BOC cDNA ORF clone, Alligator mississippiensis(American alligator)

The following BOC gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the BOC 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
OAl73678 XM_019476162.1
Latest version!
Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAl73679 XM_006259427.3
Latest version!
Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAl73679 XM_019476164.1
Latest version!
Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAl73679 XM_014603968.2
Latest version!
Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAl73680 XM_019476165.1
Latest version!
Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X5, 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 OAl73678
    Clone ID Related Accession (Same CDS sequence) XM_019476162.1
    Accession Version XM_019476162.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3399bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product brother of CDO isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017713645.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGCAACACA GCTACCCTCG AGCAGCGCTA GGGCACCGCA GGAAGCCACA GCACCTCCTT 
    GAGTCTTCTG AGGCAACTTA TGGGAACCCT GCCTGGGCCC TTCTGCTCCA GGCTACGCTG
    CATGGGATGA CAATGACACC TGGAAGGAAG AGACCAGTGG CCACCATCCC CTGCCTTATC
    CTAGCAGCTG CTAGTTGCTT TGCTAATTTA GGTGAGTCTC TACAAGTCAC CGTCCAACCT
    GCCTCCATTG TCCAAAAATA TGGTGGCGTG GTGAGTCTGG GTTGTGTGGC AAACCCCACA
    AGAGTGAACG TTACCTGGAG ACTGAATGGG AAGGAGCTGA CGGAGTCAGA TGAGGTGCTG
    GGGATTCACA CCGAGCCAGG GAAACTCATC ATCCTTGCTC TCAACAACCA CACCGTAGGC
    CGGTATCAGT GTATTGCTCG TGTACCTGAG GGGGTTGTGG CCAGTGTCCC AGCCACAGTG
    ACGTTAGCCA ATCTCAAAGA CTTCAAATTT GATGGCCAGC ATGTGATTGA AGTGGATGAA
    GGCAACACTG CCGTCATTGC TTGTGACCTG CCTGAAAGCC ATCCAAAGGC CCTGGTGCGC
    TACAGTGTGA AACATGAGTG GCTAGAGTCC TCCAGAGACA ACTACTTGAT TATGCCATCT
    GGGAATCTTC AGATAGTCAA TGCCAGTCAA GAAGATGAAG GAACTTACAA ATGTGCTGCC
    TACAACCCTG TGACGCAAGA AGTGAAAACC TCTGTCTCCA GTGAGAGGCT CCGTGTGCGA
    CGCTCCATGG CAGAGGCAGC TCGGATAATC TACCCCACAG AGGCTCAGAC CATCATCGTC
    ACCAAGGGTC AAAGCCTCAT CTTGGAATGT GTGGCCAGTG GGATCCCACC TCCACGGGTC
    ACTTGGGCCA AGGATGGCTC CAATGTCTCT GGCTACAACA AGACCCGGTT CTTGCTCAGC
    AACCTCCTGA TTGACACCAC TAATGAGGAG GACTCTGGGA CCTACAGCTG CATGGCGGAC
