bmp2k cDNA ORF clone, Callorhinchus milii(elephant shark)

The following bmp2k gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the bmp2k 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
OCa378780 XM_007896976.1
Latest version!
Callorhinchus milii BMP2 inducible kinase (bmp2k), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OCa378781 XM_007896977.1
Latest version!
Callorhinchus milii BMP2 inducible kinase (bmp2k), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OCa378782 XM_007896978.1
Latest version!
Callorhinchus milii BMP2 inducible kinase (bmp2k), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00

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 OCa378780
    Clone ID Related Accession (Same CDS sequence) XM_007896976.1
    Accession Version XM_007896976.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3444bp)
    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 BMP-2-inducible protein kinase isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006890103.1) 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 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
    3421
    ATGAAGAAAT TCTCGCGGAT CTCGAAGCCC GAGGGCGCGG GTTATATCGG TGCCGGGGGC 
    GGCGGCGGAG GAGGCGGAGG CGGCGGCGGC TCGATGGGAA GCGTCAGCAA CTATGTGGGC
    AGAGTGTTCA GTGTGGGCCG CTACCAGGTG ACTGTGGAGG AGCTGATCGC TGAAGGTGGA
    TTCTCCATTG TGTTCTTGGC TCGAACCCAC AGTGGAGTAC GTTGTGCCCT AAAACGCATG
    TATGTTAATG ACCAACATGA CTTAAATGTT TGCAAAAGGG AAGTAACCGT TATGAAAGAG
    CTTTCAGGTC ATAAAAATAT TGTAGGCTAC TTAGACTGTT CCATTACAGC CATCAGTGAT
    AATGTCTGGG AAGTCCTTAT TCTAATGGAA TATTGTCGAG CGGGACAAGT TGTGAACCAA
    ATGAACCAGA GGCTACAGAC GGGTTTCATT GAGACAGAAG TCTTGCACAT TTTTTGTGAT
    GTCTGTGAGG CAGTTGCAAG GCTACATCAA TGCAAAACTC CAATTATCCA CAGAGATCTA
    AAGGTTGAAA ATATTTTGTT AAATAATAAT GGGAACTATG TCCTCTGTGA CTTTGGAAGC
    GTTACTCATA AAATTCTCAA TCCCCAAATG CATGGTGTCA GTACTGTGGA GGATGAAATC
    AAAAAGTATA CAACCCTCTC TTATAGAGCC CCTGAAATGA TAAATTTTTA TGGAGGGAGC
    TCAATCACTA CTAAGGCTGA TATATGGGCA CTTGGATGTT TGCTGTACAA ACTTTGTTTC
    TTCACTCTTC CCTTTGGAGA AAGTCAAGTT GCAATCTGTG ATGGAAGCTT TACTGTGCCA
    GACACTTCTA AATATTCTCA CACACTGCAC TGTTTAATAC GTTATATGCT TGAACCAGAT
    CAACACAAAA GGCCTGACAT TTACCAAGTG TCACATTTTG CTTTTAAGTT AGCTGGGAAA
    GAATGCCCCA TCCCGAATAT ATGTAACGTT TCCATCCCAT CAGTACTTCC TGAGCCCATG
    ACTGCCAGTG AGGCAGCTGC CAGAAAGAAT CAAACAAAAG CCAGGTTAAG TGATGCTGTA
    GGACCAACAG AGACATCAAT AGCACCACGG CAAAGGCCAA AAGCAACGAC ATGTACTCCC
    AACACAAATG TGTTACCGAT TCAGAACTCG TCAACTCCAG TGAAGAGGGT AGTCTCCAGT
    GGATGTTCCA ATCAGGGGCA AAAAGCGATT GCACAAGCTG GAAATGGACA TTTAATTCAC
