTTTGCAGGA GATGGACTCG
    AGTAGTGGAG TGCTATTGCC ATTCTACGAT GCAGACACGA ACATAATTTA CTTGTGTGGA
    AAGGGTGACA GCAGCATCCG CTACTTTGAG ATCAGCGACG AGGCCCCGTA CGTGCACTAC
    CTGAACACCT TCTCCACCAA GGAGCCCCAG CGGGGCATGG GCTATATGCC AAAGCGAGGC
    CTGGAAGTTG GCAAGTGCGA GATTGCCAGG TTTTTTAAAC TTCATGAAAG GAAATGCGAG
    CCCATCACCA TGATTGTGCC AAGGAAGTCG GACCTATTCC AAGATGACCT GTACCCCGAC
    ACAGTGGGGC TGGAGGCAGC GATCGAAGCA GACGAGTGGC TTGACGGGAA AAACGCAGAG
    CCCATCCTGA TCTCCCTTAA ACCCGGCTCC GTCCCCACCA AAACCCGGGA AGTCCGAGTC
    AAGCAGAACA TTTTAGATAA GCCCTTGCTG ATCAAGAAAA CTGACAAGGG CATTGCCCCG
    ATCAAGACTA GTTCCAACAC ATCTCCCGAA TTCAAGGTGG AGGAGTTATT GGACGAGATC
    AGGACTCTGA AGGCCACCAT AGCTACCCAA GATCAGCGGA TTGCCAACCT CGAGGAGCAG
    ATGGCCAAGG TTGTCATCTG CGACGTGAAG AACACTGTGT CCCCTGGGGC GATGCAGTGA

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

    RefSeq XP_007900070.1
    CDS245..3604
    Translation

    Target ORF information:

    RefSeq Version XM_007901879.1
    Organism Callorhinchus milii(elephant shark)
    Definition Callorhinchus milii coronin, actin binding protein, 1C (coro1c), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007901879.1