    AATGGGGTGG GCGAGGCTGG AGCTGCATTC ATATTCTACA ATGTTCAGGT GTTCGAACCT
    CCCGAGGTCA CCATGGAGCT GTCCCAACAG ATCATCCCCT GGGGTCAGAG CGCAAAGTTC
    ACCTGCGAGG TGCGAGGGAA CCCCCAGCCC TCAGTGATGT GGCTGCGCAA TGCCATGCCC
    CTCTCTTCCA ACCACCGGCT CCGGCTGTCC CGTAGGGCCC TTCGTGTGGT GAGCGTGGGG
    CCAGAAGATG ATGGGATCTA CCAGTGCATG GCTGAGAATG AAGTTGGAAG TGCACAAGCC
    ATGGTGCAGC TGAGGACTGC TCGGCCAGGA GCAACTCTGA ATCCCTGGAG AGACTCCAAG
    CTGAGCTCAG CTCAGCCACC GACACCTTCT ACTGACAATG ATAAAGCCGT ACCACCAAGG
    CCGGGGCCTA CCCCACTGGC CGCTTCTCTC CAGTGCACAA CTAACAGAGA ACAAGTGTCT
    CCAGCAGAGG CCCCCATCAT CCTGAGCTCT CCCAGGACAT CCAAGACAGA CTGTTATGAG
    CTAGTTTGGA GACCCCGGCA TGACAGCAGG GCCCCCATCC TCTACTATGT TGTGAAGCAT
    CGCAAGGTTA TGAACTCTTC AGACAACTGG ACAGTCAGGG ACATTCCAGC TACACAGCAC
    CGCCTGATCT TGACTAAACT GGATCCTGGG AGCTTGTATG AAGTGGAGAT GGCAGCTTAT
    AACTGTGCCG GGGAGGGGCA GACAGCCATG GTGACATTCA GGACAGGTCG ACGACCAAAA
    CCCGAGATTG TCGCCAGTAA AGAGCAGCTG GTCCAGAGAG ATGACCCAGG CACGAGCACA
    CAGAGCAGCA ACCAAGCAGA TAACAGCCGG CTGTCTCCTC CGGAGGCACC AGACCGTCCC
    ACTATATCCA TGGCATCAGA GACATCTGTC TACGTGACCT GGATCCCCCG TGGAAATGGA
    GGTTTCCCCA TCCAGTCATT CCGAGTGGAG TACAAGAAAC TGAAGAAGCC TGGAGACTGG
    GTGCTGGCCA CCAATGACAT CCCTCCCTCT CGCCTCTCAG TGGAGATCAC AGGCCTGGAG
    AAAGGCACCT CCTATAAGTT CCGTGTTCGG GCTCTGAACA TACTGGGGGA GAGTGAACCC
    AGTGCTGCCT CTAGGCCCTA TGTGGTGTCA GGCTTCAGTA ACCGTGTGTA TGAACGCCCC
    GTTGCCGGAC CTTACATCAC CTTTACTGAT GCCATCAATG AGACCACCAT CATGCTAAAG
    TGGATGTACA TCCCAGCCAG TAACAACAAC ACCCCGATCC ACGGCTTTTA CATCTACTAC
    CGCCCCACTG ACAGTGACAA CGACAGTGAC TACAAGAAGG ACGTAGTGGA AGGTGATCGG
    TACTGGCACT CCATCAGCCA CTTGCAGCCA GAGACTTCAT ACGACATTAA GATGCAGTGC
    TTCAATGAGG GTGGTGAAAG TGAATTCAGC AATGTGATGA TTTGTGAAAC CAAAGCTCGT
    AAGTCCCTTG GGCTGCCCGG TCGCCTGCCA CCCCCAACAG TGCCCCCACA GCAGCGCCCA
    CCAGTCGGCA GTGGGCAAAG TGGCCTGGGG ACAGGGGCCA TGGTGGCCCG CTCCAGCGAC
    CTGCCGTACC TGATCGTAGG GGTAGTGCTG GGCTCCATCG TGCTCATCAT CGTGGCCTTT
    ATCCCCTTCT GCCTTTGGAG AGCCTGGTCC AAACAGAAGC AGACCATAGA CATGGGCTTC
    CCTGGAGCTG GGCTGTTGGT GTCTTCCTGC CAATATACCA TGGTACCCCT GCGAGGGGTC
    TCTGCTCCTC GAGCCAGTGG GCAGCCCTAT GCCAATGGGG TGCACCTGAA TGGCAGCTAT
    CCCTCAGCAG GGATAGGCTA CCCAAGCACA AAGCCCCGGG ACTACTGTCC GGATGAAGTT
    CATCAGGATG AGACCAACAC CTTGCTGCAG GAAAGGGTGA TGCAAAATGG CAACCTCCAG
