TDRD12 cDNA ORF clone, Pan troglodytes(chimpanzee)

The following TDRD12 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the TDRD12 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
OPc22481 XM_016935621.2
Latest version!
Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 9-11 $258.30
$369.00
OPc75458 XM_016935621.1
Latest version!
Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 9-11 $258.30
$369.00
OPc100725 XM_024351152.1
Latest version!
Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OPc34190 XM_016935619.2
Latest version!
Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OPc75455 XM_016935617.1
Latest version!
Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OPc75456 XM_016935619.1
Latest version!
Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OPc75457 XM_016935620.1
Latest version!
Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

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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 OPc22481
    Clone ID Related Accession (Same CDS sequence) XM_016935621.2
    Accession Version XM_016935621.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 1185bp)
    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 2018-03-19
    Organism Pan troglodytes(chimpanzee)
    Product putative ATP-dependent RNA helicase TDRD12 isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_036898.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Mar 20, 2018 this sequence version replaced XM_016935621.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Pan troglodytes Annotation Release 105 Annotation Version :: 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA CATCCGAGTT GTAGTAGAAT CGTTTATGCA GCTTCCCTAT
    AGAGCAAAAA AATTCAGCCT GTACTGCACA AAGCCTGTCA CATTACACAT TGACTTCTGC
    CGAGACAGTA CTGACATTGT ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGA CTTGA

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

    RefSeq XP_016791110.2
    CDS349..1533
    Translation

    Target ORF information:

    RefSeq Version XM_016935621.2
    Organism Pan troglodytes(chimpanzee)
    Definition Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_016935621.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA CATCCGAGTT GTAGTAGAAT CGTTTATGCA GCTTCCCTAT
    AGAGCAAAAA AATTCAGCCT GTACTGCACA AAGCCTGTCA CATTACACAT TGACTTCTGC
    CGAGACAGTA CTGACATTGT ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGA CTTGA

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

    CloneID OPc75458
    Clone ID Related Accession (Same CDS sequence) XM_016935621.1
    Accession Version XM_016935621.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 1065bp)
    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 2016-06-01
    Organism Pan troglodytes(chimpanzee)
    Product putative ATP-dependent RNA helicase TDRD12 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_006486.4) 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 :: Pan troglodytes Annotation Release 104 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.0 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
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGA CTTGA

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

    RefSeq XP_016791110.1
    CDS349..1413
    Translation

    Target ORF information:

    RefSeq Version XM_016935621.1
    Organism Pan troglodytes(chimpanzee)
    Definition Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_016935621.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGA CTTGA

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

    CloneID OPc100725
    Clone ID Related Accession (Same CDS sequence) XM_024351152.1
    Accession Version XM_024351152.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3981bp)
    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 2018-03-19
    Organism Pan troglodytes(chimpanzee)
    Product putative ATP-dependent RNA helicase TDRD12 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_036898.1) 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 Name :: Pan troglodytes Annotation Release 105 Annotation Version :: 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA CATCCGAGTT GTAGTAGAAT CGTTTATGCA GCTTCCCTAT
    AGAGCAAAAA AATTCAGCCT GTACTGCACA AAGCCTGTCA CATTACACAT TGACTTCTGC
    CGAGACAGTA CTGACATTGT ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGT TGCAGAAGCT GAAGGGCCTG
    CAGCCGCCCA TGGTAGTGCT CCGGAACAAG ATCGAGCCCT GCTTAACCAT TGACTCGTCG
    CCGCTGTCAG CAGACCTGAA GAAGGCTCTT CAAAGAAATA AGTTTCCGGG CCCCAGCCAC
    ACTGAATCTT ACTCTTGGCC TCCCATAGCG CGTGGCTGTG ATGTGGTTGT CATTTCTCAC
    TGTGAAAGCA ACCCTTTGCT CTACCTCCTA CCAGTGTTGA CAGTTTTGCA AACAGGAGCC
    TGCTACAAGT CATTACCAAG TAGAAATGGA CCTCTCGCAG TCATCGTGTG CCCTGGATGG
    AAGAAGGCCC AATTTATTTT TGAATTATTG GGAGAATATA GCATGTCCTC CAGGCCTCTT
    CATCCTGTGC TATTAACAAT TGGGCTCCAT AAAGAGGAAG CCAAAAATAC AAAGCTTCCA
    AGGGGCTGTG ATGTGATTGT TACGACCCCA TACAGCCTGC TGAGGCTTCT CACCTGTCAG
    AGCCTGCTGT TCCTCAGGCT CTGCCACCTG ATCCTGGATG AGGTAGAGGT GCTATTCTTG
    GAAGCCAATG AACAGATGTT TGCTATATTA GATAACTTTA AAAAAAATAT TGAAGTTGAA
    GAAAGGGTAT CTGCACCACA TCAGATTGTT GCAGTTGGAG TTCATTGGAA CAAACATATA
    GAACATCTCA TCAAAGAGTT CATGAATGAT CCCTACATTG TGATCACAGC CATGGAAGAG
    GCTGCTCTCT ATGGCAATGT CCAACAGGTA GTACATCTTT GCCTAGAATG TGAAAAAACT
    TCTTCTTTAC TCCAAGCTCT TGATTTTATT CCAAGTCAGG CACAAAAGAC CTTGATCTTC
    ACCTGCTCTG TAGCTGAAAC AGAAATAGTG TGTAAGGTAG TAGAAAGCAG CTCAATATTT
    TGCTTGAAGA TGCATAAAGA AATGATTTTT AACTTACAAA ATGTTTTAGA ACAGTGGAAG
    AAGAAGTTAA GTTCTGGCTC TCAAATTATA TTAGCCCTCA CGGACGACTG CGTCCCACTC
    TTGGCCATCA CCGATGCCAC GTGTGTGATT CACTTCAGTT TCCCTGCCTC GCCAAAAGTT
    TTTGGTGGAC GCCTGTATTG CATGTCTGAT CAGTTTCACG CTGAACAGGG TTCTCCTGCA
    GAACAGGGAG ATAAGAAAGC CAAATCTGTC TTGCTGCTGA CGGAGAAAGA TGCGAGCCAC
    GCAGTGGGCG TCCTGCGCTA CTTGGAGCGA GCGGACGCCA AGGTCCCCGC AGAGCTGTAC
    GAGTTCACCG CAGGAGTTCT GGAAGCCAAA GAAGATAAGA AAGCCGGAAT GCCTCTTTGT
    CCATATCTGA AGGCTTTTGG TTTTTGCAAA GACAAAAGGA TCTGTCCTGA CCGACACCGT
    ATTAATCCAG AAATGGACTT GCCCAGGAAA CTGTCCAGCC AAGCCCTACC TTCATTTGGA
    TACATTAAAA TAATACCTTT TTATATTTTG AATGCAACAA ATTACTTTGG CCGTATAGTT
    GATAAACACA TGGATCTTTA TGCAACTCTC AATGCTGAAA TGAATGAGTA TTTTAAGGAT
    TCTAATAAAA CAACTGTGGA AAAGGTGGAG AAGTTTGGAT TGTATGGATT AGCAGAAAAA
    ACGCTTTTTC ACAGGGTTCA GGTGTTGGAA GTGAGCCAAA AAGAAGACGC CTGGGCCCTG
    GATGACATCC TTGTAGAGTT CATCGATGAA GGCAGGACGG GGCTCGTCAC AAGGGACCAG
    CTGCTGCATC TCCCAGAACA TTTCCACACA CTTCCCCCGC AGGCTGTGGA GTTTATTGTC
    TGTAGGGTGA AACCTGCTGA CAACGAAATG GAATGGAATC CGAAGGTTAC TAGGTACATT
    CATCATAAAA TTGTTGGAAA ATTGCATGAT GCAAAAGTGA TCCTGGCTTT GGGAAATACA
    GTTTGGATTG ATCCAATGGT GCACATTACA AACCTTTCCA GTTTAAAAAC CTCTGTCATT
    GATTATAATG TTCGAGCTGA AATTTTGTCC ATGGGCATGG GCATTGATAA TCCAGAACAC
    GTAGAACAAC TGAAAAAATT ACGCGAAGAT GCTAAGATAC CAGCTTGTGA AGAAAGCCTA
    AGCCAGACCC CGCCGAGGGT GACAGGGACC AGTCCTGCTC AAGACCAGGA TCATCCATCC
    GAGGAGCAGG AGGGGCAGGG GACGCCTCCT CCAGCAGAAG ATGCTGCTTG CCTGCAGAGC
    CCCCAGCCTG AGGACACGGG TGCAGAAGGA GGGGCTGAGT CCAAGACGAG CTCAGAAACC
    CAGAAGCCTG AAACTTTATC TGGAAATACT GAAGGTGCCT TCATTAGCAG AACTGCACAG
    CCGCCTCTGA AAAGCTTCCA CCCACAAATA AAATGGTTCC AAAAAGAAGA TGTCGTCATC
    TTAAAGATAA GAATAAGGAA TGTAAAGGAC TACAAGTGTC AGTATTTAAG GGATAGAGTC
    GTTTTCAGTG CTTGGGTGGG AGACAAATTT TACCTGGCTG ATCTGGAGCT GCGGGGCAAC
    ATAAGGAAAG ATGACTGCAA ATGTGTGATT AGAAACGATG AACCTGTAAT CACTCTGGCC
    AAAGAGAGAA GGGAGGCATG GTGTCACCTA CTCAGACAGA GGAACCCCAA CGTGGCTTTT
    GATTTTGATC ACTGGGAAGA CTGTGAAGAG GACAGCCACT TCCCCAAGGT AGTGAATTCT
    AAAAACCTGC CGTACACAGT GACAGAGGTG GTTGAAGACA GTAGCAGCAC TTCAGAGGAT
    GACGACAGTG AGAGTGAATG A