    ACGACTCAGG GGACCATTCA GCAACAGCAT CAAGTCCTGC AGCAGATGCA ACAGGGAGAC
    TTGAAGCTTC ATCAACTGCA ACAGTTAAAG CAGCATCAGC TTCAACAACA AATATTGCAA
    AGTCAGGCTC AACAGTATCA ACAGGCTTTG CAACCATCAA TACATCTGCA ACAGCAGCAA
    CAAATCCTGC AGCAACAGTT AATGATGCAG CCAATGTACT ATCAACAACA GTCTCCTCAG
    TACTCTGCTT TGCAGATGCA GCAATACCAA CAGGCCTTTC CACTGTCTCA GGGTGCCATA
    CAACACCATC CGCATTTTCA ACCCTCCCCA CACGAATGTC AACCCACATT AATGGCGTTT
    GTTCCCCCAA CCTCTCCGAC ATCCCCACAA GCTTCTGGCC ATCCCAGGAT ACAGGGTGAC
    CTCTCTTATG GTATGGCTTT TGTAGTCACT GGCACCCATC CAATGCAACA CAGCAGAACA
    GTGACTGTGG ACTCTGCGAT TAACTCAGTC AGGCCTGCTT CTTTGGAATT GGATGCAGTC
    CCCAGCTACT CTCCACAGAA TATGAGTAAC CCTCCTGATA TGTCTGGATG GAATCCATTT
    GGAGAGGACA ACTTTTCAAA GCTAACCAAG GAGGAACTAC TTGATAGGGA GTTTGACCAG
    CTCAGAGCAG GTAAACCAGA GCAGAGGAGA ACATCCATAG AGAGCCAGAG TGAACCACAT
    CCTGTTCAAC AGCTGCCAAT TAAAGAAGAC TTGTTTGGTT GTGTTCCATT TGTTTCTGAA
    GCAGGATCGA GGGGAAATAC TGAAGAAAAT GCAACAGATC CAAGAATCAT TTCAGACCTC
    TCCTTTAAAG CTGAAAAACA GGGGCAAGTC ATCTGTCAAT TTGATGAAGA CAGTAAAGAA
    AGAAGAAAAA GTAGCTCAAG TTTAGTTGTG CAGCAGCATA GAAAAAAAGA CTTGGACAGC
    GATTTTGAGT CTGATCCACC CACTCCAAAG AGCAGTGAAG AAGAGGAACT AGAGGAGGGG
    TTCCACAGCG AGCAAGGCGA GTTTAATGAA AACGATGTTG AAACGGAACA TTTTGGGCAA
    AGGCCATTGC TAATGGACTC TGAAGACGAA GAAGTGGAGG AGGAGGAGGA GGAAGAAAGG
    AACAGCTCTG ATTCAGACTA TGATCAGAGT AAGGAGGTTT ATTCTGTATC AGAACCAGGC
    AATGAGTATA ATGCTGATGC TGAAAGTGTT GCCAGTGCAG GGTCAGCAGC AGCGCTCATC
    ACTCCTCCAG ATTCACCACG GACCAAAGGG TGCACAACAT TGCAAGAAGT GGATGTGTTT
    GGTGCCGTGC CATTTGTTGG CCTGTCTCAG CAGGCACAAC CCAGCAAGAA AGTGGAAAAT
    AAAGACCGTT TTCAAAAGGA AGAGTTTGAT GTATTCAGTA ATGCGCCTTT TACCAAGAAA
    TTACCTCATA CAGTTCGACA CGGTGACGGT ACTTTGACAC AAACCCCACC TGTTTCACCT
    AATGATGTGG ACATGTTTGG TTCCACTCCT TTCCAGCCCC TTCAAACAAT GCAAAGTACA
    GAAGAAAAGG AGGATGTATT TGGACATGTT CCTTTTGAAG AAGTTACAGC CAGCCAGCAG
    CACAAGTTGA AGCAGCGCAG CTTACAAAAA CTTTCTTCCC GACAACGCCG CACCAAACAC
    GAATCTTCCA GTGGAAATGG CAAGCGTCAT CATGGCACAC CAACAACTGC AAGAAAGCCT
    TCTAAACCTA GCTATAGAAC TCCTGAGCGA ACACGGAGGC ACAAAAAAGT AGGCAGGCGT
    GATTCACAGA GTAGCAATGA ACTGCTAAAT ATATCAGACT CTAAAGAGAA CATTGGTGTG
    GCCCTTTCAG ATGGAAAAGA TAAAAATCAA ATGTTGTCAG CTGATGAAAG CCTGCTTGAT
    CCATTTGGTG CTAAGCCATT CCACCCTCAA GAGCTTGTAA GAAATTCGCA GTGCCAAGCT
    CTAGGTGATA ACCGAGGGGA CCATAATTCA GTTGTGAACA GATCCAGACC AAGCTCTATA
    CATGGGCCAT TTCACACTGA AAATGAGCTA AATACAGATG ATTTTGGTGC AGTCCCTTTT
    ACTGAACTTG TATTGCATAG TATTACACAG CAACATGGTG ACTTTGATCC ATTTGGTGCT
    GCACCATTTC CTTCCAAACA GTGA