    CAAGATTATC AGAGCTCCAG GTTGCCCAAT TCCAGACAGG AAGAACATTC TTTCTTCTAC
    AGCCTCCCAG GTGATTCCAC TCATCAGCTG CTCCAGCCGC ACGATGACTG CCATCACCTG
    CAGGAACAAC TCGTTGGCCT CCATCGCCCA GTGATGGGAA CCAAGGTGCG AGGCCTTGGC
    CTGGAAGCCA GGAGGGACCC CATGTTCCAC ACAGGTGCCC CATGCTGCCT GGGCCTGGTG
    CCAGTTGAAG AAGTAGAAAG GACAGGCTGC TGCCAGGCCA GAGGAGACCT ACATGTCCAG
    AACCCAGCAA TCACTTGCCT GACCCAGGAC CCAAGAAGGC ATCTGTGCAG CAGCCCTCCT
    GCACATATGC CCATAGAGAC TCCTCCTCCC ACCAGTTAG

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

    RefSeq XP_019331707.1
    CDS16..3414
    Translation

    Target ORF information:

    RefSeq Version XM_019476162.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019476162.1

    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
    ATGCAACACA GCTACCCTCG AGCAGCGCTA GGGCACCGCA GGAAGCCACA GCACCTCCTT 
    GAGTCTTCTG AGGCAACTTA TGGGAACCCT GCCTGGGCCC TTCTGCTCCA GGCTACGCTG
    CATGGGATGA CAATGACACC TGGAAGGAAG AGACCAGTGG CCACCATCCC CTGCCTTATC
    CTAGCAGCTG CTAGTTGCTT TGCTAATTTA GGTGAGTCTC TACAAGTCAC CGTCCAACCT
    GCCTCCATTG TCCAAAAATA TGGTGGCGTG GTGAGTCTGG GTTGTGTGGC AAACCCCACA
    AGAGTGAACG TTACCTGGAG ACTGAATGGG AAGGAGCTGA CGGAGTCAGA TGAGGTGCTG
    GGGATTCACA CCGAGCCAGG GAAACTCATC ATCCTTGCTC TCAACAACCA CACCGTAGGC
    CGGTATCAGT GTATTGCTCG TGTACCTGAG GGGGTTGTGG CCAGTGTCCC AGCCACAGTG
    ACGTTAGCCA ATCTCAAAGA CTTCAAATTT GATGGCCAGC ATGTGATTGA AGTGGATGAA
    GGCAACACTG CCGTCATTGC TTGTGACCTG CCTGAAAGCC ATCCAAAGGC CCTGGTGCGC
    TACAGTGTGA AACATGAGTG GCTAGAGTCC TCCAGAGACA ACTACTTGAT TATGCCATCT
    GGGAATCTTC AGATAGTCAA TGCCAGTCAA GAAGATGAAG GAACTTACAA ATGTGCTGCC
    TACAACCCTG TGACGCAAGA AGTGAAAACC TCTGTCTCCA GTGAGAGGCT CCGTGTGCGA
    CGCTCCATGG CAGAGGCAGC TCGGATAATC TACCCCACAG AGGCTCAGAC CATCATCGTC
    ACCAAGGGTC AAAGCCTCAT CTTGGAATGT GTGGCCAGTG GGATCCCACC TCCACGGGTC
    ACTTGGGCCA AGGATGGCTC CAATGTCTCT GGCTACAACA AGACCCGGTT CTTGCTCAGC
    AACCTCCTGA TTGACACCAC TAATGAGGAG GACTCTGGGA CCTACAGCTG CATGGCGGAC
    AATGGGGTGG GCGAGGCTGG AGCTGCATTC ATATTCTACA ATGTTCAGGT GTTCGAACCT
    CCCGAGGTCA CCATGGAGCT GTCCCAACAG ATCATCCCCT GGGGTCAGAG CGCAAAGTTC
    ACCTGCGAGG TGCGAGGGAA CCCCCAGCCC TCAGTGATGT GGCTGCGCAA TGCCATGCCC
    CTCTCTTCCA ACCACCGGCT CCGGCTGTCC CGTAGGGCCC TTCGTGTGGT GAGCGTGGGG