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

    RefSeq XP_024206920.1
    CDS349..4329
    Translation

    Target ORF information:

    RefSeq Version XM_024351152.1
    Organism Pan troglodytes(chimpanzee)
    Definition Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_024351152.1

    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
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA CATCCGAGTT GTAGTAGAAT CGTTTATGCA GCTTCCCTAT
    AGAGCAAAAA AATTCAGCCT GTACTGCACA AAGCCTGTCA CATTACACAT TGACTTCTGC
    CGAGACAGTA CTGACATTGT ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGT TGCAGAAGCT GAAGGGCCTG
    CAGCCGCCCA TGGTAGTGCT CCGGAACAAG ATCGAGCCCT GCTTAACCAT TGACTCGTCG
    CCGCTGTCAG CAGACCTGAA GAAGGCTCTT CAAAGAAATA AGTTTCCGGG CCCCAGCCAC
    ACTGAATCTT ACTCTTGGCC TCCCATAGCG CGTGGCTGTG ATGTGGTTGT CATTTCTCAC
    TGTGAAAGCA ACCCTTTGCT CTACCTCCTA CCAGTGTTGA CAGTTTTGCA AACAGGAGCC
    TGCTACAAGT CATTACCAAG TAGAAATGGA CCTCTCGCAG TCATCGTGTG CCCTGGATGG
    AAGAAGGCCC AATTTATTTT TGAATTATTG GGAGAATATA GCATGTCCTC CAGGCCTCTT
    CATCCTGTGC TATTAACAAT TGGGCTCCAT AAAGAGGAAG CCAAAAATAC AAAGCTTCCA
    AGGGGCTGTG ATGTGATTGT TACGACCCCA TACAGCCTGC TGAGGCTTCT CACCTGTCAG
    AGCCTGCTGT TCCTCAGGCT CTGCCACCTG ATCCTGGATG AGGTAGAGGT GCTATTCTTG
    GAAGCCAATG AACAGATGTT TGCTATATTA GATAACTTTA AAAAAAATAT TGAAGTTGAA
    GAAAGGGTAT CTGCACCACA TCAGATTGTT GCAGTTGGAG TTCATTGGAA CAAACATATA
    GAACATCTCA TCAAAGAGTT CATGAATGAT CCCTACATTG TGATCACAGC CATGGAAGAG
    GCTGCTCTCT ATGGCAATGT CCAACAGGTA GTACATCTTT GCCTAGAATG TGAAAAAACT
    TCTTCTTTAC TCCAAGCTCT TGATTTTATT CCAAGTCAGG CACAAAAGAC CTTGATCTTC
    ACCTGCTCTG TAGCTGAAAC AGAAATAGTG TGTAAGGTAG TAGAAAGCAG CTCAATATTT
    TGCTTGAAGA TGCATAAAGA AATGATTTTT AACTTACAAA ATGTTTTAGA ACAGTGGAAG
    AAGAAGTTAA GTTCTGGCTC TCAAATTATA TTAGCCCTCA CGGACGACTG CGTCCCACTC
    TTGGCCATCA CCGATGCCAC GTGTGTGATT CACTTCAGTT TCCCTGCCTC GCCAAAAGTT
    TTTGGTGGAC GCCTGTATTG CATGTCTGAT CAGTTTCACG CTGAACAGGG TTCTCCTGCA
    GAACAGGGAG ATAAGAAAGC CAAATCTGTC TTGCTGCTGA CGGAGAAAGA TGCGAGCCAC
    GCAGTGGGCG TCCTGCGCTA CTTGGAGCGA GCGGACGCCA AGGTCCCCGC AGAGCTGTAC
    GAGTTCACCG CAGGAGTTCT GGAAGCCAAA GAAGATAAGA AAGCCGGAAT GCCTCTTTGT
    CCATATCTGA AGGCTTTTGG TTTTTGCAAA GACAAAAGGA TCTGTCCTGA CCGACACCGT
    ATTAATCCAG AAATGGACTT GCCCAGGAAA CTGTCCAGCC AAGCCCTACC TTCATTTGGA
    TACATTAAAA TAATACCTTT TTATATTTTG AATGCAACAA ATTACTTTGG CCGTATAGTT
    GATAAACACA TGGATCTTTA TGCAACTCTC AATGCTGAAA TGAATGAGTA TTTTAAGGAT
    TCTAATAAAA CAACTGTGGA AAAGGTGGAG AAGTTTGGAT TGTATGGATT AGCAGAAAAA
    ACGCTTTTTC ACAGGGTTCA GGTGTTGGAA GTGAGCCAAA AAGAAGACGC CTGGGCCCTG
    GATGACATCC TTGTAGAGTT CATCGATGAA GGCAGGACGG GGCTCGTCAC AAGGGACCAG
    CTGCTGCATC TCCCAGAACA TTTCCACACA CTTCCCCCGC AGGCTGTGGA GTTTATTGTC
    TGTAGGGTGA AACCTGCTGA CAACGAAATG GAATGGAATC CGAAGGTTAC TAGGTACATT
    CATCATAAAA TTGTTGGAAA ATTGCATGAT GCAAAAGTGA TCCTGGCTTT GGGAAATACA
    GTTTGGATTG ATCCAATGGT GCACATTACA AACCTTTCCA GTTTAAAAAC CTCTGTCATT
    GATTATAATG TTCGAGCTGA AATTTTGTCC ATGGGCATGG GCATTGATAA TCCAGAACAC
    GTAGAACAAC TGAAAAAATT ACGCGAAGAT GCTAAGATAC CAGCTTGTGA AGAAAGCCTA
    AGCCAGACCC CGCCGAGGGT GACAGGGACC AGTCCTGCTC AAGACCAGGA TCATCCATCC
    GAGGAGCAGG AGGGGCAGGG GACGCCTCCT CCAGCAGAAG ATGCTGCTTG CCTGCAGAGC
    CCCCAGCCTG AGGACACGGG TGCAGAAGGA GGGGCTGAGT CCAAGACGAG CTCAGAAACC
    CAGAAGCCTG AAACTTTATC TGGAAATACT GAAGGTGCCT TCATTAGCAG AACTGCACAG
    CCGCCTCTGA AAAGCTTCCA CCCACAAATA AAATGGTTCC AAAAAGAAGA TGTCGTCATC
    TTAAAGATAA GAATAAGGAA TGTAAAGGAC TACAAGTGTC AGTATTTAAG GGATAGAGTC
    GTTTTCAGTG CTTGGGTGGG AGACAAATTT TACCTGGCTG ATCTGGAGCT GCGGGGCAAC
    ATAAGGAAAG ATGACTGCAA ATGTGTGATT AGAAACGATG AACCTGTAAT CACTCTGGCC
    AAAGAGAGAA GGGAGGCATG GTGTCACCTA CTCAGACAGA GGAACCCCAA CGTGGCTTTT
    GATTTTGATC ACTGGGAAGA CTGTGAAGAG GACAGCCACT TCCCCAAGGT AGTGAATTCT
    AAAAACCTGC CGTACACAGT GACAGAGGTG GTTGAAGACA GTAGCAGCAC TTCAGAGGAT
    GACGACAGTG AGAGTGAATG A