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

    RefSeq XP_007895167.1
    CDS315..3758
    Translation

    Target ORF information:

    RefSeq Version XM_007896976.1
    Organism Callorhinchus milii(elephant shark)
    Definition Callorhinchus milii BMP2 inducible kinase (bmp2k), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007896976.1

    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
    ATGAAGAAAT TCTCGCGGAT CTCGAAGCCC GAGGGCGCGG GTTATATCGG TGCCGGGGGC 
    GGCGGCGGAG GAGGCGGAGG CGGCGGCGGC TCGATGGGAA GCGTCAGCAA CTATGTGGGC
    AGAGTGTTCA GTGTGGGCCG CTACCAGGTG ACTGTGGAGG AGCTGATCGC TGAAGGTGGA
    TTCTCCATTG TGTTCTTGGC TCGAACCCAC AGTGGAGTAC GTTGTGCCCT AAAACGCATG
    TATGTTAATG ACCAACATGA CTTAAATGTT TGCAAAAGGG AAGTAACCGT TATGAAAGAG
    CTTTCAGGTC ATAAAAATAT TGTAGGCTAC TTAGACTGTT CCATTACAGC CATCAGTGAT
    AATGTCTGGG AAGTCCTTAT TCTAATGGAA TATTGTCGAG CGGGACAAGT TGTGAACCAA
    ATGAACCAGA GGCTACAGAC GGGTTTCATT GAGACAGAAG TCTTGCACAT TTTTTGTGAT
    GTCTGTGAGG CAGTTGCAAG GCTACATCAA TGCAAAACTC CAATTATCCA CAGAGATCTA
    AAGGTTGAAA ATATTTTGTT AAATAATAAT GGGAACTATG TCCTCTGTGA CTTTGGAAGC
    GTTACTCATA AAATTCTCAA TCCCCAAATG CATGGTGTCA GTACTGTGGA GGATGAAATC
    AAAAAGTATA CAACCCTCTC TTATAGAGCC CCTGAAATGA TAAATTTTTA TGGAGGGAGC
    TCAATCACTA CTAAGGCTGA TATATGGGCA CTTGGATGTT TGCTGTACAA ACTTTGTTTC
    TTCACTCTTC CCTTTGGAGA AAGTCAAGTT GCAATCTGTG ATGGAAGCTT TACTGTGCCA
    GACACTTCTA AATATTCTCA CACACTGCAC TGTTTAATAC GTTATATGCT TGAACCAGAT
    CAACACAAAA GGCCTGACAT TTACCAAGTG TCACATTTTG CTTTTAAGTT AGCTGGGAAA
    GAATGCCCCA TCCCGAATAT ATGTAACGTT TCCATCCCAT CAGTACTTCC TGAGCCCATG
    ACTGCCAGTG AGGCAGCTGC CAGAAAGAAT CAAACAAAAG CCAGGTTAAG TGATGCTGTA
    GGACCAACAG AGACATCAAT AGCACCACGG CAAAGGCCAA AAGCAACGAC ATGTACTCCC
    AACACAAATG TGTTACCGAT TCAGAACTCG TCAACTCCAG TGAAGAGGGT AGTCTCCAGT
    GGATGTTCCA ATCAGGGGCA AAAAGCGATT GCACAAGCTG GAAATGGACA TTTAATTCAC
    ACGACTCAGG GGACCATTCA GCAACAGCAT CAAGTCCTGC AGCAGATGCA ACAGGGAGAC
    TTGAAGCTTC ATCAACTGCA ACAGTTAAAG CAGCATCAGC TTCAACAACA AATATTGCAA
    AGTCAGGCTC AACAGTATCA ACAGGCTTTG CAACCATCAA TACATCTGCA ACAGCAGCAA
    CAAATCCTGC AGCAACAGTT AATGATGCAG CCAATGTACT ATCAACAACA GTCTCCTCAG
    TACTCTGCTT TGCAGATGCA GCAATACCAA CAGGCCTTTC CACTGTCTCA GGGTGCCATA