    CCAGAAGATG ATGGGATCTA CCAGTGCATG GCTGAGAATG AAGTTGGAAG TGCACAAGCC
    ATGGTGCAGC TGAGGACTGC TCGGCCAGGA GCAACTCTGA ATCCCTGGAG AGACTCCAAG
    CTGAGCTCAG CTCAGCCACC GACACCTTCT ACTGACAATG ATAAAGCCGT ACCACCAAGG
    CCGGGGCCTA CCCCACTGGC CGCTTCTCTC CAGTGCACAA CTAACAGAGA ACAAGTGTCT
    CCAGCAGAGG CCCCCATCAT CCTGAGCTCT CCCAGGACAT CCAAGACAGA CTGTTATGAG
    CTAGTTTGGA GACCCCGGCA TGACAGCAGG GCCCCCATCC TCTACTATGT TGTGAAGCAT
    CGCAAGGTTA TGAACTCTTC AGACAACTGG ACAGTCAGGG ACATTCCAGC TACACAGCAC
    CGCCTGATCT TGACTAAACT GGATCCTGGG AGCTTGTATG AAGTGGAGAT GGCAGCTTAT
    AACTGTGCCG GGGAGGGGCA GACAGCCATG GTGACATTCA GGACAGGTCG ACGACCAAAA
    CCCGAGATTG TCGCCAGTAA AGAGCAGCTG GTCCAGAGAG ATGACCCAGG CACGAGCACA
    CAGAGCAGCA ACCAAGCAGA TAACAGCCGG CTGTCTCCTC CGGAGGCACC AGACCGTCCC
    ACTATATCCA TGGCATCAGA GACATCTGTC TACGTGACCT GGATCCCCCG TGGAAATGGA
    GGTTTCCCCA TCCAGTCATT CCGAGTGGAG TACAAGAAAC TGAAGAAGCC TGGAGACTGG
    GTGCTGGCCA CCAATGACAT CCCTCCCTCT CGCCTCTCAG TGGAGATCAC AGGCCTGGAG
    AAAGGCACCT CCTATAAGTT CCGTGTTCGG GCTCTGAACA TACTGGGGGA GAGTGAACCC
    AGTGCTGCCT CTAGGCCCTA TGTGGTGTCA GGCTTCAGTA ACCGTGTGTA TGAACGCCCC
    GTTGCCGGAC CTTACATCAC CTTTACTGAT GCCATCAATG AGACCACCAT CATGCTAAAG
    TGGATGTACA TCCCAGCCAG TAACAACAAC ACCCCGATCC ACGGCTTTTA CATCTACTAC
    CGCCCCACTG ACAGTGACAA CGACAGTGAC TACAAGAAGG ACGTAGTGGA AGGTGATCGG
    TACTGGCACT CCATCAGCCA CTTGCAGCCA GAGACTTCAT ACGACATTAA GATGCAGTGC
    TTCAATGAGG GTGGTGAAAG TGAATTCAGC AATGTGATGA TTTGTGAAAC CAAAGCTCGT
    AAGTCCCTTG GGCTGCCCGG TCGCCTGCCA CCCCCAACAG TGCCCCCACA GCAGCGCCCA
    CCAGTCGGCA GTGGGCAAAG TGGCCTGGGG ACAGGGGCCA TGGTGGCCCG CTCCAGCGAC
    CTGCCGTACC TGATCGTAGG GGTAGTGCTG GGCTCCATCG TGCTCATCAT CGTGGCCTTT
    ATCCCCTTCT GCCTTTGGAG AGCCTGGTCC AAACAGAAGC AGACCATAGA CATGGGCTTC
    CCTGGAGCTG GGCTGTTGGT GTCTTCCTGC CAATATACCA TGGTACCCCT GCGAGGGGTC
    TCTGCTCCTC GAGCCAGTGG GCAGCCCTAT GCCAATGGGG TGCACCTGAA TGGCAGCTAT
    CCCTCAGCAG GGATAGGCTA CCCAAGCACA AAGCCCCGGG ACTACTGTCC GGATGAAGTT
    CATCAGGATG AGACCAACAC CTTGCTGCAG GAAAGGGTGA TGCAAAATGG CAACCTCCAG
    CAAGATTATC AGAGCTCCAG GTTGCCCAAT TCCAGACAGG AAGAACATTC TTTCTTCTAC
    AGCCTCCCAG GTGATTCCAC TCATCAGCTG CTCCAGCCGC ACGATGACTG CCATCACCTG
    CAGGAACAAC TCGTTGGCCT CCATCGCCCA GTGATGGGAA CCAAGGTGCG AGGCCTTGGC
    CTGGAAGCCA GGAGGGACCC CATGTTCCAC ACAGGTGCCC CATGCTGCCT GGGCCTGGTG