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

    CloneID OPc34190
    Clone ID Related Accession (Same CDS sequence) XM_016935619.2
    Accession Version XM_016935619.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3951bp)
    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 2018-03-19
    Organism Pan troglodytes(chimpanzee)
    Product putative ATP-dependent RNA helicase TDRD12 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_036898.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Mar 20, 2018 this sequence version replaced XM_016935619.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Pan troglodytes Annotation Release 105 Annotation Version :: 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA CATCCGAGTT GTAGTAGAAT CGTTTATGCA GCTTCCCTAT
    AGAGCAAAAA AATTCAGCCT GTACTGCACA AAGCCTGTCA CATTACACAT TGACTTCTGC
    CGAGACAGTA CTGACATTGT ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGT TGCAGAAGCT GAAGGGCCTG
    CAGCCGCCCA TGGTAGTGCT CCGGAACAAG ATCGAGCCCT GCTTAACCAT TGACTCGTCG
    CCGCTGTCAG CAGACCTGAA GAAGGCTCTT CAAAGAAATA AGTTTCCGGG CCCCAGCCAC
    ACTGAATCTT ACTCTTGGCC TCCCATAGCG CGTGGCTGTG ATGTGGTTGT CATTTCTCAC
    TGTGAAAGCA ACCCTTTGCT CTACCTCCTA CCAGTGTTGA CAGTTTTGCA AACAGGAGCC
    TGCTACAAGT CATTACCAAG TAGAAATGGA CCTCTCGCAG TCATCGTGTG CCCTGGATGG
    AAGAAGGCCC AATTTATTTT TGAATTATTG GGAGAATATA GCATGTCCTC CAGGCCTCTT
    CATCCTGTGC TATTAACAAT TGGGCTCCAT AAAGAGGAAG CCAAAAATAC AAAGCTTCCA
    AGGGGCTGTG ATGTGATTGT TACGACCCCA TACAGCCTGC TGAGGCTTCT CACCTGTCAG
    AGCCTGCTGT TCCTCAGGCT CTGCCACCTG ATCCTGGATG AGGTAGAGGT GCTATTCTTG
    GAAGCCAATG AACAGATGTT TGCTATATTA GATAACTTTA AAAAAAATAT TGAAGTTGAA
    GAAAGGGTAT CTGCACCACA TCAGATTGTT GCAGTTGGAG TTCATTGGAA CAAACATATA
    GAACATCTCA TCAAAGAGTT CATGAATGAT CCCTACATTG TGATCACAGC CATGGAAGAG
    GCTGCTCTCT ATGGCAATGT CCAACAGGTA GTACATCTTT GCCTAGAATG TGAAAAAACT
    TCTTCTTTAC TCCAAGCTCT TGATTTTATT CCAAGTCAGG CACAAAAGAC CTTGATCTTC
    ACCTGCTCTG TAGCTGAAAC AGAAATAGTG TGTAAGGTAG TAGAAAGCAG CTCAATATTT
    TGCTTGAAGA TGCATAAAGA AATGATTTTT AACTTACAAA ATGTTTTAGA ACAGTGGAAG
    AAGAAGTTAA GTTCTGGCTC TCAAATTATA TTAGCCCTCA CGGACGACTG CGTCCCACTC
    TTGGCCATCA CCGATGCCAC GTGTGTGATT CACTTCAGTT TCCCTGCCTC GCCAAAAGTT
    TTTGGTGGAC GCCTGTATTG CATGTCTGAT CAGTTTCACG CTGAACAGGG TTCTCCTGCA
    GAACAGGGAG ATAAGAAAGC CAAATCTGTC TTGCTGCTGA CGGAGAAAGA TGCGAGCCAC
    GCAGTGGGCG TCCTGCGCTA CTTGGAGCGA GCGGACGCCA AGGTCCCCGC AGAGCTGTAC
    GAGTTCACCG CAGGAGTTCT GGAAGCCAAA GAAGATAAGA AAGCCGGAAT GCCTCTTTGT
    CCATATCTGA AGGCTTTTGG TTTTTGCAAA GACAAAAGGA TCTGTCCTGA CCGACACCGT
    ATTAATCCAG AAATGGACTT GCCCAGGAAA CTGTCCAGCC AAGCCCTACC TTCATTTGGA
    TACATTAAAA TAATACCTTT TTATATTTTG AATGCAACAA ATTACTTTGG CCGTATAGTT
    GATAAACACA TGGATCTTTA TGCAACTCTC AATGCTGAAA TGAATGAGTA TTTTAAGGAT
    TCTAATAAAA CAACTGTGGA AAAGGTGGAG AAGTTTGGAT TGTATGGATT AGCAGAAAAA
    ACGCTTTTTC ACAGGGTTCA GGTGTTGGAA GTGAGCCAAA AAGAAGACGC CTGGGCCCTG
    GATGACATCC TTGTAGAGTT CATCGATGAA GGCAGGACGG GGCTCGTCAC AAGGGACCAG
    CTGCTGCATC TCCCAGAACA TTTCCACACA CTTCCCCCGC AGGCTGTGGA GTTTATTGTC
    TGTAGGGTGA AACCTGCTGA CAACGAAATG GAATGGAATC CGAAGGTTAC TAGGTACATT
    CATCATAAAA TTGTTGGAAA ATTGCATGAT GCAAAAGTGA TCCTGGCTTT GGGAAATACA
    GTTTGGATTG ATCCAATGGT GCACATTACA AACCTTTCCA GTTTAAAAAC CTCTGTCATT
    GATTATAATG TTCGAGCTGA AATTTTGTCC ATGGGCATGG GCATTGATAA TCCAGAACAC
    GTAGAACAAC TGAAAAAATT ACGCGAAGAT GCTAAGATAC CAGCTTGTGA AGAAAGCCTA
    AGCCAGACCC CGCCGAGGGT GACAGGGACC AGTCCTGCTC AAGACCAGGA TCATCCATCC
    GAGGAGCAGG AGGGGCAGGG GACGCCTCCT CCAGCAGAAG ATGCTGCTTG CCTGCAGAGC
    CCCCAGCCTG AGGACACGGG TGCAGAAGGA GGGGCTGAGT CCAAGACGAG CTCAGAAACC
    CAGAAGCCTG AAACTTTATC TGGAAATACT GAAGGTGCCT TCATTAGCAG AACTGCACAG
    CCGCCTCTGA AAAGCTTCCA CCCACAAATA AAATGGTTCC AAAAAGAAGA TGTCGTCATC
    TTAAAGATAA GAATAAGGAA TGTAAAGGAC TACAAGTGTC AGTATTTAAG GGATAGAGTC
    GTTTTCAGTG CTTGGGTGGG AGACAAATTT TACCTGGCTG ATCTGGAGCT GCGGGGCAAC
    ATAAGGAAAG ATGACTGCAA ATGTGTGATT AGAAACGATG AACCTGTAAT CACTCTGGCC
    AAAGAGAGAA GGGAGGCATG GTGTCACCTA CTCAGACAGA GGAACCCCAA CGTGGCTTTT
    GATTTTGATC ACTGGGAAGA CTGTGAAGAG GACAGCCACT TCCCCAAGGT GACAGAGGTG
    GTTGAAGACA GTAGCAGCAC TTCAGAGGAT GACGACAGTG AGAGTGAATG A

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

    RefSeq XP_016791108.2
    CDS349..4299
    Translation

    Target ORF information:

    RefSeq Version XM_016935619.2
    Organism Pan troglodytes(chimpanzee)
    Definition Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_016935619.2

    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
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA CATCCGAGTT GTAGTAGAAT CGTTTATGCA GCTTCCCTAT
    AGAGCAAAAA AATTCAGCCT GTACTGCACA AAGCCTGTCA CATTACACAT TGACTTCTGC
    CGAGACAGTA CTGACATTGT ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGT TGCAGAAGCT GAAGGGCCTG
    CAGCCGCCCA TGGTAGTGCT CCGGAACAAG ATCGAGCCCT GCTTAACCAT TGACTCGTCG
    CCGCTGTCAG CAGACCTGAA GAAGGCTCTT CAAAGAAATA AGTTTCCGGG CCCCAGCCAC
    ACTGAATCTT ACTCTTGGCC TCCCATAGCG CGTGGCTGTG ATGTGGTTGT CATTTCTCAC
    TGTGAAAGCA ACCCTTTGCT CTACCTCCTA CCAGTGTTGA CAGTTTTGCA AACAGGAGCC
    TGCTACAAGT CATTACCAAG TAGAAATGGA CCTCTCGCAG TCATCGTGTG CCCTGGATGG
    AAGAAGGCCC AATTTATTTT TGAATTATTG GGAGAATATA GCATGTCCTC CAGGCCTCTT
    CATCCTGTGC TATTAACAAT TGGGCTCCAT AAAGAGGAAG CCAAAAATAC AAAGCTTCCA
    AGGGGCTGTG ATGTGATTGT TACGACCCCA TACAGCCTGC TGAGGCTTCT CACCTGTCAG
    AGCCTGCTGT TCCTCAGGCT CTGCCACCTG ATCCTGGATG AGGTAGAGGT GCTATTCTTG
    GAAGCCAATG AACAGATGTT TGCTATATTA GATAACTTTA AAAAAAATAT TGAAGTTGAA
    GAAAGGGTAT CTGCACCACA TCAGATTGTT GCAGTTGGAG TTCATTGGAA CAAACATATA
    GAACATCTCA TCAAAGAGTT CATGAATGAT CCCTACATTG TGATCACAGC CATGGAAGAG
    GCTGCTCTCT ATGGCAATGT CCAACAGGTA GTACATCTTT GCCTAGAATG TGAAAAAACT
    TCTTCTTTAC TCCAAGCTCT TGATTTTATT CCAAGTCAGG CACAAAAGAC CTTGATCTTC
    ACCTGCTCTG TAGCTGAAAC AGAAATAGTG TGTAAGGTAG TAGAAAGCAG CTCAATATTT
    TGCTTGAAGA TGCATAAAGA AATGATTTTT AACTTACAAA ATGTTTTAGA ACAGTGGAAG
    AAGAAGTTAA GTTCTGGCTC TCAAATTATA TTAGCCCTCA CGGACGACTG CGTCCCACTC
    TTGGCCATCA CCGATGCCAC GTGTGTGATT CACTTCAGTT TCCCTGCCTC GCCAAAAGTT
    TTTGGTGGAC GCCTGTATTG CATGTCTGAT CAGTTTCACG CTGAACAGGG TTCTCCTGCA
    GAACAGGGAG ATAAGAAAGC CAAATCTGTC TTGCTGCTGA CGGAGAAAGA TGCGAGCCAC
    GCAGTGGGCG TCCTGCGCTA CTTGGAGCGA GCGGACGCCA AGGTCCCCGC AGAGCTGTAC
    GAGTTCACCG CAGGAGTTCT GGAAGCCAAA GAAGATAAGA AAGCCGGAAT GCCTCTTTGT
    CCATATCTGA AGGCTTTTGG TTTTTGCAAA GACAAAAGGA TCTGTCCTGA CCGACACCGT
    ATTAATCCAG AAATGGACTT GCCCAGGAAA CTGTCCAGCC AAGCCCTACC TTCATTTGGA
    TACATTAAAA TAATACCTTT TTATATTTTG AATGCAACAA ATTACTTTGG CCGTATAGTT
    GATAAACACA TGGATCTTTA TGCAACTCTC AATGCTGAAA TGAATGAGTA TTTTAAGGAT
    TCTAATAAAA CAACTGTGGA AAAGGTGGAG AAGTTTGGAT TGTATGGATT AGCAGAAAAA
    ACGCTTTTTC ACAGGGTTCA GGTGTTGGAA GTGAGCCAAA AAGAAGACGC CTGGGCCCTG
    GATGACATCC TTGTAGAGTT CATCGATGAA GGCAGGACGG GGCTCGTCAC AAGGGACCAG
    CTGCTGCATC TCCCAGAACA TTTCCACACA CTTCCCCCGC AGGCTGTGGA GTTTATTGTC
    TGTAGGGTGA AACCTGCTGA CAACGAAATG GAATGGAATC CGAAGGTTAC TAGGTACATT
    CATCATAAAA TTGTTGGAAA ATTGCATGAT GCAAAAGTGA TCCTGGCTTT GGGAAATACA
    GTTTGGATTG ATCCAATGGT GCACATTACA AACCTTTCCA GTTTAAAAAC CTCTGTCATT
    GATTATAATG TTCGAGCTGA AATTTTGTCC ATGGGCATGG GCATTGATAA TCCAGAACAC
    GTAGAACAAC TGAAAAAATT ACGCGAAGAT GCTAAGATAC CAGCTTGTGA AGAAAGCCTA
    AGCCAGACCC CGCCGAGGGT GACAGGGACC AGTCCTGCTC AAGACCAGGA TCATCCATCC
    GAGGAGCAGG AGGGGCAGGG GACGCCTCCT CCAGCAGAAG ATGCTGCTTG CCTGCAGAGC
    CCCCAGCCTG AGGACACGGG TGCAGAAGGA GGGGCTGAGT CCAAGACGAG CTCAGAAACC
    CAGAAGCCTG AAACTTTATC TGGAAATACT GAAGGTGCCT TCATTAGCAG AACTGCACAG
    CCGCCTCTGA AAAGCTTCCA CCCACAAATA AAATGGTTCC AAAAAGAAGA TGTCGTCATC
    TTAAAGATAA GAATAAGGAA TGTAAAGGAC TACAAGTGTC AGTATTTAAG GGATAGAGTC
    GTTTTCAGTG CTTGGGTGGG AGACAAATTT TACCTGGCTG ATCTGGAGCT GCGGGGCAAC
    ATAAGGAAAG ATGACTGCAA ATGTGTGATT AGAAACGATG AACCTGTAAT CACTCTGGCC
    AAAGAGAGAA GGGAGGCATG GTGTCACCTA CTCAGACAGA GGAACCCCAA CGTGGCTTTT
    GATTTTGATC ACTGGGAAGA CTGTGAAGAG GACAGCCACT TCCCCAAGGT GACAGAGGTG
    GTTGAAGACA GTAGCAGCAC TTCAGAGGAT GACGACAGTG AGAGTGAATG A