    CAACACCATC CGCATTTTCA ACCCTCCCCA CACGAATGTC AACCCACATT AATGGCGTTT
    GTTCCCCCAA CCTCTCCGAC ATCCCCACAA GCTTCTGGCC ATCCCAGGAT ACAGGGTGAC
    CTCTCTTATG GTATGGCTTT TGTAGTCACT GGCACCCATC CAATGCAACA CAGCAGAACA
    GTGACTGTGG ACTCTGCGAT TAACTCAGTC AGGCCTGCTT CTTTGGAATT GGATGCAGTC
    CCCAGCTACT CTCCACAGAA TATGAGTAAC CCTCCTGATA TGTCTGGATG GAATCCATTT
    GGAGAGGACA ACTTTTCAAA GCTAACCAAG GAGGAACTAC TTGATAGGGA GTTTGACCAG
    CTCAGAGCAG GTAAACCAGA GCAGAGGAGA ACATCCATAG AGAGCCAGAG TGAACCACAT
    CCTGTTCAAC AGCTGCCAAT TAAAGAAGAC TTGTTTGGTT GTGTTCCATT TGTTTCTGAA
    GCAGGATCGA GGGGAAATAC TGAAGAAAAT GCAACAGATC CAAGAATCAT TTCAGACCTC
    TCCTTTAAAG CTGAAAAACA GGGGCAAGTC ATCTGTCAAT TTGATGAAGA CAGTAAAGAA
    AGAAGAAAAA GTAGCTCAAG TTTAGTTGTG CAGCAGCATA GAAAAAAAGA CTTGGACAGC
    GATTTTGAGT CTGATCCACC CACTCCAAAG AGCAGTGAAG AAGAGGAACT AGAGGAGGGG
    TTCCACAGCG AGCAAGGCGA GTTTAATGAA AACGATGTTG AAACGGAACA TTTTGGGCAA
    AGGCCATTGC TAATGGACTC TGAAGACGAA GAAGTGGAGG AGGAGGAGGA GGAAGAAAGG
    AACAGCTCTG ATTCAGACTA TGATCAGAGT AAGGAGGTTT ATTCTGTATC AGAACCAGGC
    AATGAGTATA ATGCTGATGC TGAAAGTGTT GCCAGTGCAG GGTCAGCAGC AGCGCTCATC
    ACTCCTCCAG ATTCACCACG GACCAAAGGG TGCACAACAT TGCAAGAAGT GGATGTGTTT
    GGTGCCGTGC CATTTGTTGG CCTGTCTCAG CAGGCACAAC CCAGCAAGAA AGTGGAAAAT
    AAAGACCGTT TTCAAAAGGA AGAGTTTGAT GTATTCAGTA ATGCGCCTTT TACCAAGAAA
    TTACCTCATA CAGTTCGACA CGGTGACGGT ACTTTGACAC AAACCCCACC TGTTTCACCT
    AATGATGTGG ACATGTTTGG TTCCACTCCT TTCCAGCCCC TTCAAACAAT GCAAAGTACA
    GAAGAAAAGG AGGATGTATT TGGACATGTT CCTTTTGAAG AAGTTACAGC CAGCCAGCAG
    CACAAGTTGA AGCAGCGCAG CTTACAAAAA CTTTCTTCCC GACAACGCCG CACCAAACAC
    GAATCTTCCA GTGGAAATGG CAAGCGTCAT CATGGCACAC CAACAACTGC AAGAAAGCCT
    TCTAAACCTA GCTATAGAAC TCCTGAGCGA ACACGGAGGC ACAAAAAAGT AGGCAGGCGT
    GATTCACAGA GTAGCAATGA ACTGCTAAAT ATATCAGACT CTAAAGAGAA CATTGGTGTG
    GCCCTTTCAG ATGGAAAAGA TAAAAATCAA ATGTTGTCAG CTGATGAAAG CCTGCTTGAT
    CCATTTGGTG CTAAGCCATT CCACCCTCAA GAGCTTGTAA GAAATTCGCA GTGCCAAGCT
    CTAGGTGATA ACCGAGGGGA CCATAATTCA GTTGTGAACA GATCCAGACC AAGCTCTATA
    CATGGGCCAT TTCACACTGA AAATGAGCTA AATACAGATG ATTTTGGTGC AGTCCCTTTT
    ACTGAACTTG TATTGCATAG TATTACACAG CAACATGGTG ACTTTGATCC ATTTGGTGCT
    GCACCATTTC CTTCCAAACA GTGA