    CCAGTTGAAG AAGTAGAAAG GACAGGCTGC TGCCAGGCCA GAGGAGACCT ACATGTCCAG
    AACCCAGCAA TCACTTGCCT GACCCAGGAC CCAAGAAGGC ATCTGTGCAG CAGCCCTCCT
    GCACATATGC CCATAGAGAC TCCTCCTCCC ACCAGTTAG

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

    CloneID OAl73679
    Clone ID Related Accession (Same CDS sequence) XM_006259427.3 , XM_014603968.2 , XM_019476164.1
    Accession Version XM_006259427.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3273bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product brother of CDO isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017713645.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 9, 2016 this sequence version replaced XM_006259427.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGACAATGA CACCTGGAAG GAAGAGACCA GTGGCCACCA TCCCCTGCCT TATCCTAGCA 
    GCTGCTAGTT GCTTTGCTAA TTTAGGTGAG TCTCTACAAG TCACCGTCCA ACCTGCCTCC
    ATTGTCCAAA AATATGGTGG CGTGGTGAGT CTGGGTTGTG TGGCAAACCC CACAAGAGTG
    AACGTTACCT GGAGACTGAA TGGGAAGGAG CTGACGGAGT CAGATGAGGT GCTGGGGATT
    CACACCGAGC CAGGGAAACT CATCATCCTT GCTCTCAACA ACCACACCGT AGGCCGGTAT
    CAGTGTATTG CTCGTGTACC TGAGGGGGTT GTGGCCAGTG TCCCAGCCAC AGTGACGTTA
    GCCAATCTCA AAGACTTCAA ATTTGATGGC CAGCATGTGA TTGAAGTGGA TGAAGGCAAC
    ACTGCCGTCA TTGCTTGTGA CCTGCCTGAA AGCCATCCAA AGGCCCTGGT GCGCTACAGT
    GTGAAACATG AGTGGCTAGA GTCCTCCAGA GACAACTACT TGATTATGCC ATCTGGGAAT
    CTTCAGATAG TCAATGCCAG TCAAGAAGAT GAAGGAACTT ACAAATGTGC TGCCTACAAC
    CCTGTGACGC AAGAAGTGAA AACCTCTGTC TCCAGTGAGA GGCTCCGTGT GCGACGCTCC
    ATGGCAGAGG CAGCTCGGAT AATCTACCCC ACAGAGGCTC AGACCATCAT CGTCACCAAG
    GGTCAAAGCC TCATCTTGGA ATGTGTGGCC AGTGGGATCC CACCTCCACG GGTCACTTGG
    GCCAAGGATG GCTCCAATGT CTCTGGCTAC AACAAGACCC GGTTCTTGCT CAGCAACCTC
    CTGATTGACA CCACTAATGA GGAGGACTCT GGGACCTACA GCTGCATGGC GGACAATGGG
    GTGGGCGAGG CTGGAGCTGC ATTCATATTC TACAATGTTC AGGTGTTCGA ACCTCCCGAG
    GTCACCATGG AGCTGTCCCA ACAGATCATC CCCTGGGGTC AGAGCGCAAA GTTCACCTGC
    GAGGTGCGAG GGAACCCCCA GCCCTCAGTG ATGTGGCTGC GCAATGCCAT GCCCCTCTCT
    TCCAACCACC GGCTCCGGCT GTCCCGTAGG GCCCTTCGTG TGGTGAGCGT GGGGCCAGAA
    GATGATGGGA TCTACCAGTG CATGGCTGAG AATGAAGTTG GAAGTGCACA AGCCATGGTG
    CAGCTGAGGA CTGCTCGGCC AGGAGCAACT CTGAATCCCT GGAGAGACTC CAAGCTGAGC
    TCAGCTCAGC CACCGACACC TTCTACTGAC AATGATAAAG CCGTACCACC AAGGCCGGGG