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

    CloneID OPc75455
    Clone ID Related Accession (Same CDS sequence) XM_016935617.1
    Accession Version XM_016935617.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3861bp)
    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 2018-03-19
    Organism Pan troglodytes(chimpanzee)
    Product putative ATP-dependent RNA helicase TDRD12 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_036898.1) 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 Name :: Pan troglodytes Annotation Release 105 Annotation Version :: 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGT TGCAGAAGCT GAAGGGCCTG
    CAGCCGCCCA TGGTAGTGCT CCGGAACAAG ATCGAGCCCT GCTTAACCAT TGACTCGTCG
    CCGCTGTCAG CAGACCTGAA GAAGGCTCTT CAAAGAAATA AGTTTCCGGG CCCCAGCCAC
    ACTGAATCTT ACTCTTGGCC TCCCATAGCG CGTGGCTGTG ATGTGGTTGT CATTTCTCAC
    TGTGAAAGCA ACCCTTTGCT CTACCTCCTA CCAGTGTTGA CAGTTTTGCA AACAGGAGCC
    TGCTACAAGT CATTACCAAG TAGAAATGGA CCTCTCGCAG TCATCGTGTG CCCTGGATGG
    AAGAAGGCCC AATTTATTTT TGAATTATTG GGAGAATATA GCATGTCCTC CAGGCCTCTT
    CATCCTGTGC TATTAACAAT TGGGCTCCAT AAAGAGGAAG CCAAAAATAC AAAGCTTCCA
    AGGGGCTGTG ATGTGATTGT TACGACCCCA TACAGCCTGC TGAGGCTTCT CACCTGTCAG
    AGCCTGCTGT TCCTCAGGCT CTGCCACCTG ATCCTGGATG AGGTAGAGGT GCTATTCTTG
    GAAGCCAATG AACAGATGTT TGCTATATTA GATAACTTTA AAAAAAATAT TGAAGTTGAA
    GAAAGGGTAT CTGCACCACA TCAGATTGTT GCAGTTGGAG TTCATTGGAA CAAACATATA
    GAACATCTCA TCAAAGAGTT CATGAATGAT CCCTACATTG TGATCACAGC CATGGAAGAG
    GCTGCTCTCT ATGGCAATGT CCAACAGGTA GTACATCTTT GCCTAGAATG TGAAAAAACT
    TCTTCTTTAC TCCAAGCTCT TGATTTTATT CCAAGTCAGG CACAAAAGAC CTTGATCTTC
    ACCTGCTCTG TAGCTGAAAC AGAAATAGTG TGTAAGGTAG TAGAAAGCAG CTCAATATTT
    TGCTTGAAGA TGCATAAAGA AATGATTTTT AACTTACAAA ATGTTTTAGA ACAGTGGAAG
    AAGAAGTTAA GTTCTGGCTC TCAAATTATA TTAGCCCTCA CGGACGACTG CGTCCCACTC
    TTGGCCATCA CCGATGCCAC GTGTGTGATT CACTTCAGTT TCCCTGCCTC GCCAAAAGTT
    TTTGGTGGAC GCCTGTATTG CATGTCTGAT CAGTTTCACG CTGAACAGGG TTCTCCTGCA
    GAACAGGGAG ATAAGAAAGC CAAATCTGTC TTGCTGCTGA CGGAGAAAGA TGCGAGCCAC
    GCAGTGGGCG TCCTGCGCTA CTTGGAGCGA GCGGACGCCA AGGTCCCCGC AGAGCTGTAC
    GAGTTCACCG CAGGAGTTCT GGAAGCCAAA GAAGATAAGA AAGCCGGAAT GCCTCTTTGT
    CCATATCTGA AGGCTTTTGG TTTTTGCAAA GACAAAAGGA TCTGTCCTGA CCGACACCGT
    ATTAATCCAG AAATGGACTT GCCCAGGAAA CTGTCCAGCC AAGCCCTACC TTCATTTGGA
    TACATTAAAA TAATACCTTT TTATATTTTG AATGCAACAA ATTACTTTGG CCGTATAGTT
    GATAAACACA TGGATCTTTA TGCAACTCTC AATGCTGAAA TGAATGAGTA TTTTAAGGAT
    TCTAATAAAA CAACTGTGGA AAAGGTGGAG AAGTTTGGAT TGTATGGATT AGCAGAAAAA
    ACGCTTTTTC ACAGGGTTCA GGTGTTGGAA GTGAGCCAAA AAGAAGACGC CTGGGCCCTG
    GATGACATCC TTGTAGAGTT CATCGATGAA GGCAGGACGG GGCTCGTCAC AAGGGACCAG
    CTGCTGCATC TCCCAGAACA TTTCCACACA CTTCCCCCGC AGGCTGTGGA GTTTATTGTC
    TGTAGGGTGA AACCTGCTGA CAACGAAATG GAATGGAATC CGAAGGTTAC TAGGTACATT
    CATCATAAAA TTGTTGGAAA ATTGCATGAT GCAAAAGTGA TCCTGGCTTT GGGAAATACA
    GTTTGGATTG ATCCAATGGT GCACATTACA AACCTTTCCA GTTTAAAAAC CTCTGTCATT
    GATTATAATG TTCGAGCTGA AATTTTGTCC ATGGGCATGG GCATTGATAA TCCAGAACAC
    GTAGAACAAC TGAAAAAATT ACGCGAAGAT GCTAAGATAC CAGCTTGTGA AGAAAGCCTA
    AGCCAGACCC CGCCGAGGGT GACAGGGACC AGTCCTGCTC AAGACCAGGA TCATCCATCC
    GAGGAGCAGG AGGGGCAGGG GACGCCTCCT CCAGCAGAAG ATGCTGCTTG CCTGCAGAGC
    CCCCAGCCTG AGGACACGGG TGCAGAAGGA GGGGCTGAGT CCAAGACGAG CTCAGAAACC
    CAGAAGCCTG AAACTTTATC TGGAAATACT GAAGGTGCCT TCATTAGCAG AACTGCACAG
    CCGCCTCTGA AAAGCTTCCA CCCACAAATA AAATGGTTCC AAAAAGAAGA TGTCGTCATC
    TTAAAGATAA GAATAAGGAA TGTAAAGGAC TACAAGTGTC AGTATTTAAG GGATAGAGTC
    GTTTTCAGTG CTTGGGTGGG AGACAAATTT TACCTGGCTG ATCTGGAGCT GCGGGGCAAC
    ATAAGGAAAG ATGACTGCAA ATGTGTGATT AGAAACGATG AACCTGTAAT CACTCTGGCC
    AAAGAGAGAA GGGAGGCATG GTGTCACCTA CTCAGACAGA GGAACCCCAA CGTGGCTTTT
    GATTTTGATC ACTGGGAAGA CTGTGAAGAG GACAGCCACT TCCCCAAGGT AGTGAATTCT
    AAAAACCTGC CGTACACAGT GACAGAGGTG GTTGAAGACA GTAGCAGCAC TTCAGAGGAT
    GACGACAGTG AGAGTGAATG A

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

    RefSeq XP_016791106.1
    CDS349..4209
    Translation

    Target ORF information:

    RefSeq Version XM_016935617.1
    Organism Pan troglodytes(chimpanzee)
    Definition Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_016935617.1