    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
    ATGAGCGGTA AAATGGAACA TCTGAAGGAC TCGAGAGAGA TGGAAAGGAT GGGGACTGAA 
    GAAGGTCGAA CCCATGATGG TGAGTGTTCT GTTGGTCCAA AGCTGGAAAA AGGAACCAAG
    GATCTAGTCT TAATAGGGGA GAAACTCGAT GAGAAAGATA CAGGAAGGAA AATAATACAA
    GGTGAACCTT CTGCACGGCA ACCATCACTT GATCTTCTGT TGTCGCCCTT TCACCAAACC
    AAAAGCTGTG TGGAATTTGT GAGCGACAGC GAGTGGGTTC AAACAAAACT CGACACCCTT
    TTGGCGCCAG AGACCGAAGC ACGACCGCGT GAGATGGGTG GTCAACTGAG TGGCGAGAGC
    GGAGAGCCTA CTGAGGGTGG GGCGCTGGTT GTAGAGGGCT TCGAGCAAAG AGATGGTCTC
    GGTTCAGATC AGATTGCAAA CGGTCAGAAA GGAACTGCAT GGCGGGTTAG TGAAAAGGTT
    AGTGAGGTGT CTGAGATGCC ACTTATGGAA CGGGCAGGAT GGGATCTGAG CAAGCAAAGG
    GCAGGCATTT TCAATCCTGA AGCTGTGGAA AGTGTGGGAG AACTTCCACG GGAGAAAGGG
    TATCAGGAGG ATGTGGGTGA TGCGAATGCA GGTGGAAGTA ACTGGCTCCA GCTCACGAAA
    TCAGGCCCAT GTTTGTCTGG CCGCCAGCTC TGTGACCAGA ACCCCTCCAA TGAGCTAACG
    GCAAGTCGTT ATAGAGCTGT GCACATGCAT GGCCTGATGT CACCCAGGAT ACCGAGCCAC
    ACGATACTGA GTCCAGGCAA TCGTGAACTT GGTGACGACC AAGTGAATGA CCAGACACCG
    AGGCTGTGGC CAATCTTACT GACTGCCGAG CTGGCCTCCA ACACAGAGCG AGTTGATTGT
    GAGGAGCAAT CTAGCTCTTC CAGCAATGGT GACCAAACAG GGCCACAGGC TGAGGTGTCG
    TGTGAACCGA CCTGTCAATT GGACCCGACT GATGTCGGTT ATGGTTTTGG ACATTGGAGA
    GCGTCGACCG GTGAGGGAGA CGGATGTGAG CCAGGAAACC AGCCCAGGGG AGTGTCCCAA
    ACAGGCTTTG TGCAAGGAGA GGAGACTGTT CTCTCTGAAG ACATGGACAT CAATGACCAG
    GATATGCTGA GTGGAGGGAG TGGTTTGTCT CCAACACTGG GAAGTGCAGG ATGGAGGTTG
    GGCCGAGGGA ACCTGCATGG ATGGAAGGAC GAGGTAACCC AAGTTTGTGG CCTAGAATGG
    CTCGGCCTGC ATGAACCCCA TCAAGGATCG GGCGATGTGG CTCAGCACAG CATGGAGCGA
    GTGCAGGGCA AGGAGTCCGG CCACACAGGG CGCTCTGCAC AGGAGCGAGA GGTTTGGCCA
    ACAGGCGTGG AAAACGATCG ATCTGATTCC GATCAACACA CGCAGCACAG TGGCCGCGAC
    ATGAAATCTG GCCGAGTCCC ACCCAGCAAG CGGAGCAGAC CATCTGAAGA CTGTGACACG
    AGCAAAGCTT CACGCCAGGC GCTGGCAGGC GGACCTGCAC ACAATGAACT GAGCGGATCA
    TCCGAGTACA GGAAGCGAGA TGCCAACAGT GAGGAGTTGG AGTCGAGGGA AGATGTTGGC
    AAGCCCAGAC CCACCAAGTC GAGGGGAAGA GCTGAGGAGC TCGGTGTGCC CGCCAGGCAG
    GGGAGAGAGG TAATCTGCCA AGCAAGGGCC AGAACGCAGC AGATTTTGCC CGTGGCCGCG
    GAGCGCAAAC TGACCCCTGC ATTTGCGGGA CTGTCTGAGG AACATTGTCC AGCCACCCAG
    ACACCGGGGA AGCCGGACAG CAACCAGACC ATCAAGGTGT CTGACGTGAA GAAAGCGTTT
    GAGAAGAAAG AGCGCGAAAA GAAGACTCCA GAGATCCACA AGAAAACGGA GATGTTACGG
    GTTGTACGAA CGAGCAAGGT TCGGCATGTC TATGGCCAAG TGATGAAAAA TGACCAGTGC
    TACGATGACA TCCAAGTTTC CAGGGTGACC TGGGATAGTT CGTTCTGTGA CGTGAATCCC
    AAGTTTGTAG CGATAATCAT CCAGGCGTGT GGTGGTGGAG CATTCTTGGT ACTTCCTTTG
    CAAAAGACGG GTCGGATTGA TAAGACCTAT CCAACAGTAT GTGGACACAC GGCACCGGTG
    CTTGACATTA ACTGGTGCCC GCACAATGAC TTCATTATTG CCAGTGGATC AGAGGATTGC
    TTCGTCAAGG TCTGGCAGAT CCCGGAGAAT GGCCTCACTG TTCCTCTCAC AGAACCAGTC
    GTCACCTTGG AGGGACATTG CAAGAAGGTT GGAATTGTAT CTTGGCATCC GACTGCTCGC
    AATGTGCTAC TGAGCGCAGC GTGTGAAAGT ATCATGATCT GGAACGTGGG GACTGGCGAG
    GCTTTGCTGG AGCTCAACGA CATGCACAAC GAAACGATCT ACAGCATATC CTGGAACCGA
    GACGGGAGCC TATTCTGCAC CGCATCCAAG GACAAGAAAT TGCGTTTGAT TGATCCACGG
    AATGGGAGGA TCATTTTAGA AAAGGACAAA CCTCATGAAG GGGCTCGGCC CATCAGAGCC
    ATCTTCCTCG CGGACGGCAA GATCTTCACC ACCGGCTTCA GCCGTATGAG TGAGCGGCAG
    CTCGCCCTGT GGAACCCAGA AAACATGGAC GAACCGATAG CTTTGCAGGA GATGGACTCG
    AGTAGTGGAG TGCTATTGCC ATTCTACGAT GCAGACACGA ACATAATTTA CTTGTGTGGA
    AAGGGTGACA GCAGCATCCG CTACTTTGAG ATCAGCGACG AGGCCCCGTA CGTGCACTAC
    CTGAACACCT TCTCCACCAA GGAGCCCCAG CGGGGCATGG GCTATATGCC AAAGCGAGGC
    CTGGAAGTTG GCAAGTGCGA GATTGCCAGG TTTTTTAAAC TTCATGAAAG GAAATGCGAG
    CCCATCACCA TGATTGTGCC AAGGAAGTCG GACCTATTCC AAGATGACCT GTACCCCGAC
    ACAGTGGGGC TGGAGGCAGC GATCGAAGCA GACGAGTGGC TTGACGGGAA AAACGCAGAG
    CCCATCCTGA TCTCCCTTAA ACCCGGCTCC GTCCCCACCA AAACCCGGGA AGTCCGAGTC
    AAGCAGAACA TTTTAGATAA GCCCTTGCTG ATCAAGAAAA CTGACAAGGG CATTGCCCCG
    ATCAAGACTA GTTCCAACAC ATCTCCCGAA TTCAAGGTGG AGGAGTTATT GGACGAGATC
    AGGACTCTGA AGGCCACCAT AGCTACCCAA GATCAGCGGA TTGCCAACCT CGAGGAGCAG
    ATGGCCAAGG TTGTCATCTG CGACGTGAAG AACACTGTGT CCCCTGGGGC GATGCAGTGA