    CCTACCCCAC TGGCCGCTTC TCTCCAGTGC ACAACTAACA GAGAACAAGT GTCTCCAGCA
    GAGGCCCCCA TCATCCTGAG CTCTCCCAGG ACATCCAAGA CAGACTGTTA TGAGCTAGTT
    TGGAGACCCC GGCATGACAG CAGGGCCCCC ATCCTCTACT ATGTTGTGAA GCATCGCAAG
    GTTATGAACT CTTCAGACAA CTGGACAGTC AGGGACATTC CAGCTACACA GCACCGCCTG
    ATCTTGACTA AACTGGATCC TGGGAGCTTG TATGAAGTGG AGATGGCAGC TTATAACTGT
    GCCGGGGAGG GGCAGACAGC CATGGTGACA TTCAGGACAG GTCGACGACC AAAACCCGAG
    ATTGTCGCCA GTAAAGAGCA GCTGGTCCAG AGAGATGACC CAGGCACGAG CACACAGAGC
    AGCAACCAAG CAGATAACAG CCGGCTGTCT CCTCCGGAGG CACCAGACCG TCCCACTATA
    TCCATGGCAT CAGAGACATC TGTCTACGTG ACCTGGATCC CCCGTGGAAA TGGAGGTTTC
    CCCATCCAGT CATTCCGAGT GGAGTACAAG AAACTGAAGA AGCCTGGAGA CTGGGTGCTG
    GCCACCAATG ACATCCCTCC CTCTCGCCTC TCAGTGGAGA TCACAGGCCT GGAGAAAGGC
    ACCTCCTATA AGTTCCGTGT TCGGGCTCTG AACATACTGG GGGAGAGTGA ACCCAGTGCT
    GCCTCTAGGC CCTATGTGGT GTCAGGCTTC AGTAACCGTG TGTATGAACG CCCCGTTGCC
    GGACCTTACA TCACCTTTAC TGATGCCATC AATGAGACCA CCATCATGCT AAAGTGGATG
    TACATCCCAG CCAGTAACAA CAACACCCCG ATCCACGGCT TTTACATCTA CTACCGCCCC
    ACTGACAGTG ACAACGACAG TGACTACAAG AAGGACGTAG TGGAAGGTGA TCGGTACTGG
    CACTCCATCA GCCACTTGCA GCCAGAGACT TCATACGACA TTAAGATGCA GTGCTTCAAT
    GAGGGTGGTG AAAGTGAATT CAGCAATGTG ATGATTTGTG AAACCAAAGC TCGTAAGTCC
    CTTGGGCTGC CCGGTCGCCT GCCACCCCCA ACAGTGCCCC CACAGCAGCG CCCACCAGTC
    GGCAGTGGGC AAAGTGGCCT GGGGACAGGG GCCATGGTGG CCCGCTCCAG CGACCTGCCG
    TACCTGATCG TAGGGGTAGT GCTGGGCTCC ATCGTGCTCA TCATCGTGGC CTTTATCCCC
    TTCTGCCTTT GGAGAGCCTG GTCCAAACAG AAGCAGACCA TAGACATGGG CTTCCCTGGA
    GCTGGGCTGT TGGTGTCTTC CTGCCAATAT ACCATGGTAC CCCTGCGAGG GGTCTCTGCT
    CCTCGAGCCA GTGGGCAGCC CTATGCCAAT GGGGTGCACC TGAATGGCAG CTATCCCTCA
    GCAGGGATAG GCTACCCAAG CACAAAGCCC CGGGACTACT GTCCGGATGA AGTTCATCAG
    GATGAGACCA ACACCTTGCT GCAGGAAAGG GTGATGCAAA ATGGCAACCT CCAGCAAGAT
    TATCAGAGCT CCAGGTTGCC CAATTCCAGA CAGGAAGAAC ATTCTTTCTT CTACAGCCTC
    CCAGGTGATT CCACTCATCA GCTGCTCCAG CCGCACGATG ACTGCCATCA CCTGCAGGAA
    CAACTCGTTG GCCTCCATCG CCCAGTGATG GGAACCAAGG TGCGAGGCCT TGGCCTGGAA
    GCCAGGAGGG ACCCCATGTT CCACACAGGT GCCCCATGCT GCCTGGGCCT GGTGCCAGTT
    GAAGAAGTAG AAAGGACAGG CTGCTGCCAG GCCAGAGGAG ACCTACATGT CCAGAACCCA
    GCAATCACTT GCCTGACCCA GGACCCAAGA AGGCATCTGT GCAGCAGCCC TCCTGCACAT