    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
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGT TGCAGAAGCT GAAGGGCCTG
    CAGCCGCCCA TGGTAGTGCT CCGGAACAAG ATCGAGCCCT GCTTAACCAT TGACTCGTCG
    CCGCTGTCAG CAGACCTGAA GAAGGCTCTT CAAAGAAATA AGTTTCCGGG CCCCAGCCAC
    ACTGAATCTT ACTCTTGGCC TCCCATAGCG CGTGGCTGTG ATGTGGTTGT CATTTCTCAC
    TGTGAAAGCA ACCCTTTGCT CTACCTCCTA CCAGTGTTGA CAGTTTTGCA AACAGGAGCC
    TGCTACAAGT CATTACCAAG TAGAAATGGA CCTCTCGCAG TCATCGTGTG CCCTGGATGG
    AAGAAGGCCC AATTTATTTT TGAATTATTG GGAGAATATA GCATGTCCTC CAGGCCTCTT
    CATCCTGTGC TATTAACAAT TGGGCTCCAT AAAGAGGAAG CCAAAAATAC AAAGCTTCCA
    AGGGGCTGTG ATGTGATTGT TACGACCCCA TACAGCCTGC TGAGGCTTCT CACCTGTCAG
    AGCCTGCTGT TCCTCAGGCT CTGCCACCTG ATCCTGGATG AGGTAGAGGT GCTATTCTTG
    GAAGCCAATG AACAGATGTT TGCTATATTA GATAACTTTA AAAAAAATAT TGAAGTTGAA
    GAAAGGGTAT CTGCACCACA TCAGATTGTT GCAGTTGGAG TTCATTGGAA CAAACATATA
    GAACATCTCA TCAAAGAGTT CATGAATGAT CCCTACATTG TGATCACAGC CATGGAAGAG
    GCTGCTCTCT ATGGCAATGT CCAACAGGTA GTACATCTTT GCCTAGAATG TGAAAAAACT
    TCTTCTTTAC TCCAAGCTCT TGATTTTATT CCAAGTCAGG CACAAAAGAC CTTGATCTTC
    ACCTGCTCTG TAGCTGAAAC AGAAATAGTG TGTAAGGTAG TAGAAAGCAG CTCAATATTT
    TGCTTGAAGA TGCATAAAGA AATGATTTTT AACTTACAAA ATGTTTTAGA ACAGTGGAAG
    AAGAAGTTAA GTTCTGGCTC TCAAATTATA TTAGCCCTCA CGGACGACTG CGTCCCACTC
    TTGGCCATCA CCGATGCCAC GTGTGTGATT CACTTCAGTT TCCCTGCCTC GCCAAAAGTT
    TTTGGTGGAC GCCTGTATTG CATGTCTGAT CAGTTTCACG CTGAACAGGG TTCTCCTGCA
    GAACAGGGAG ATAAGAAAGC CAAATCTGTC TTGCTGCTGA CGGAGAAAGA TGCGAGCCAC
    GCAGTGGGCG TCCTGCGCTA CTTGGAGCGA GCGGACGCCA AGGTCCCCGC AGAGCTGTAC
    GAGTTCACCG CAGGAGTTCT GGAAGCCAAA GAAGATAAGA AAGCCGGAAT GCCTCTTTGT
    CCATATCTGA AGGCTTTTGG TTTTTGCAAA GACAAAAGGA TCTGTCCTGA CCGACACCGT
    ATTAATCCAG AAATGGACTT GCCCAGGAAA CTGTCCAGCC AAGCCCTACC TTCATTTGGA
    TACATTAAAA TAATACCTTT TTATATTTTG AATGCAACAA ATTACTTTGG CCGTATAGTT
    GATAAACACA TGGATCTTTA TGCAACTCTC AATGCTGAAA TGAATGAGTA TTTTAAGGAT
    TCTAATAAAA CAACTGTGGA AAAGGTGGAG AAGTTTGGAT TGTATGGATT AGCAGAAAAA
    ACGCTTTTTC ACAGGGTTCA GGTGTTGGAA GTGAGCCAAA AAGAAGACGC CTGGGCCCTG
    GATGACATCC TTGTAGAGTT CATCGATGAA GGCAGGACGG GGCTCGTCAC AAGGGACCAG
    CTGCTGCATC TCCCAGAACA TTTCCACACA CTTCCCCCGC AGGCTGTGGA GTTTATTGTC
    TGTAGGGTGA AACCTGCTGA CAACGAAATG GAATGGAATC CGAAGGTTAC TAGGTACATT
    CATCATAAAA TTGTTGGAAA ATTGCATGAT GCAAAAGTGA TCCTGGCTTT GGGAAATACA
    GTTTGGATTG ATCCAATGGT GCACATTACA AACCTTTCCA GTTTAAAAAC CTCTGTCATT
    GATTATAATG TTCGAGCTGA AATTTTGTCC ATGGGCATGG GCATTGATAA TCCAGAACAC
    GTAGAACAAC TGAAAAAATT ACGCGAAGAT GCTAAGATAC CAGCTTGTGA AGAAAGCCTA
    AGCCAGACCC CGCCGAGGGT GACAGGGACC AGTCCTGCTC AAGACCAGGA TCATCCATCC
    GAGGAGCAGG AGGGGCAGGG GACGCCTCCT CCAGCAGAAG ATGCTGCTTG CCTGCAGAGC
    CCCCAGCCTG AGGACACGGG TGCAGAAGGA GGGGCTGAGT CCAAGACGAG CTCAGAAACC
    CAGAAGCCTG AAACTTTATC TGGAAATACT GAAGGTGCCT TCATTAGCAG AACTGCACAG
    CCGCCTCTGA AAAGCTTCCA CCCACAAATA AAATGGTTCC AAAAAGAAGA TGTCGTCATC
    TTAAAGATAA GAATAAGGAA TGTAAAGGAC TACAAGTGTC AGTATTTAAG GGATAGAGTC
    GTTTTCAGTG CTTGGGTGGG AGACAAATTT TACCTGGCTG ATCTGGAGCT GCGGGGCAAC
    ATAAGGAAAG ATGACTGCAA ATGTGTGATT AGAAACGATG AACCTGTAAT CACTCTGGCC
    AAAGAGAGAA GGGAGGCATG GTGTCACCTA CTCAGACAGA GGAACCCCAA CGTGGCTTTT
    GATTTTGATC ACTGGGAAGA CTGTGAAGAG GACAGCCACT TCCCCAAGGT AGTGAATTCT
    AAAAACCTGC CGTACACAGT GACAGAGGTG GTTGAAGACA GTAGCAGCAC TTCAGAGGAT
    GACGACAGTG AGAGTGAATG A

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

    CloneID OPc75456
    Clone ID Related Accession (Same CDS sequence) XM_016935619.1
    Accession Version XM_016935619.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3831bp)
    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 2016-06-01
    Organism Pan troglodytes(chimpanzee)
    Product putative ATP-dependent RNA helicase TDRD12 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_006486.4) 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 :: Pan troglodytes Annotation Release 104 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.0 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGT TGCAGAAGCT GAAGGGCCTG
    CAGCCGCCCA TGGTAGTGCT CCGGAACAAG ATCGAGCCCT GCTTAACCAT TGACTCGTCG
    CCGCTGTCAG CAGACCTGAA GAAGGCTCTT CAAAGAAATA AGTTTCCGGG CCCCAGCCAC
    ACTGAATCTT ACTCTTGGCC TCCCATAGCG CGTGGCTGTG ATGTGGTTGT CATTTCTCAC
    TGTGAAAGCA ACCCTTTGCT CTACCTCCTA CCAGTGTTGA CAGTTTTGCA AACAGGAGCC
    TGCTACAAGT CATTACCAAG TAGAAATGGA CCTCTCGCAG TCATCGTGTG CCCTGGATGG
    AAGAAGGCCC AATTTATTTT TGAATTATTG GGAGAATATA GCATGTCCTC CAGGCCTCTT
    CATCCTGTGC TATTAACAAT TGGGCTCCAT AAAGAGGAAG CCAAAAATAC AAAGCTTCCA
    AGGGGCTGTG ATGTGATTGT TACGACCCCA TACAGCCTGC TGAGGCTTCT CACCTGTCAG
    AGCCTGCTGT TCCTCAGGCT CTGCCACCTG ATCCTGGATG AGGTAGAGGT GCTATTCTTG
    GAAGCCAATG AACAGATGTT TGCTATATTA GATAACTTTA AAAAAAATAT TGAAGTTGAA
    GAAAGGGTAT CTGCACCACA TCAGATTGTT GCAGTTGGAG TTCATTGGAA CAAACATATA
    GAACATCTCA TCAAAGAGTT CATGAATGAT CCCTACATTG TGATCACAGC CATGGAAGAG
    GCTGCTCTCT ATGGCAATGT CCAACAGGTA GTACATCTTT GCCTAGAATG TGAAAAAACT
    TCTTCTTTAC TCCAAGCTCT TGATTTTATT CCAAGTCAGG CACAAAAGAC CTTGATCTTC
    ACCTGCTCTG TAGCTGAAAC AGAAATAGTG TGTAAGGTAG TAGAAAGCAG CTCAATATTT
    TGCTTGAAGA TGCATAAAGA AATGATTTTT AACTTACAAA ATGTTTTAGA ACAGTGGAAG
    AAGAAGTTAA GTTCTGGCTC TCAAATTATA TTAGCCCTCA CGGACGACTG CGTCCCACTC
    TTGGCCATCA CCGATGCCAC GTGTGTGATT CACTTCAGTT TCCCTGCCTC GCCAAAAGTT
    TTTGGTGGAC GCCTGTATTG CATGTCTGAT CAGTTTCACG CTGAACAGGG TTCTCCTGCA
    GAACAGGGAG ATAAGAAAGC CAAATCTGTC TTGCTGCTGA CGGAGAAAGA TGCGAGCCAC
    GCAGTGGGCG TCCTGCGCTA CTTGGAGCGA GCGGACGCCA AGGTCCCCGC AGAGCTGTAC
    GAGTTCACCG CAGGAGTTCT GGAAGCCAAA GAAGATAAGA AAGCCGGAAT GCCTCTTTGT
    CCATATCTGA AGGCTTTTGG TTTTTGCAAA GACAAAAGGA TCTGTCCTGA CCGACACCGT
    ATTAATCCAG AAATGGACTT GCCCAGGAAA CTGTCCAGCC AAGCCCTACC TTCATTTGGA
    TACATTAAAA TAATACCTTT TTATATTTTG AATGCAACAA ATTACTTTGG CCGTATAGTT
    GATAAACACA TGGATCTTTA TGCAACTCTC AATGCTGAAA TGAATGAGTA TTTTAAGGAT
    TCTAATAAAA CAACTGTGGA AAAGGTGGAG AAGTTTGGAT TGTATGGATT AGCAGAAAAA
    ACGCTTTTTC ACAGGGTTCA GGTGTTGGAA GTGAGCCAAA AAGAAGACGC CTGGGCCCTG
    GATGACATCC TTGTAGAGTT CATCGATGAA GGCAGGACGG GGCTCGTCAC AAGGGACCAG
    CTGCTGCATC TCCCAGAACA TTTCCACACA CTTCCCCCGC AGGCTGTGGA GTTTATTGTC
    TGTAGGGTGA AACCTGCTGA CAACGAAATG GAATGGAATC CGAAGGTTAC TAGGTACATT
    CATCATAAAA TTGTTGGAAA ATTGCATGAT GCAAAAGTGA TCCTGGCTTT GGGAAATACA
    GTTTGGATTG ATCCAATGGT GCACATTACA AACCTTTCCA GTTTAAAAAC CTCTGTCATT
    GATTATAATG TTCGAGCTGA AATTTTGTCC ATGGGCATGG GCATTGATAA TCCAGAACAC
    GTAGAACAAC TGAAAAAATT ACGCGAAGAT GCTAAGATAC CAGCTTGTGA AGAAAGCCTA
    AGCCAGACCC CGCCGAGGGT GACAGGGACC AGTCCTGCTC AAGACCAGGA TCATCCATCC
    GAGGAGCAGG AGGGGCAGGG GACGCCTCCT CCAGCAGAAG ATGCTGCTTG CCTGCAGAGC
    CCCCAGCCTG AGGACACGGG TGCAGAAGGA GGGGCTGAGT CCAAGACGAG CTCAGAAACC
    CAGAAGCCTG AAACTTTATC TGGAAATACT GAAGGTGCCT TCATTAGCAG AACTGCACAG
    CCGCCTCTGA AAAGCTTCCA CCCACAAATA AAATGGTTCC AAAAAGAAGA TGTCGTCATC
    TTAAAGATAA GAATAAGGAA TGTAAAGGAC TACAAGTGTC AGTATTTAAG GGATAGAGTC
    GTTTTCAGTG CTTGGGTGGG AGACAAATTT TACCTGGCTG ATCTGGAGCT GCGGGGCAAC
    ATAAGGAAAG ATGACTGCAA ATGTGTGATT AGAAACGATG AACCTGTAAT CACTCTGGCC
    AAAGAGAGAA GGGAGGCATG GTGTCACCTA CTCAGACAGA GGAACCCCAA CGTGGCTTTT
    GATTTTGATC ACTGGGAAGA CTGTGAAGAG GACAGCCACT TCCCCAAGGT GACAGAGGTG
    GTTGAAGACA GTAGCAGCAC TTCAGAGGAT GACGACAGTG AGAGTGAATG A