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

    CloneID OCa382261
    Clone ID Related Accession (Same CDS sequence) XM_007901880.1
    Accession Version XM_007901880.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3348bp)
    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 2014-05-08
    Organism Callorhinchus milii(elephant shark)
    Product coronin-1C isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006890144.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Callorhinchus milii Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.0 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
    ATGGAACATC TGAAGGACTC GAGAGAGATG GAAAGGATGG GGACTGAAGA AGGTCGAACC 
    CATGATGGTG AGTGTTCTGT TGGTCCAAAG CTGGAAAAAG GAACCAAGGA TCTAGTCTTA
    ATAGGGGAGA AACTCGATGA GAAAGATACA GGAAGGAAAA TAATACAAGG TGAACCTTCT
    GCACGGCAAC CATCACTTGA TCTTCTGTTG TCGCCCTTTC ACCAAACCAA AAGCTGTGTG
    GAATTTGTGA GCGACAGCGA GTGGGTTCAA ACAAAACTCG ACACCCTTTT GGCGCCAGAG
    ACCGAAGCAC GACCGCGTGA GATGGGTGGT CAACTGAGTG GCGAGAGCGG AGAGCCTACT
    GAGGGTGGGG CGCTGGTTGT AGAGGGCTTC GAGCAAAGAG ATGGTCTCGG TTCAGATCAG
    ATTGCAAACG GTCAGAAAGG AACTGCATGG CGGGTTAGTG AAAAGGTTAG TGAGGTGTCT
    GAGATGCCAC TTATGGAACG GGCAGGATGG GATCTGAGCA AGCAAAGGGC AGGCATTTTC
    AATCCTGAAG CTGTGGAAAG TGTGGGAGAA CTTCCACGGG AGAAAGGGTA TCAGGAGGAT
    GTGGGTGATG CGAATGCAGG TGGAAGTAAC TGGCTCCAGC TCACGAAATC AGGCCCATGT
    TTGTCTGGCC GCCAGCTCTG TGACCAGAAC CCCTCCAATG AGCTAACGGC AAGTCGTTAT
    AGAGCTGTGC ACATGCATGG CCTGATGTCA CCCAGGATAC CGAGCCACAC GATACTGAGT
    CCAGGCAATC GTGAACTTGG TGACGACCAA GTGAATGACC AGACACCGAG GCTGTGGCCA
    ATCTTACTGA CTGCCGAGCT GGCCTCCAAC ACAGAGCGAG TTGATTGTGA GGAGCAATCT
    AGCTCTTCCA GCAATGGTGA CCAAACAGGG CCACAGGCTG AGGTGTCGTG TGAACCGACC
    TGTCAATTGG ACCCGACTGA TGTCGGTTAT GGTTTTGGAC ATTGGAGAGC GTCGACCGGT
    GAGGGAGACG GATGTGAGCC AGGAAACCAG CCCAGGGGAG TGTCCCAAAC AGGCTTTGTG
    CAAGGAGAGG AGACTGTTCT CTCTGAAGAC ATGGACATCA ATGACCAGGA TATGCTGAGT
    GGAGGGAGTG GTTTGTCTCC AACACTGGGA AGTGCAGGAT GGAGGTTGGG CCGAGGGAAC
    CTGCATGGAT GGAAGGACGA GGTAACCCAA GTTTGTGGCC TAGAATGGCT CGGCCTGCAT
    GAACCCCATC AAGGATCGGG CGATGTGGCT CAGCACAGCA TGGAGCGAGT GCAGGGCAAG
    GAGTCCGGCC ACACAGGGCG CTCTGCACAG GAGCGAGAGG TTTGGCCAAC AGGCGTGGAA