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

    CloneID OCa378781
    Clone ID Related Accession (Same CDS sequence) XM_007896977.1
    Accession Version XM_007896977.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3441bp)
    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 BMP-2-inducible protein kinase isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006890103.1) 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 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
    3421
    ATGAAGAAAT TCTCGCGGAT CTCGAAGCCC GAGGGCGCGG GTTATATCGG TGCCGGGGGC 
    GGCGGCGGAG GAGGCGGAGG CGGCGGCGGC TCGATGGGAA GCGTCAGCAA CTATGTGGGC
    AGAGTGTTCA GTGTGGGCCG CTACCAGGTG ACTGTGGAGG AGCTGATCGC TGAAGGTGGA
    TTCTCCATTG TGTTCTTGGC TCGAACCCAC AGTGGAGTAC GTTGTGCCCT AAAACGCATG
    TATGTTAATG ACCAACATGA CTTAAATGTT TGCAAAAGGG AAGTAACCGT TATGAAAGAG
    CTTTCAGGTC ATAAAAATAT TGTAGGCTAC TTAGACTGTT CCATTACAGC CATCAGTGAT
    AATGTCTGGG AAGTCCTTAT TCTAATGGAA TATTGTCGAG CGGGACAAGT TGTGAACCAA
    ATGAACCAGA GGCTACAGAC GGGTTTCATT GAGACAGAAG TCTTGCACAT TTTTTGTGAT
    GTCTGTGAGG CAGTTGCAAG GCTACATCAA TGCAAAACTC CAATTATCCA CAGAGATCTA
    AAGGTTGAAA ATATTTTGTT AAATAATAAT GGGAACTATG TCCTCTGTGA CTTTGGAAGC
    GTTACTCATA AAATTCTCAA TCCCCAAATG CATGGTGTCA GTACTGTGGA GGATGAAATC
    AAAAAGTATA CAACCCTCTC TTATAGAGCC CCTGAAATGA TAAATTTTTA TGGAGGGAGC
    TCAATCACTA CTAAGGCTGA TATATGGGCA CTTGGATGTT TGCTGTACAA ACTTTGTTTC
    TTCACTCTTC CCTTTGGAGA AAGTCAAGTT GCAATCTGTG ATGGAAGCTT TACTGTGCCA
    GACACTTCTA AATATTCTCA CACACTGCAC TGTTTAATAC GTTATATGCT TGAACCAGAT
    CAACACAAAA GGCCTGACAT TTACCAAGTG TCACATTTTG CTTTTAAGTT AGCTGGGAAA
    GAATGCCCCA TCCCGAATAT ATGTAACGTT TCCATCCCAT CAGTACTTCC TGAGCCCATG
    ACTGCCAGTG AGGCAGCTGC CAGAAAGAAT CAAACAAAAG CCAGGTTAAG TGATGCTGTA
    GGACCAACAG AGACATCAAT AGCACCACGG CAAAGGCCAA AAGCAACGAC ATGTACTCCC
    AACACAAATG TGTTACCGAT TCAGAACTCG TCAACTCCAG TGAAGAGGGT AGTCTCCAGT
    GGATGTTCCA ATCAGGGGCA AAAAGCGATT GCACAAGCTG GAAATGGACA TTTAATTCAC
    ACGACTCAGG GGACCATTCA GCAACAGCAT CAAGTCCTGC AGCAGATGCA ACAGGGAGAC
    TTGAAGCTTC ATCAACTGCA ACAGTTAAAG CAGCATCAGC TTCAACAACA AATATTGCAA
    AGTCAGGCTC AACAGTATCA ACAGGCTTTG CAACCATCAA TACATCTGCA ACAGCAGCAA
    CAAATCCTGC AGCAACAGTT AATGATGCAG CCAATGTACT ATCAACAACA GTCTCCTCAG
    TACTCTGCTT TGATGCAGCA ATACCAACAG GCCTTTCCAC TGTCTCAGGG TGCCATACAA
    CACCATCCGC ATTTTCAACC CTCCCCACAC GAATGTCAAC CCACATTAAT GGCGTTTGTT
    CCCCCAACCT CTCCGACATC CCCACAAGCT TCTGGCCATC CCAGGATACA GGGTGACCTC
    TCTTATGGTA TGGCTTTTGT AGTCACTGGC ACCCATCCAA TGCAACACAG CAGAACAGTG
    ACTGTGGACT CTGCGATTAA CTCAGTCAGG CCTGCTTCTT TGGAATTGGA TGCAGTCCCC
    AGCTACTCTC CACAGAATAT GAGTAACCCT CCTGATATGT CTGGATGGAA TCCATTTGGA
    GAGGACAACT TTTCAAAGCT AACCAAGGAG GAACTACTTG ATAGGGAGTT TGACCAGCTC
    AGAGCAGGTA AACCAGAGCA GAGGAGAACA TCCATAGAGA GCCAGAGTGA ACCACATCCT
    GTTCAACAGC TGCCAATTAA AGAAGACTTG TTTGGTTGTG TTCCATTTGT TTCTGAAGCA
    GGATCGAGGG GAAATACTGA AGAAAATGCA ACAGATCCAA GAATCATTTC AGACCTCTCC
    TTTAAAGCTG AAAAACAGGG GCAAGTCATC TGTCAATTTG ATGAAGACAG TAAAGAAAGA
    AGAAAAAGTA GCTCAAGTTT AGTTGTGCAG CAGCATAGAA AAAAAGACTT GGACAGCGAT
    TTTGAGTCTG ATCCACCCAC TCCAAAGAGC AGTGAAGAAG AGGAACTAGA GGAGGGGTTC
    CACAGCGAGC AAGGCGAGTT TAATGAAAAC GATGTTGAAA CGGAACATTT TGGGCAAAGG
    CCATTGCTAA TGGACTCTGA AGACGAAGAA GTGGAGGAGG AGGAGGAGGA AGAAAGGAAC
    AGCTCTGATT CAGACTATGA TCAGAGTAAG GAGGTTTATT CTGTATCAGA ACCAGGCAAT
    GAGTATAATG CTGATGCTGA AAGTGTTGCC AGTGCAGGGT CAGCAGCAGC GCTCATCACT
    CCTCCAGATT CACCACGGAC CAAAGGGTGC ACAACATTGC AAGAAGTGGA TGTGTTTGGT
    GCCGTGCCAT TTGTTGGCCT GTCTCAGCAG GCACAACCCA GCAAGAAAGT GGAAAATAAA
    GACCGTTTTC AAAAGGAAGA GTTTGATGTA TTCAGTAATG CGCCTTTTAC CAAGAAATTA
    CCTCATACAG TTCGACACGG TGACGGTACT TTGACACAAA CCCCACCTGT TTCACCTAAT
    GATGTGGACA TGTTTGGTTC CACTCCTTTC CAGCCCCTTC AAACAATGCA AAGTACAGAA
    GAAAAGGAGG ATGTATTTGG ACATGTTCCT TTTGAAGAAG TTACAGCCAG CCAGCAGCAC
    AAGTTGAAGC AGCGCAGCTT ACAAAAACTT TCTTCCCGAC AACGCCGCAC CAAACACGAA
    TCTTCCAGTG GAAATGGCAA GCGTCATCAT GGCACACCAA CAACTGCAAG AAAGCCTTCT
    AAACCTAGCT ATAGAACTCC TGAGCGAACA CGGAGGCACA AAAAAGTAGG CAGGCGTGAT
    TCACAGAGTA GCAATGAACT GCTAAATATA TCAGACTCTA AAGAGAACAT TGGTGTGGCC
    CTTTCAGATG GAAAAGATAA AAATCAAATG TTGTCAGCTG ATGAAAGCCT GCTTGATCCA
    TTTGGTGCTA AGCCATTCCA CCCTCAAGAG CTTGTAAGAA ATTCGCAGTG CCAAGCTCTA
    GGTGATAACC GAGGGGACCA TAATTCAGTT GTGAACAGAT CCAGACCAAG CTCTATACAT
    GGGCCATTTC ACACTGAAAA TGAGCTAAAT ACAGATGATT TTGGTGCAGT CCCTTTTACT
    GAACTTGTAT TGCATAGTAT TACACAGCAA CATGGTGACT TTGATCCATT TGGTGCTGCA
    CCATTTCCTT CCAAACAGTG A