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

    RefSeq XP_016791108.1
    CDS349..4179
    Translation

    Target ORF information:

    RefSeq Version XM_016935619.1
    Organism Pan troglodytes(chimpanzee)
    Definition Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_016935619.1

    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
    ATGCTCCAGC TCCTGGTGCT GAAGATTGAA GATCCAGGTT GCTTCTGGGT TATTATAAAA 
    GGGTGTAGTC CCTTTTTAGA TCATGATGTC GATTATCAAA AATTAAATAG TGCCATGAAT
    GACTTCTACA ACAGCACGTG TCAAGATATA GAAATAAAAC CATTAACATT GGAAGAAGGA
    CAGGTGTGTG TGGTCTATTG TGAGGAGCTA AAGTGCTGGT GCAGGGCCAT TGTCAAATCA
    ATTACGTCTT CCGCAGACCA GTACCTGGCA GAATGTTTCC TTGTGGACTT TGCCAAGAAC
    ATTCCAGTCA AATCTAAAAA ACCTGCCAAG AAGTGGGACA ATGCAGCTAT TCAGTACTTT
    CAGAACCTTC TGAAAGCAAC TACCCAGGTG GAAGCCAGAT TATGTGCTGT GGAAGAAGAT
    ACATTTGAGG TTTACCTTTA TGTAACTATA AAAGATGAAA AAGTTTGTGT TAATGATGAT
    CTTGTTGCAA AGAACTATGC TTGTTATATG TCACCTACAA AGAATAAAAA CCTTGATTAT
    TTAGAAAAAC CAAGATTGAA TATAAAATCA ACACCCTCCT TCAATAAACT CAATCCAGCA
    CTTACACTCT GGCCAATGTT TTTGCAAGGA AAAGATGTTC AAGGAATGGA AGATTCACAT
    GGTGTAAATT TTCCGGCACA ATCTCTGCAA CATACATGGT GCAAGGGTAT TGTCGGTGAC
    CTCAGGCCAA CAGCCACAGC ACAGGACAAA GCTGTAAAAT GTAATATGGA TTCATTGAGA
    GATTCACCTA AAAACAAATC TGAAAAGAAA CACCATTGCA TCTCTTTAAA AGATACAAAT
    AAGCGTGTTG AATCCTCAGT GTACTGGCCA GCAAAAAGAG GCATAACCAT ATATGCTGAT
    CCAGATGTAC CAGAAGCAAG TGCTTTAAGT CAGAAGTCAA ATGAGAAACC TCTTGGATTG
    ACTGAGAAGA AAGAATATGA TGAGAATAGC TGTGTGAAAT TACTGCAGTT TTTAAATCCT
    GATCCTTTGA GAGCTGACGG ACTCTCTGAT CTCCAGCAGT TGCAGAAGCT GAAGGGCCTG
    CAGCCGCCCA TGGTAGTGCT CCGGAACAAG ATCGAGCCCT GCTTAACCAT TGACTCGTCG
    CCGCTGTCAG CAGACCTGAA GAAGGCTCTT CAAAGAAATA AGTTTCCGGG CCCCAGCCAC
    ACTGAATCTT ACTCTTGGCC TCCCATAGCG CGTGGCTGTG ATGTGGTTGT CATTTCTCAC
    TGTGAAAGCA ACCCTTTGCT CTACCTCCTA CCAGTGTTGA CAGTTTTGCA AACAGGAGCC
    TGCTACAAGT CATTACCAAG TAGAAATGGA CCTCTCGCAG TCATCGTGTG CCCTGGATGG
    AAGAAGGCCC AATTTATTTT TGAATTATTG GGAGAATATA GCATGTCCTC CAGGCCTCTT
    CATCCTGTGC TATTAACAAT TGGGCTCCAT AAAGAGGAAG CCAAAAATAC AAAGCTTCCA
    AGGGGCTGTG ATGTGATTGT TACGACCCCA TACAGCCTGC TGAGGCTTCT CACCTGTCAG
    AGCCTGCTGT TCCTCAGGCT CTGCCACCTG ATCCTGGATG AGGTAGAGGT GCTATTCTTG
    GAAGCCAATG AACAGATGTT TGCTATATTA GATAACTTTA AAAAAAATAT TGAAGTTGAA
    GAAAGGGTAT CTGCACCACA TCAGATTGTT GCAGTTGGAG TTCATTGGAA CAAACATATA
    GAACATCTCA TCAAAGAGTT CATGAATGAT CCCTACATTG TGATCACAGC CATGGAAGAG
    GCTGCTCTCT ATGGCAATGT CCAACAGGTA GTACATCTTT GCCTAGAATG TGAAAAAACT
    TCTTCTTTAC TCCAAGCTCT TGATTTTATT CCAAGTCAGG CACAAAAGAC CTTGATCTTC
    ACCTGCTCTG TAGCTGAAAC AGAAATAGTG TGTAAGGTAG TAGAAAGCAG CTCAATATTT
    TGCTTGAAGA TGCATAAAGA AATGATTTTT AACTTACAAA ATGTTTTAGA ACAGTGGAAG
    AAGAAGTTAA GTTCTGGCTC TCAAATTATA TTAGCCCTCA CGGACGACTG CGTCCCACTC
    TTGGCCATCA CCGATGCCAC GTGTGTGATT CACTTCAGTT TCCCTGCCTC GCCAAAAGTT
    TTTGGTGGAC GCCTGTATTG CATGTCTGAT CAGTTTCACG CTGAACAGGG TTCTCCTGCA
    GAACAGGGAG ATAAGAAAGC CAAATCTGTC TTGCTGCTGA CGGAGAAAGA TGCGAGCCAC
    GCAGTGGGCG TCCTGCGCTA CTTGGAGCGA GCGGACGCCA AGGTCCCCGC AGAGCTGTAC
    GAGTTCACCG CAGGAGTTCT GGAAGCCAAA GAAGATAAGA AAGCCGGAAT GCCTCTTTGT
    CCATATCTGA AGGCTTTTGG TTTTTGCAAA GACAAAAGGA TCTGTCCTGA CCGACACCGT
    ATTAATCCAG AAATGGACTT GCCCAGGAAA CTGTCCAGCC AAGCCCTACC TTCATTTGGA
    TACATTAAAA TAATACCTTT TTATATTTTG AATGCAACAA ATTACTTTGG CCGTATAGTT
    GATAAACACA TGGATCTTTA TGCAACTCTC AATGCTGAAA TGAATGAGTA TTTTAAGGAT
    TCTAATAAAA CAACTGTGGA AAAGGTGGAG AAGTTTGGAT TGTATGGATT AGCAGAAAAA
    ACGCTTTTTC ACAGGGTTCA GGTGTTGGAA GTGAGCCAAA AAGAAGACGC CTGGGCCCTG
    GATGACATCC TTGTAGAGTT CATCGATGAA GGCAGGACGG GGCTCGTCAC AAGGGACCAG
    CTGCTGCATC TCCCAGAACA TTTCCACACA CTTCCCCCGC AGGCTGTGGA GTTTATTGTC
    TGTAGGGTGA AACCTGCTGA CAACGAAATG GAATGGAATC CGAAGGTTAC TAGGTACATT
    CATCATAAAA TTGTTGGAAA ATTGCATGAT GCAAAAGTGA TCCTGGCTTT GGGAAATACA
    GTTTGGATTG ATCCAATGGT GCACATTACA AACCTTTCCA GTTTAAAAAC CTCTGTCATT
    GATTATAATG TTCGAGCTGA AATTTTGTCC ATGGGCATGG GCATTGATAA TCCAGAACAC
    GTAGAACAAC TGAAAAAATT ACGCGAAGAT GCTAAGATAC CAGCTTGTGA AGAAAGCCTA
    AGCCAGACCC CGCCGAGGGT GACAGGGACC AGTCCTGCTC AAGACCAGGA TCATCCATCC
    GAGGAGCAGG AGGGGCAGGG GACGCCTCCT CCAGCAGAAG ATGCTGCTTG CCTGCAGAGC
    CCCCAGCCTG AGGACACGGG TGCAGAAGGA GGGGCTGAGT CCAAGACGAG CTCAGAAACC
    CAGAAGCCTG AAACTTTATC TGGAAATACT GAAGGTGCCT TCATTAGCAG AACTGCACAG
    CCGCCTCTGA AAAGCTTCCA CCCACAAATA AAATGGTTCC AAAAAGAAGA TGTCGTCATC
    TTAAAGATAA GAATAAGGAA TGTAAAGGAC TACAAGTGTC AGTATTTAAG GGATAGAGTC
    GTTTTCAGTG CTTGGGTGGG AGACAAATTT TACCTGGCTG ATCTGGAGCT GCGGGGCAAC
    ATAAGGAAAG ATGACTGCAA ATGTGTGATT AGAAACGATG AACCTGTAAT CACTCTGGCC
    AAAGAGAGAA GGGAGGCATG GTGTCACCTA CTCAGACAGA GGAACCCCAA CGTGGCTTTT
    GATTTTGATC ACTGGGAAGA CTGTGAAGAG GACAGCCACT TCCCCAAGGT GACAGAGGTG
    GTTGAAGACA GTAGCAGCAC TTCAGAGGAT GACGACAGTG AGAGTGAATG A