    AACGATCGAT CTGATTCCGA TCAACACACG CAGCACAGTG GCCGCGACAT GAAATCTGGC
    CGAGTCCCAC CCAGCAAGCG GAGCAGACCA TCTGAAGACT GTGACACGAG CAAAGCTTCA
    CGCCAGGCGC TGGCAGGCGG ACCTGCACAC AATGAACTGA GCGGATCATC CGAGTACAGG
    AAGCGAGATG CCAACAGTGA GGAGTTGGAG TCGAGGGAAG ATGTTGGCAA GCCCAGACCC
    ACCAAGTCGA GGGGAAGAGC TGAGGAGCTC GGTGTGCCCG CCAGGCAGGG GAGAGAGGTA
    ATCTGCCAAG CAAGGGCCAG AACGCAGCAG ATTTTGCCCG TGGCCGCGGA GCGCAAACTG
    ACCCCTGCAT TTGCGGGACT GTCTGAGGAA CATTGTCCAG CCACCCAGAC ACCGGGGAAG
    CCGGACAGCA ACCAGACCAT CAAGGTGTCT GACGTGAAGA AAGCGTTTGA GAAGAAAGAG
    CGCGAAAAGA AGACTCCAGA GATCCACAAG AAAACGGAGA TGTTACGGGT TGTACGAACG
    AGCAAGGTTC GGCATGTCTA TGGCCAAGTG ATGAAAAATG ACCAGTGCTA CGATGACATC
    CAAGTTTCCA GGGTGACCTG GGATAGTTCG TTCTGTGACG TGAATCCCAA GTTTGTAGCG
    ATAATCATCC AGGCGTGTGG TGGTGGAGCA TTCTTGGTAC TTCCTTTGCA AAAGACGGGT
    CGGATTGATA AGACCTATCC AACAGTATGT GGACACACGG CACCGGTGCT TGACATTAAC
    TGGTGCCCGC ACAATGACTT CATTATTGCC AGTGGATCAG AGGATTGCTT CGTCAAGGTC
    TGGCAGATCC CGGAGAATGG CCTCACTGTT CCTCTCACAG AACCAGTCGT CACCTTGGAG
    GGACATTGCA AGAAGGTTGG AATTGTATCT TGGCATCCGA CTGCTCGCAA TGTGCTACTG
    AGCGCAGCGT GTGAAAGTAT CATGATCTGG AACGTGGGGA CTGGCGAGGC TTTGCTGGAG
    CTCAACGACA TGCACAACGA AACGATCTAC AGCATATCCT GGAACCGAGA CGGGAGCCTA
    TTCTGCACCG CATCCAAGGA CAAGAAATTG CGTTTGATTG ATCCACGGAA TGGGAGGATC
    ATTTTAGAAA AGGACAAACC TCATGAAGGG GCTCGGCCCA TCAGAGCCAT CTTCCTCGCG
    GACGGCAAGA TCTTCACCAC CGGCTTCAGC CGTATGAGTG AGCGGCAGCT CGCCCTGTGG
    AACCCAGAAA ACATGGACGA ACCGATAGCT TTGCAGGAGA TGGACTCGAG TAGTGGAGTG
    CTATTGCCAT TCTACGATGC AGACACGAAC ATAATTTACT TGTGTGGAAA GGGTGACAGC
    AGCATCCGCT ACTTTGAGAT CAGCGACGAG GCCCCGTACG TGCACTACCT GAACACCTTC
    TCCACCAAGG AGCCCCAGCG GGGCATGGGC TATATGCCAA AGCGAGGCCT GGAAGTTGGC
    AAGTGCGAGA TTGCCAGGTT TTTTAAACTT CATGAAAGGA AATGCGAGCC CATCACCATG
    ATTGTGCCAA GGAAGTCGGA CCTATTCCAA GATGACCTGT ACCCCGACAC AGTGGGGCTG
    GAGGCAGCGA TCGAAGCAGA CGAGTGGCTT GACGGGAAAA ACGCAGAGCC CATCCTGATC
    TCCCTTAAAC CCGGCTCCGT CCCCACCAAA ACCCGGGAAG TCCGAGTCAA GCAGAACATT
    TTAGATAAGC CCTTGCTGAT CAAGAAAACT GACAAGGGCA TTGCCCCGAT CAAGACTAGT
    TCCAACACAT CTCCCGAATT CAAGGTGGAG GAGTTATTGG ACGAGATCAG GACTCTGAAG
    GCCACCATAG CTACCCAAGA TCAGCGGATT GCCAACCTCG AGGAGCAGAT GGCCAAGGTT
    GTCATCTGCG ACGTGAAGAA CACTGTGTCC CCTGGGGCGA TGCAGTGA