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

    RefSeq XP_007895168.1
    CDS315..3755
    Translation

    Target ORF information:

    RefSeq Version XM_007896977.1
    Organism Callorhinchus milii(elephant shark)
    Definition Callorhinchus milii BMP2 inducible kinase (bmp2k), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007896977.1

    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
    ATGAAGAAAT TCTCGCGGAT CTCGAAGCCC GAGGGCGCGG GTTATATCGG TGCCGGGGGC 
    GGCGGCGGAG GAGGCGGAGG CGGCGGCGGC TCGATGGGAA GCGTCAGCAA CTATGTGGGC
    AGAGTGTTCA GTGTGGGCCG CTACCAGGTG ACTGTGGAGG AGCTGATCGC TGAAGGTGGA
    TTCTCCATTG TGTTCTTGGC TCGAACCCAC AGTGGAGTAC GTTGTGCCCT AAAACGCATG
    TATGTTAATG ACCAACATGA CTTAAATGTT TGCAAAAGGG AAGTAACCGT TATGAAAGAG
    CTTTCAGGTC ATAAAAATAT TGTAGGCTAC TTAGACTGTT CCATTACAGC CATCAGTGAT
    AATGTCTGGG AAGTCCTTAT TCTAATGGAA TATTGTCGAG CGGGACAAGT TGTGAACCAA
    ATGAACCAGA GGCTACAGAC GGGTTTCATT GAGACAGAAG TCTTGCACAT TTTTTGTGAT
    GTCTGTGAGG CAGTTGCAAG GCTACATCAA TGCAAAACTC CAATTATCCA CAGAGATCTA
    AAGGTTGAAA ATATTTTGTT AAATAATAAT GGGAACTATG TCCTCTGTGA CTTTGGAAGC
    GTTACTCATA AAATTCTCAA TCCCCAAATG CATGGTGTCA GTACTGTGGA GGATGAAATC
    AAAAAGTATA CAACCCTCTC TTATAGAGCC CCTGAAATGA TAAATTTTTA TGGAGGGAGC
    TCAATCACTA CTAAGGCTGA TATATGGGCA CTTGGATGTT TGCTGTACAA ACTTTGTTTC
    TTCACTCTTC CCTTTGGAGA AAGTCAAGTT GCAATCTGTG ATGGAAGCTT TACTGTGCCA
    GACACTTCTA AATATTCTCA CACACTGCAC TGTTTAATAC GTTATATGCT TGAACCAGAT
    CAACACAAAA GGCCTGACAT TTACCAAGTG TCACATTTTG CTTTTAAGTT AGCTGGGAAA
    GAATGCCCCA TCCCGAATAT ATGTAACGTT TCCATCCCAT CAGTACTTCC TGAGCCCATG
    ACTGCCAGTG AGGCAGCTGC CAGAAAGAAT CAAACAAAAG CCAGGTTAAG TGATGCTGTA
    GGACCAACAG AGACATCAAT AGCACCACGG CAAAGGCCAA AAGCAACGAC ATGTACTCCC
    AACACAAATG TGTTACCGAT TCAGAACTCG TCAACTCCAG TGAAGAGGGT AGTCTCCAGT
    GGATGTTCCA ATCAGGGGCA AAAAGCGATT GCACAAGCTG GAAATGGACA TTTAATTCAC
    ACGACTCAGG GGACCATTCA GCAACAGCAT CAAGTCCTGC AGCAGATGCA ACAGGGAGAC
    TTGAAGCTTC ATCAACTGCA ACAGTTAAAG CAGCATCAGC TTCAACAACA AATATTGCAA
    AGTCAGGCTC AACAGTATCA ACAGGCTTTG CAACCATCAA TACATCTGCA ACAGCAGCAA
    CAAATCCTGC AGCAACAGTT AATGATGCAG CCAATGTACT ATCAACAACA GTCTCCTCAG
    TACTCTGCTT TGATGCAGCA ATACCAACAG GCCTTTCCAC TGTCTCAGGG TGCCATACAA
    CACCATCCGC ATTTTCAACC CTCCCCACAC GAATGTCAAC CCACATTAAT GGCGTTTGTT
    CCCCCAACCT CTCCGACATC CCCACAAGCT TCTGGCCATC CCAGGATACA GGGTGACCTC
    TCTTATGGTA TGGCTTTTGT AGTCACTGGC ACCCATCCAA TGCAACACAG CAGAACAGTG
    ACTGTGGACT CTGCGATTAA CTCAGTCAGG CCTGCTTCTT TGGAATTGGA TGCAGTCCCC
    AGCTACTCTC CACAGAATAT GAGTAACCCT CCTGATATGT CTGGATGGAA TCCATTTGGA
    GAGGACAACT TTTCAAAGCT AACCAAGGAG GAACTACTTG ATAGGGAGTT TGACCAGCTC
    AGAGCAGGTA AACCAGAGCA GAGGAGAACA TCCATAGAGA GCCAGAGTGA ACCACATCCT
    GTTCAACAGC TGCCAATTAA AGAAGACTTG TTTGGTTGTG TTCCATTTGT TTCTGAAGCA
    GGATCGAGGG GAAATACTGA AGAAAATGCA ACAGATCCAA GAATCATTTC AGACCTCTCC
    TTTAAAGCTG AAAAACAGGG GCAAGTCATC TGTCAATTTG ATGAAGACAG TAAAGAAAGA
    AGAAAAAGTA GCTCAAGTTT AGTTGTGCAG CAGCATAGAA AAAAAGACTT GGACAGCGAT
    TTTGAGTCTG ATCCACCCAC TCCAAAGAGC AGTGAAGAAG AGGAACTAGA GGAGGGGTTC
    CACAGCGAGC AAGGCGAGTT TAATGAAAAC GATGTTGAAA CGGAACATTT TGGGCAAAGG
    CCATTGCTAA TGGACTCTGA AGACGAAGAA GTGGAGGAGG AGGAGGAGGA AGAAAGGAAC
    AGCTCTGATT CAGACTATGA TCAGAGTAAG GAGGTTTATT CTGTATCAGA ACCAGGCAAT
    GAGTATAATG CTGATGCTGA AAGTGTTGCC AGTGCAGGGT CAGCAGCAGC GCTCATCACT
    CCTCCAGATT CACCACGGAC CAAAGGGTGC ACAACATTGC AAGAAGTGGA TGTGTTTGGT
    GCCGTGCCAT TTGTTGGCCT GTCTCAGCAG GCACAACCCA GCAAGAAAGT GGAAAATAAA
    GACCGTTTTC AAAAGGAAGA GTTTGATGTA TTCAGTAATG CGCCTTTTAC CAAGAAATTA
    CCTCATACAG TTCGACACGG TGACGGTACT TTGACACAAA CCCCACCTGT TTCACCTAAT
    GATGTGGACA TGTTTGGTTC CACTCCTTTC CAGCCCCTTC AAACAATGCA AAGTACAGAA
    GAAAAGGAGG ATGTATTTGG ACATGTTCCT TTTGAAGAAG TTACAGCCAG CCAGCAGCAC
    AAGTTGAAGC AGCGCAGCTT ACAAAAACTT TCTTCCCGAC AACGCCGCAC CAAACACGAA
    TCTTCCAGTG GAAATGGCAA GCGTCATCAT GGCACACCAA CAACTGCAAG AAAGCCTTCT
    AAACCTAGCT ATAGAACTCC TGAGCGAACA CGGAGGCACA AAAAAGTAGG CAGGCGTGAT
    TCACAGAGTA GCAATGAACT GCTAAATATA TCAGACTCTA AAGAGAACAT TGGTGTGGCC
    CTTTCAGATG GAAAAGATAA AAATCAAATG TTGTCAGCTG ATGAAAGCCT GCTTGATCCA
    TTTGGTGCTA AGCCATTCCA CCCTCAAGAG CTTGTAAGAA ATTCGCAGTG CCAAGCTCTA
    GGTGATAACC GAGGGGACCA TAATTCAGTT GTGAACAGAT CCAGACCAAG CTCTATACAT
    GGGCCATTTC ACACTGAAAA TGAGCTAAAT ACAGATGATT TTGGTGCAGT CCCTTTTACT
    GAACTTGTAT TGCATAGTAT TACACAGCAA CATGGTGACT TTGATCCATT TGGTGCTGCA
    CCATTTCCTT CCAAACAGTG A