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

    CloneID OPc75457
    Clone ID Related Accession (Same CDS sequence) XM_016935620.1
    Accession Version XM_016935620.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3486bp)
    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 2018-03-19
    Organism Pan troglodytes(chimpanzee)
    Product putative ATP-dependent RNA helicase TDRD12 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_036898.1) 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 Name :: Pan troglodytes Annotation Release 105 Annotation Version :: 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    3421
    3481
    ATGACATCAG TATGTCTAAT TACTAGTGAT GTGAATGGTT TTTTTCCTTC AGCTTCTAAG 
    TTCGGGGTAC CTGTGCAGGA TGTGCAGGTT TGTGTTAATG ATGATCTTGT TGCAAAGAAC
    TATGCTTGTT ATATGTCACC TACAAAGAAT AAAAACCTTG ATTATTTAGA AAAACCAAGA
    TTGAATATAA AATCAACACC CTCCTTCAAT AAACTCAATC CAGCACTTAC ACTCTGGCCA
    ATGTTTTTGC AAGGAAAAGA TGTTCAAGGA ATGGAAGATT CACATGGTGT AAATTTTCCG
    GCACAATCTC TGCAACATAC ATGGTGCAAG GGTATTGTCG GTGACCTCAG GCCAACAGCC
    ACAGCACAGG ACAAAGCTGT AAAATGTAAT ATGGATTCAT TGAGAGATTC ACCTAAAAAC
    AAATCTGAAA AGAAACACCA TTGCATCTCT TTAAAAGATA CAAATAAGCG TGTTGAATCC
    TCAGTGTACT GGCCAGCAAA AAGAGGCATA ACCATATATG CTGATCCAGA TGTACCAGAA
    GCAAGTGCTT TAAGTCAGAA GTCAAATGAG AAACCTCTTG GATTGACTGA GAAGAAAGAA
    TATGATGAGA ATAGCTGTGT GAAATTACTG CAGTTTTTAA ATCCTGATCC TTTGAGAGCT
    GACGGACTCT CTGATCTCCA GCAGTTGCAG AAGCTGAAGG GCCTGCAGCC GCCCATGGTA
    GTGCTCCGGA ACAAGATCGA GCCCTGCTTA ACCATTGACT CGTCGCCGCT GTCAGCAGAC
    CTGAAGAAGG CTCTTCAAAG AAATAAGTTT CCGGGCCCCA GCCACACTGA ATCTTACTCT
    TGGCCTCCCA TAGCGCGTGG CTGTGATGTG GTTGTCATTT CTCACTGTGA AAGCAACCCT
    TTGCTCTACC TCCTACCAGT GTTGACAGTT TTGCAAACAG GAGCCTGCTA CAAGTCATTA
    CCAAGTAGAA ATGGACCTCT CGCAGTCATC GTGTGCCCTG GATGGAAGAA GGCCCAATTT
    ATTTTTGAAT TATTGGGAGA ATATAGCATG TCCTCCAGGC CTCTTCATCC TGTGCTATTA
    ACAATTGGGC TCCATAAAGA GGAAGCCAAA AATACAAAGC TTCCAAGGGG CTGTGATGTG
    ATTGTTACGA CCCCATACAG CCTGCTGAGG CTTCTCACCT GTCAGAGCCT GCTGTTCCTC
    AGGCTCTGCC ACCTGATCCT GGATGAGGTA GAGGTGCTAT TCTTGGAAGC CAATGAACAG
    ATGTTTGCTA TATTAGATAA CTTTAAAAAA AATATTGAAG TTGAAGAAAG GGTATCTGCA
    CCACATCAGA TTGTTGCAGT TGGAGTTCAT TGGAACAAAC ATATAGAACA TCTCATCAAA
    GAGTTCATGA ATGATCCCTA CATTGTGATC ACAGCCATGG AAGAGGCTGC TCTCTATGGC
    AATGTCCAAC AGGTAGTACA TCTTTGCCTA GAATGTGAAA AAACTTCTTC TTTACTCCAA
    GCTCTTGATT TTATTCCAAG TCAGGCACAA AAGACCTTGA TCTTCACCTG CTCTGTAGCT
    GAAACAGAAA TAGTGTGTAA GGTAGTAGAA AGCAGCTCAA TATTTTGCTT GAAGATGCAT
    AAAGAAATGA TTTTTAACTT ACAAAATGTT TTAGAACAGT GGAAGAAGAA GTTAAGTTCT
    GGCTCTCAAA TTATATTAGC CCTCACGGAC GACTGCGTCC CACTCTTGGC CATCACCGAT
    GCCACGTGTG TGATTCACTT CAGTTTCCCT GCCTCGCCAA AAGTTTTTGG TGGACGCCTG
    TATTGCATGT CTGATCAGTT TCACGCTGAA CAGGGTTCTC CTGCAGAACA GGGAGATAAG
    AAAGCCAAAT CTGTCTTGCT GCTGACGGAG AAAGATGCGA GCCACGCAGT GGGCGTCCTG
    CGCTACTTGG AGCGAGCGGA CGCCAAGGTC CCCGCAGAGC TGTACGAGTT CACCGCAGGA
    GTTCTGGAAG CCAAAGAAGA TAAGAAAGCC GGAATGCCTC TTTGTCCATA TCTGAAGGCT
    TTTGGTTTTT GCAAAGACAA AAGGATCTGT CCTGACCGAC ACCGTATTAA TCCAGAAATG
    GACTTGCCCA GGAAACTGTC CAGCCAAGCC CTACCTTCAT TTGGATACAT TAAAATAATA
    CCTTTTTATA TTTTGAATGC AACAAATTAC TTTGGCCGTA TAGTTGATAA ACACATGGAT
    CTTTATGCAA CTCTCAATGC TGAAATGAAT GAGTATTTTA AGGATTCTAA TAAAACAACT
    GTGGAAAAGG TGGAGAAGTT TGGATTGTAT GGATTAGCAG AAAAAACGCT TTTTCACAGG
    GTTCAGGTGT TGGAAGTGAG CCAAAAAGAA GACGCCTGGG CCCTGGATGA CATCCTTGTA
    GAGTTCATCG ATGAAGGCAG GACGGGGCTC GTCACAAGGG ACCAGCTGCT GCATCTCCCA
    GAACATTTCC ACACACTTCC CCCGCAGGCT GTGGAGTTTA TTGTCTGTAG GGTGAAACCT
    GCTGACAACG AAATGGAATG GAATCCGAAG GTTACTAGGT ACATTCATCA TAAAATTGTT
    GGAAAATTGC ATGATGCAAA AGTGATCCTG GCTTTGGGAA ATACAGTTTG GATTGATCCA
    ATGGTGCACA TTACAAACCT TTCCAGTTTA AAAACCTCTG TCATTGATTA TAATGTTCGA
    GCTGAAATTT TGTCCATGGG CATGGGCATT GATAATCCAG AACACGTAGA ACAACTGAAA
    AAATTACGCG AAGATGCTAA GATACCAGCT TGTGAAGAAA GCCTAAGCCA GACCCCGCCG
    AGGGTGACAG GGACCAGTCC TGCTCAAGAC CAGGATCATC CATCCGAGGA GCAGGAGGGG
    CAGGGGACGC CTCCTCCAGC AGAAGATGCT GCTTGCCTGC AGAGCCCCCA GCCTGAGGAC
    ACGGGTGCAG AAGGAGGGGC TGAGTCCAAG ACGAGCTCAG AAACCCAGAA GCCTGAAACT
    TTATCTGGAA ATACTGAAGG TGCCTTCATT AGCAGAACTG CACAGCCGCC TCTGAAAAGC
    TTCCACCCAC AAATAAAATG GTTCCAAAAA GAAGATGTCG TCATCTTAAA GATAAGAATA
    AGGAATGTAA AGGACTACAA GTGTCAGTAT TTAAGGGATA GAGTCGTTTT CAGTGCTTGG
    GTGGGAGACA AATTTTACCT GGCTGATCTG GAGCTGCGGG GCAACATAAG GAAAGATGAC
    TGCAAATGTG TGATTAGAAA CGATGAACCT GTAATCACTC TGGCCAAAGA GAGAAGGGAG
    GCATGGTGTC ACCTACTCAG ACAGAGGAAC CCCAACGTGG CTTTTGATTT TGATCACTGG
    GAAGACTGTG AAGAGGACAG CCACTTCCCC AAGGTAGTGA ATTCTAAAAA CCTGCCGTAC
    ACAGTGACAG AGGTGGTTGA AGACAGTAGC AGCACTTCAG AGGATGACGA CAGTGAGAGT
    GAATGA