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

    RefSeq XP_007900071.1
    CDS73..3420
    Translation

    Target ORF information:

    RefSeq Version XM_007901880.1
    Organism Callorhinchus milii(elephant shark)
    Definition Callorhinchus milii coronin, actin binding protein, 1C (coro1c), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007901880.1

    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
    ATGGAACATC TGAAGGACTC GAGAGAGATG GAAAGGATGG GGACTGAAGA AGGTCGAACC 
    CATGATGGTG AGTGTTCTGT TGGTCCAAAG CTGGAAAAAG GAACCAAGGA TCTAGTCTTA
    ATAGGGGAGA AACTCGATGA GAAAGATACA GGAAGGAAAA TAATACAAGG TGAACCTTCT
    GCACGGCAAC CATCACTTGA TCTTCTGTTG TCGCCCTTTC ACCAAACCAA AAGCTGTGTG
    GAATTTGTGA GCGACAGCGA GTGGGTTCAA ACAAAACTCG ACACCCTTTT GGCGCCAGAG
    ACCGAAGCAC GACCGCGTGA GATGGGTGGT CAACTGAGTG GCGAGAGCGG AGAGCCTACT
    GAGGGTGGGG CGCTGGTTGT AGAGGGCTTC GAGCAAAGAG ATGGTCTCGG TTCAGATCAG
    ATTGCAAACG GTCAGAAAGG AACTGCATGG CGGGTTAGTG AAAAGGTTAG TGAGGTGTCT
    GAGATGCCAC TTATGGAACG GGCAGGATGG GATCTGAGCA AGCAAAGGGC AGGCATTTTC
    AATCCTGAAG CTGTGGAAAG TGTGGGAGAA CTTCCACGGG AGAAAGGGTA TCAGGAGGAT
    GTGGGTGATG CGAATGCAGG TGGAAGTAAC TGGCTCCAGC TCACGAAATC AGGCCCATGT
    TTGTCTGGCC GCCAGCTCTG TGACCAGAAC CCCTCCAATG AGCTAACGGC AAGTCGTTAT
    AGAGCTGTGC ACATGCATGG CCTGATGTCA CCCAGGATAC CGAGCCACAC GATACTGAGT
    CCAGGCAATC GTGAACTTGG TGACGACCAA GTGAATGACC AGACACCGAG GCTGTGGCCA
    ATCTTACTGA CTGCCGAGCT GGCCTCCAAC ACAGAGCGAG TTGATTGTGA GGAGCAATCT
    AGCTCTTCCA GCAATGGTGA CCAAACAGGG CCACAGGCTG AGGTGTCGTG TGAACCGACC
    TGTCAATTGG ACCCGACTGA TGTCGGTTAT GGTTTTGGAC ATTGGAGAGC GTCGACCGGT
    GAGGGAGACG GATGTGAGCC AGGAAACCAG CCCAGGGGAG TGTCCCAAAC AGGCTTTGTG
    CAAGGAGAGG AGACTGTTCT CTCTGAAGAC ATGGACATCA ATGACCAGGA TATGCTGAGT
    GGAGGGAGTG GTTTGTCTCC AACACTGGGA AGTGCAGGAT GGAGGTTGGG CCGAGGGAAC
    CTGCATGGAT GGAAGGACGA GGTAACCCAA GTTTGTGGCC TAGAATGGCT CGGCCTGCAT
    GAACCCCATC AAGGATCGGG CGATGTGGCT CAGCACAGCA TGGAGCGAGT GCAGGGCAAG
    GAGTCCGGCC ACACAGGGCG CTCTGCACAG GAGCGAGAGG TTTGGCCAAC AGGCGTGGAA
    AACGATCGAT CTGATTCCGA TCAACACACG CAGCACAGTG GCCGCGACAT GAAATCTGGC
    CGAGTCCCAC CCAGCAAGCG GAGCAGACCA TCTGAAGACT GTGACACGAG CAAAGCTTCA