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

    CloneID OCa378782
    Clone ID Related Accession (Same CDS sequence) XM_007896978.1
    Accession Version XM_007896978.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3330bp)
    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 BMP-2-inducible protein kinase isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006890103.1) 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 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
    ATGAAGAAAT TCTCGCGGAT CTCGAAGCCC GAGGGCGCGG GTTATATCGG TGCCGGGGGC 
    GGCGGCGGAG GAGGCGGAGG CGGCGGCGGC TCGATGGGAA GCGTCAGCAA CTATGTGGGC
    AGAGTGTTCA GTGTGGGCCG CTACCAGGTG ACTGTGGAGG AGCTGATCGC TGAAGGTGGA
    TTCTCCATTG TGTTCTTGGC TCGAACCCAC AGTGGAGTAC GTTGTGCCCT AAAACGCATG
    TATGTTAATG ACCAACATGA CTTAAATGTT TGCAAAAGGG AAGTAACCGT TATGAAAGAG
    CTTTCAGGTC ATAAAAATAT TGTAGGCTAC TTAGACTGTT CCATTACAGC CATCAGTGAT
    AATGTCTGGG AAGTCCTTAT TCTAATGGAA TATTGTCGAG CGGGACAAGT TGTGAACCAA
    ATGAACCAGA GGCTACAGAC GGGTTTCATT GAGACAGAAG TCTTGCACAT TTTTTGTGAT
    GTCTGTGAGG CAGTTGCAAG GCTACATCAA TGCAAAACTC CAATTATCCA CAGAGATCTA
    AAGGTTGAAA ATATTTTGTT AAATAATAAT GGGAACTATG TCCTCTGTGA CTTTGGAAGC
    GTTACTCATA AAATTCTCAA TCCCCAAATG CATGGTGTCA GTACTGTGGA GGATGAAATC
    AAAAAGTATA CAACCCTCTC TTATAGAGCC CCTGAAATGA TAAATTTTTA TGGAGGGAGC
    TCAATCACTA CTAAGGCTGA TATATGGGCA CTTGGATGTT TGCTGTACAA ACTTTGTTTC
    TTCACTCTTC CCTTTGGAGA AAGTCAAGTT GCAATCTGTG ATGGAAGCTT TACTGTGCCA
    GACACTTCTA AATATTCTCA CACACTGCAC TGTTTAATAC GTTATATGCT TGAACCAGAT
    CAACACAAAA GGCCTGACAT TTACCAAGTG TCACATTTTG CTTTTAAGTT AGCTGGGAAA
    GAATGCCCCA TCCCGAATAT ATGTAACGTT TCCATCCCAT CAGTACTTCC TGAGCCCATG
    ACTGCCAGTG AGGCAGCTGC CAGAAAGAAT CAAACAAAAG CCAGGTTAAG TGATGCTGTA
    GGACCAACAG AGACATCAAT AGCACCACGG CAAAGGCCAA AAGCAACGAC ATGTACTCCC
    AACACAAATG TGTTACCGAT TCAGAACTCG TCAACTCCAG TGAAGAGGGT AGTCTCCAGT
    GGATGTTCCA ATCAGGGGCA AAAAGCGATT GCACAAGCTG GAAATGGACA TTTAATTCAC
    ACGACTCAGG GGACCATTCA GCAACAGCAT CAAGTCCTGC AGCAGATGCA ACAGGGAGAC
    TTGAAGCTTC ATCAACTGCA ACAGTTAAAG CAGCATCAGC TTCAACAACA AATATTGCAA
    AGTCAGGCTC AACAGTATCA ACAGGCTTTG CAACCATCAA TACATCTGCA ACAGCAGCAA
    CAAATCCTGC AGCAACAGTT AATGATGCAG CCAATGTACT ATCAACAACA GTCTCCTCAG
    TACTCTGCTT TGCAGATGCA GCAATACCAA CAGGCCTTTC CACTGTCTCA GGGTGCCATA
    CAACACCATC CGCATTTTCA ACCCTCCCCA CACGAATGTC AACCCACATT AATGGCGTTT
    GTTCCCCCAA CCTCTCCGAC ATCCCCACAA GCTTCTGGCC ATCCCAGGAT ACAGGGTGAC
    CTCTCTTATG GTATGGCTTT TGTAGTCACT GGCACCCATC CAATGCAACA CAGCAGAACA
    GTGACTGTGG ACTCTGCGAT TAACTCAGTC AGGCCTGCTT CTTTGGAATT GGATGCAGTC
    CCCAGCTACT CTCCACAGAA TATGAGTAAC CCTCCTGATA TGTCTGGATG GAATCCATTT
    GGAGAGGACA ACTTTTCAAA GCTAACCAAG GAGGAACTAC TTGATAGGGA GTTTGACCAG
    CTCAGAGCAG GATCGAGGGG AAATACTGAA GAAAATGCAA CAGATCCAAG AATCATTTCA
    GACCTCTCCT TTAAAGCTGA AAAACAGGGG CAAGTCATCT GTCAATTTGA TGAAGACAGT
    AAAGAAAGAA GAAAAAGTAG CTCAAGTTTA GTTGTGCAGC AGCATAGAAA AAAAGACTTG
    GACAGCGATT TTGAGTCTGA TCCACCCACT CCAAAGAGCA GTGAAGAAGA GGAACTAGAG
    GAGGGGTTCC ACAGCGAGCA AGGCGAGTTT AATGAAAACG ATGTTGAAAC GGAACATTTT
    GGGCAAAGGC CATTGCTAAT GGACTCTGAA GACGAAGAAG TGGAGGAGGA GGAGGAGGAA
    GAAAGGAACA GCTCTGATTC AGACTATGAT CAGAGTAAGG AGGTTTATTC TGTATCAGAA
    CCAGGCAATG AGTATAATGC TGATGCTGAA AGTGTTGCCA GTGCAGGGTC AGCAGCAGCG
    CTCATCACTC CTCCAGATTC ACCACGGACC AAAGGGTGCA CAACATTGCA AGAAGTGGAT
    GTGTTTGGTG CCGTGCCATT TGTTGGCCTG TCTCAGCAGG CACAACCCAG CAAGAAAGTG
    GAAAATAAAG ACCGTTTTCA AAAGGAAGAG TTTGATGTAT TCAGTAATGC GCCTTTTACC
    AAGAAATTAC CTCATACAGT TCGACACGGT GACGGTACTT TGACACAAAC CCCACCTGTT
    TCACCTAATG ATGTGGACAT GTTTGGTTCC ACTCCTTTCC AGCCCCTTCA AACAATGCAA
    AGTACAGAAG AAAAGGAGGA TGTATTTGGA CATGTTCCTT TTGAAGAAGT TACAGCCAGC
    CAGCAGCACA AGTTGAAGCA GCGCAGCTTA CAAAAACTTT CTTCCCGACA ACGCCGCACC
    AAACACGAAT CTTCCAGTGG AAATGGCAAG CGTCATCATG GCACACCAAC AACTGCAAGA
    AAGCCTTCTA AACCTAGCTA TAGAACTCCT GAGCGAACAC GGAGGCACAA AAAAGTAGGC
    AGGCGTGATT CACAGAGTAG CAATGAACTG CTAAATATAT CAGACTCTAA AGAGAACATT
    GGTGTGGCCC TTTCAGATGG AAAAGATAAA AATCAAATGT TGTCAGCTGA TGAAAGCCTG
    CTTGATCCAT TTGGTGCTAA GCCATTCCAC CCTCAAGAGC TTGTAAGAAA TTCGCAGTGC
    CAAGCTCTAG GTGATAACCG AGGGGACCAT AATTCAGTTG TGAACAGATC CAGACCAAGC
    TCTATACATG GGCCATTTCA CACTGAAAAT GAGCTAAATA CAGATGATTT TGGTGCAGTC
    CCTTTTACTG AACTTGTATT GCATAGTATT ACACAGCAAC ATGGTGACTT TGATCCATTT
    GGTGCTGCAC CATTTCCTTC CAAACAGTGA

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

    RefSeq XP_007895169.1
    CDS315..3644
    Translation

    Target ORF information:

    RefSeq Version XM_007896978.1
    Organism Callorhinchus milii(elephant shark)
    Definition Callorhinchus milii BMP2 inducible kinase (bmp2k), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007896978.1