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

    RefSeq XP_016791109.1
    CDS991..4476
    Translation

    Target ORF information:

    RefSeq Version XM_016935620.1
    Organism Pan troglodytes(chimpanzee)
    Definition Pan troglodytes tudor domain containing 12 (TDRD12), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_016935620.1

    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
    ATGACATCAG TATGTCTAAT TACTAGTGAT GTGAATGGTT TTTTTCCTTC AGCTTCTAAG 
    TTCGGGGTAC CTGTGCAGGA TGTGCAGGTT TGTGTTAATG ATGATCTTGT TGCAAAGAAC
    TATGCTTGTT ATATGTCACC TACAAAGAAT AAAAACCTTG ATTATTTAGA AAAACCAAGA
    TTGAATATAA AATCAACACC CTCCTTCAAT AAACTCAATC CAGCACTTAC ACTCTGGCCA
    ATGTTTTTGC AAGGAAAAGA TGTTCAAGGA ATGGAAGATT CACATGGTGT AAATTTTCCG
    GCACAATCTC TGCAACATAC ATGGTGCAAG GGTATTGTCG GTGACCTCAG GCCAACAGCC
    ACAGCACAGG ACAAAGCTGT AAAATGTAAT ATGGATTCAT TGAGAGATTC ACCTAAAAAC
    AAATCTGAAA AGAAACACCA TTGCATCTCT TTAAAAGATA CAAATAAGCG TGTTGAATCC
    TCAGTGTACT GGCCAGCAAA AAGAGGCATA ACCATATATG CTGATCCAGA TGTACCAGAA
    GCAAGTGCTT TAAGTCAGAA GTCAAATGAG AAACCTCTTG GATTGACTGA GAAGAAAGAA
    TATGATGAGA ATAGCTGTGT GAAATTACTG CAGTTTTTAA ATCCTGATCC TTTGAGAGCT
    GACGGACTCT CTGATCTCCA GCAGTTGCAG AAGCTGAAGG GCCTGCAGCC GCCCATGGTA
    GTGCTCCGGA ACAAGATCGA GCCCTGCTTA ACCATTGACT CGTCGCCGCT GTCAGCAGAC
    CTGAAGAAGG CTCTTCAAAG AAATAAGTTT CCGGGCCCCA GCCACACTGA ATCTTACTCT
    TGGCCTCCCA TAGCGCGTGG CTGTGATGTG GTTGTCATTT CTCACTGTGA AAGCAACCCT
    TTGCTCTACC TCCTACCAGT GTTGACAGTT TTGCAAACAG GAGCCTGCTA CAAGTCATTA
    CCAAGTAGAA ATGGACCTCT CGCAGTCATC GTGTGCCCTG GATGGAAGAA GGCCCAATTT
    ATTTTTGAAT TATTGGGAGA ATATAGCATG TCCTCCAGGC CTCTTCATCC TGTGCTATTA
    ACAATTGGGC TCCATAAAGA GGAAGCCAAA AATACAAAGC TTCCAAGGGG CTGTGATGTG
    ATTGTTACGA CCCCATACAG CCTGCTGAGG CTTCTCACCT GTCAGAGCCT GCTGTTCCTC
    AGGCTCTGCC ACCTGATCCT GGATGAGGTA GAGGTGCTAT TCTTGGAAGC CAATGAACAG
    ATGTTTGCTA TATTAGATAA CTTTAAAAAA AATATTGAAG TTGAAGAAAG GGTATCTGCA
    CCACATCAGA TTGTTGCAGT TGGAGTTCAT TGGAACAAAC ATATAGAACA TCTCATCAAA
    GAGTTCATGA ATGATCCCTA CATTGTGATC ACAGCCATGG AAGAGGCTGC TCTCTATGGC
    AATGTCCAAC AGGTAGTACA TCTTTGCCTA GAATGTGAAA AAACTTCTTC TTTACTCCAA
    GCTCTTGATT TTATTCCAAG TCAGGCACAA AAGACCTTGA TCTTCACCTG CTCTGTAGCT
    GAAACAGAAA TAGTGTGTAA GGTAGTAGAA AGCAGCTCAA TATTTTGCTT GAAGATGCAT
    AAAGAAATGA TTTTTAACTT ACAAAATGTT TTAGAACAGT GGAAGAAGAA GTTAAGTTCT
    GGCTCTCAAA TTATATTAGC CCTCACGGAC GACTGCGTCC CACTCTTGGC CATCACCGAT
    GCCACGTGTG TGATTCACTT CAGTTTCCCT GCCTCGCCAA AAGTTTTTGG TGGACGCCTG
    TATTGCATGT CTGATCAGTT TCACGCTGAA CAGGGTTCTC CTGCAGAACA GGGAGATAAG
    AAAGCCAAAT CTGTCTTGCT GCTGACGGAG AAAGATGCGA GCCACGCAGT GGGCGTCCTG
    CGCTACTTGG AGCGAGCGGA CGCCAAGGTC CCCGCAGAGC TGTACGAGTT CACCGCAGGA
    GTTCTGGAAG CCAAAGAAGA TAAGAAAGCC GGAATGCCTC TTTGTCCATA TCTGAAGGCT
    TTTGGTTTTT GCAAAGACAA AAGGATCTGT CCTGACCGAC ACCGTATTAA TCCAGAAATG
    GACTTGCCCA GGAAACTGTC CAGCCAAGCC CTACCTTCAT TTGGATACAT TAAAATAATA
    CCTTTTTATA TTTTGAATGC AACAAATTAC TTTGGCCGTA TAGTTGATAA ACACATGGAT
    CTTTATGCAA CTCTCAATGC TGAAATGAAT GAGTATTTTA AGGATTCTAA TAAAACAACT
    GTGGAAAAGG TGGAGAAGTT TGGATTGTAT GGATTAGCAG AAAAAACGCT TTTTCACAGG
    GTTCAGGTGT TGGAAGTGAG CCAAAAAGAA GACGCCTGGG CCCTGGATGA CATCCTTGTA
    GAGTTCATCG ATGAAGGCAG GACGGGGCTC GTCACAAGGG ACCAGCTGCT GCATCTCCCA
    GAACATTTCC ACACACTTCC CCCGCAGGCT GTGGAGTTTA TTGTCTGTAG GGTGAAACCT
    GCTGACAACG AAATGGAATG GAATCCGAAG GTTACTAGGT ACATTCATCA TAAAATTGTT
    GGAAAATTGC ATGATGCAAA AGTGATCCTG GCTTTGGGAA ATACAGTTTG GATTGATCCA
    ATGGTGCACA TTACAAACCT TTCCAGTTTA AAAACCTCTG TCATTGATTA TAATGTTCGA
    GCTGAAATTT TGTCCATGGG CATGGGCATT GATAATCCAG AACACGTAGA ACAACTGAAA
    AAATTACGCG AAGATGCTAA GATACCAGCT TGTGAAGAAA GCCTAAGCCA GACCCCGCCG
    AGGGTGACAG GGACCAGTCC TGCTCAAGAC CAGGATCATC CATCCGAGGA GCAGGAGGGG
    CAGGGGACGC CTCCTCCAGC AGAAGATGCT GCTTGCCTGC AGAGCCCCCA GCCTGAGGAC
    ACGGGTGCAG AAGGAGGGGC TGAGTCCAAG ACGAGCTCAG AAACCCAGAA GCCTGAAACT
    TTATCTGGAA ATACTGAAGG TGCCTTCATT AGCAGAACTG CACAGCCGCC TCTGAAAAGC
    TTCCACCCAC AAATAAAATG GTTCCAAAAA GAAGATGTCG TCATCTTAAA GATAAGAATA
    AGGAATGTAA AGGACTACAA GTGTCAGTAT TTAAGGGATA GAGTCGTTTT CAGTGCTTGG
    GTGGGAGACA AATTTTACCT GGCTGATCTG GAGCTGCGGG GCAACATAAG GAAAGATGAC
    TGCAAATGTG TGATTAGAAA CGATGAACCT GTAATCACTC TGGCCAAAGA GAGAAGGGAG
    GCATGGTGTC ACCTACTCAG ACAGAGGAAC CCCAACGTGG CTTTTGATTT TGATCACTGG
    GAAGACTGTG AAGAGGACAG CCACTTCCCC AAGGTAGTGA ATTCTAAAAA CCTGCCGTAC
    ACAGTGACAG AGGTGGTTGA AGACAGTAGC AGCACTTCAG AGGATGACGA CAGTGAGAGT
    GAATGA

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