    CGCCAGGCGC TGGCAGGCGG ACCTGCACAC AATGAACTGA GCGGATCATC CGAGTACAGG
    AAGCGAGATG CCAACAGTGA GGAGTTGGAG TCGAGGGAAG ATGTTGGCAA GCCCAGACCC
    ACCAAGTCGA GGGGAAGAGC TGAGGAGCTC GGTGTGCCCG CCAGGCAGGG GAGAGAGGTA
    ATCTGCCAAG CAAGGGCCAG AACGCAGCAG ATTTTGCCCG TGGCCGCGGA GCGCAAACTG
    ACCCCTGCAT TTGCGGGACT GTCTGAGGAA CATTGTCCAG CCACCCAGAC ACCGGGGAAG
    CCGGACAGCA ACCAGACCAT CAAGGTGTCT GACGTGAAGA AAGCGTTTGA GAAGAAAGAG
    CGCGAAAAGA AGACTCCAGA GATCCACAAG AAAACGGAGA TGTTACGGGT TGTACGAACG
    AGCAAGGTTC GGCATGTCTA TGGCCAAGTG ATGAAAAATG ACCAGTGCTA CGATGACATC
    CAAGTTTCCA GGGTGACCTG GGATAGTTCG TTCTGTGACG TGAATCCCAA GTTTGTAGCG
    ATAATCATCC AGGCGTGTGG TGGTGGAGCA TTCTTGGTAC TTCCTTTGCA AAAGACGGGT
    CGGATTGATA AGACCTATCC AACAGTATGT GGACACACGG CACCGGTGCT TGACATTAAC
    TGGTGCCCGC ACAATGACTT CATTATTGCC AGTGGATCAG AGGATTGCTT CGTCAAGGTC
    TGGCAGATCC CGGAGAATGG CCTCACTGTT CCTCTCACAG AACCAGTCGT CACCTTGGAG
    GGACATTGCA AGAAGGTTGG AATTGTATCT TGGCATCCGA CTGCTCGCAA TGTGCTACTG
    AGCGCAGCGT GTGAAAGTAT CATGATCTGG AACGTGGGGA CTGGCGAGGC TTTGCTGGAG
    CTCAACGACA TGCACAACGA AACGATCTAC AGCATATCCT GGAACCGAGA CGGGAGCCTA
    TTCTGCACCG CATCCAAGGA CAAGAAATTG CGTTTGATTG ATCCACGGAA TGGGAGGATC
    ATTTTAGAAA AGGACAAACC TCATGAAGGG GCTCGGCCCA TCAGAGCCAT CTTCCTCGCG
    GACGGCAAGA TCTTCACCAC CGGCTTCAGC CGTATGAGTG AGCGGCAGCT CGCCCTGTGG
    AACCCAGAAA ACATGGACGA ACCGATAGCT TTGCAGGAGA TGGACTCGAG TAGTGGAGTG
    CTATTGCCAT TCTACGATGC AGACACGAAC ATAATTTACT TGTGTGGAAA GGGTGACAGC
    AGCATCCGCT ACTTTGAGAT CAGCGACGAG GCCCCGTACG TGCACTACCT GAACACCTTC
    TCCACCAAGG AGCCCCAGCG GGGCATGGGC TATATGCCAA AGCGAGGCCT GGAAGTTGGC
    AAGTGCGAGA TTGCCAGGTT TTTTAAACTT CATGAAAGGA AATGCGAGCC CATCACCATG
    ATTGTGCCAA GGAAGTCGGA CCTATTCCAA GATGACCTGT ACCCCGACAC AGTGGGGCTG
    GAGGCAGCGA TCGAAGCAGA CGAGTGGCTT GACGGGAAAA ACGCAGAGCC CATCCTGATC
    TCCCTTAAAC CCGGCTCCGT CCCCACCAAA ACCCGGGAAG TCCGAGTCAA GCAGAACATT
    TTAGATAAGC CCTTGCTGAT CAAGAAAACT GACAAGGGCA TTGCCCCGAT CAAGACTAGT
    TCCAACACAT CTCCCGAATT CAAGGTGGAG GAGTTATTGG ACGAGATCAG GACTCTGAAG
    GCCACCATAG CTACCCAAGA TCAGCGGATT GCCAACCTCG AGGAGCAGAT GGCCAAGGTT
    GTCATCTGCG ACGTGAAGAA CACTGTGTCC CCTGGGGCGA TGCAGTGA

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