    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
    ATGAAGAAAT TCTCGCGGAT CTCGAAGCCC GAGGGCGCGG GTTATATCGG TGCCGGGGGC 
    GGCGGCGGAG GAGGCGGAGG CGGCGGCGGC TCGATGGGAA GCGTCAGCAA CTATGTGGGC
    AGAGTGTTCA GTGTGGGCCG CTACCAGGTG ACTGTGGAGG AGCTGATCGC TGAAGGTGGA
    TTCTCCATTG TGTTCTTGGC TCGAACCCAC AGTGGAGTAC GTTGTGCCCT AAAACGCATG
    TATGTTAATG ACCAACATGA CTTAAATGTT TGCAAAAGGG AAGTAACCGT TATGAAAGAG
    CTTTCAGGTC ATAAAAATAT TGTAGGCTAC TTAGACTGTT CCATTACAGC CATCAGTGAT
    AATGTCTGGG AAGTCCTTAT TCTAATGGAA TATTGTCGAG CGGGACAAGT TGTGAACCAA
    ATGAACCAGA GGCTACAGAC GGGTTTCATT GAGACAGAAG TCTTGCACAT TTTTTGTGAT
    GTCTGTGAGG CAGTTGCAAG GCTACATCAA TGCAAAACTC CAATTATCCA CAGAGATCTA
    AAGGTTGAAA ATATTTTGTT AAATAATAAT GGGAACTATG TCCTCTGTGA CTTTGGAAGC
    GTTACTCATA AAATTCTCAA TCCCCAAATG CATGGTGTCA GTACTGTGGA GGATGAAATC
    AAAAAGTATA CAACCCTCTC TTATAGAGCC CCTGAAATGA TAAATTTTTA TGGAGGGAGC
    TCAATCACTA CTAAGGCTGA TATATGGGCA CTTGGATGTT TGCTGTACAA ACTTTGTTTC
    TTCACTCTTC CCTTTGGAGA AAGTCAAGTT GCAATCTGTG ATGGAAGCTT TACTGTGCCA
    GACACTTCTA AATATTCTCA CACACTGCAC TGTTTAATAC GTTATATGCT TGAACCAGAT
    CAACACAAAA GGCCTGACAT TTACCAAGTG TCACATTTTG CTTTTAAGTT AGCTGGGAAA
    GAATGCCCCA TCCCGAATAT ATGTAACGTT TCCATCCCAT CAGTACTTCC TGAGCCCATG
    ACTGCCAGTG AGGCAGCTGC CAGAAAGAAT CAAACAAAAG CCAGGTTAAG TGATGCTGTA
    GGACCAACAG AGACATCAAT AGCACCACGG CAAAGGCCAA AAGCAACGAC ATGTACTCCC
    AACACAAATG TGTTACCGAT TCAGAACTCG TCAACTCCAG TGAAGAGGGT AGTCTCCAGT
    GGATGTTCCA ATCAGGGGCA AAAAGCGATT GCACAAGCTG GAAATGGACA TTTAATTCAC
    ACGACTCAGG GGACCATTCA GCAACAGCAT CAAGTCCTGC AGCAGATGCA ACAGGGAGAC
    TTGAAGCTTC ATCAACTGCA ACAGTTAAAG CAGCATCAGC TTCAACAACA AATATTGCAA
    AGTCAGGCTC AACAGTATCA ACAGGCTTTG CAACCATCAA TACATCTGCA ACAGCAGCAA
    CAAATCCTGC AGCAACAGTT AATGATGCAG CCAATGTACT ATCAACAACA GTCTCCTCAG
    TACTCTGCTT TGCAGATGCA GCAATACCAA CAGGCCTTTC CACTGTCTCA GGGTGCCATA
    CAACACCATC CGCATTTTCA ACCCTCCCCA CACGAATGTC AACCCACATT AATGGCGTTT
    GTTCCCCCAA CCTCTCCGAC ATCCCCACAA GCTTCTGGCC ATCCCAGGAT ACAGGGTGAC
    CTCTCTTATG GTATGGCTTT TGTAGTCACT GGCACCCATC CAATGCAACA CAGCAGAACA
    GTGACTGTGG ACTCTGCGAT TAACTCAGTC AGGCCTGCTT CTTTGGAATT GGATGCAGTC
    CCCAGCTACT CTCCACAGAA TATGAGTAAC CCTCCTGATA TGTCTGGATG GAATCCATTT
    GGAGAGGACA ACTTTTCAAA GCTAACCAAG GAGGAACTAC TTGATAGGGA GTTTGACCAG
    CTCAGAGCAG GATCGAGGGG AAATACTGAA GAAAATGCAA CAGATCCAAG AATCATTTCA
    GACCTCTCCT TTAAAGCTGA AAAACAGGGG CAAGTCATCT GTCAATTTGA TGAAGACAGT
    AAAGAAAGAA GAAAAAGTAG CTCAAGTTTA GTTGTGCAGC AGCATAGAAA AAAAGACTTG
    GACAGCGATT TTGAGTCTGA TCCACCCACT CCAAAGAGCA GTGAAGAAGA GGAACTAGAG
    GAGGGGTTCC ACAGCGAGCA AGGCGAGTTT AATGAAAACG ATGTTGAAAC GGAACATTTT
    GGGCAAAGGC CATTGCTAAT GGACTCTGAA GACGAAGAAG TGGAGGAGGA GGAGGAGGAA
    GAAAGGAACA GCTCTGATTC AGACTATGAT CAGAGTAAGG AGGTTTATTC TGTATCAGAA
    CCAGGCAATG AGTATAATGC TGATGCTGAA AGTGTTGCCA GTGCAGGGTC AGCAGCAGCG
    CTCATCACTC CTCCAGATTC ACCACGGACC AAAGGGTGCA CAACATTGCA AGAAGTGGAT
    GTGTTTGGTG CCGTGCCATT TGTTGGCCTG TCTCAGCAGG CACAACCCAG CAAGAAAGTG
    GAAAATAAAG ACCGTTTTCA AAAGGAAGAG TTTGATGTAT TCAGTAATGC GCCTTTTACC
    AAGAAATTAC CTCATACAGT TCGACACGGT GACGGTACTT TGACACAAAC CCCACCTGTT
    TCACCTAATG ATGTGGACAT GTTTGGTTCC ACTCCTTTCC AGCCCCTTCA AACAATGCAA
    AGTACAGAAG AAAAGGAGGA TGTATTTGGA CATGTTCCTT TTGAAGAAGT TACAGCCAGC
    CAGCAGCACA AGTTGAAGCA GCGCAGCTTA CAAAAACTTT CTTCCCGACA ACGCCGCACC
    AAACACGAAT CTTCCAGTGG AAATGGCAAG CGTCATCATG GCACACCAAC AACTGCAAGA
    AAGCCTTCTA AACCTAGCTA TAGAACTCCT GAGCGAACAC GGAGGCACAA AAAAGTAGGC
    AGGCGTGATT CACAGAGTAG CAATGAACTG CTAAATATAT CAGACTCTAA AGAGAACATT
    GGTGTGGCCC TTTCAGATGG AAAAGATAAA AATCAAATGT TGTCAGCTGA TGAAAGCCTG
    CTTGATCCAT TTGGTGCTAA GCCATTCCAC CCTCAAGAGC TTGTAAGAAA TTCGCAGTGC
    CAAGCTCTAG GTGATAACCG AGGGGACCAT AATTCAGTTG TGAACAGATC CAGACCAAGC
    TCTATACATG GGCCATTTCA CACTGAAAAT GAGCTAAATA CAGATGATTT TGGTGCAGTC
    CCTTTTACTG AACTTGTATT GCATAGTATT ACACAGCAAC ATGGTGACTT TGATCCATTT
    GGTGCTGCAC CATTTCCTTC CAAACAGTGA

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