    ATGCCCATAG AGACTCCTCC TCCCACCAGT TAG

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

    RefSeq XP_006259489.1
    CDS453..3725
    Translation

    Target ORF information:

    RefSeq Version XM_006259427.3
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006259427.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGACAATGA CACCTGGAAG GAAGAGACCA GTGGCCACCA TCCCCTGCCT TATCCTAGCA 
    GCTGCTAGTT GCTTTGCTAA TTTAGGTGAG TCTCTACAAG TCACCGTCCA ACCTGCCTCC
    ATTGTCCAAA AATATGGTGG CGTGGTGAGT CTGGGTTGTG TGGCAAACCC CACAAGAGTG
    AACGTTACCT GGAGACTGAA TGGGAAGGAG CTGACGGAGT CAGATGAGGT GCTGGGGATT
    CACACCGAGC CAGGGAAACT CATCATCCTT GCTCTCAACA ACCACACCGT AGGCCGGTAT
    CAGTGTATTG CTCGTGTACC TGAGGGGGTT GTGGCCAGTG TCCCAGCCAC AGTGACGTTA
    GCCAATCTCA AAGACTTCAA ATTTGATGGC CAGCATGTGA TTGAAGTGGA TGAAGGCAAC
    ACTGCCGTCA TTGCTTGTGA CCTGCCTGAA AGCCATCCAA AGGCCCTGGT GCGCTACAGT
    GTGAAACATG AGTGGCTAGA GTCCTCCAGA GACAACTACT TGATTATGCC ATCTGGGAAT
    CTTCAGATAG TCAATGCCAG TCAAGAAGAT GAAGGAACTT ACAAATGTGC TGCCTACAAC
    CCTGTGACGC AAGAAGTGAA AACCTCTGTC TCCAGTGAGA GGCTCCGTGT GCGACGCTCC
    ATGGCAGAGG CAGCTCGGAT AATCTACCCC ACAGAGGCTC AGACCATCAT CGTCACCAAG
    GGTCAAAGCC TCATCTTGGA ATGTGTGGCC AGTGGGATCC CACCTCCACG GGTCACTTGG
    GCCAAGGATG GCTCCAATGT CTCTGGCTAC AACAAGACCC GGTTCTTGCT CAGCAACCTC
    CTGATTGACA CCACTAATGA GGAGGACTCT GGGACCTACA GCTGCATGGC GGACAATGGG
    GTGGGCGAGG CTGGAGCTGC ATTCATATTC TACAATGTTC AGGTGTTCGA ACCTCCCGAG
    GTCACCATGG AGCTGTCCCA ACAGATCATC CCCTGGGGTC AGAGCGCAAA GTTCACCTGC
    GAGGTGCGAG GGAACCCCCA GCCCTCAGTG ATGTGGCTGC GCAATGCCAT GCCCCTCTCT
    TCCAACCACC GGCTCCGGCT GTCCCGTAGG GCCCTTCGTG TGGTGAGCGT GGGGCCAGAA
    GATGATGGGA TCTACCAGTG CATGGCTGAG AATGAAGTTG GAAGTGCACA AGCCATGGTG
    CAGCTGAGGA CTGCTCGGCC AGGAGCAACT CTGAATCCCT GGAGAGACTC CAAGCTGAGC
    TCAGCTCAGC CACCGACACC TTCTACTGAC AATGATAAAG CCGTACCACC AAGGCCGGGG
    CCTACCCCAC TGGCCGCTTC TCTCCAGTGC ACAACTAACA GAGAACAAGT GTCTCCAGCA
    GAGGCCCCCA TCATCCTGAG CTCTCCCAGG ACATCCAAGA CAGACTGTTA TGAGCTAGTT
    TGGAGACCCC GGCATGACAG CAGGGCCCCC ATCCTCTACT ATGTTGTGAA GCATCGCAAG
    GTTATGAACT CTTCAGACAA CTGGACAGTC AGGGACATTC CAGCTACACA GCACCGCCTG
    ATCTTGACTA AACTGGATCC TGGGAGCTTG TATGAAGTGG AGATGGCAGC TTATAACTGT
    GCCGGGGAGG GGCAGACAGC CATGGTGACA TTCAGGACAG GTCGACGACC AAAACCCGAG
    ATTGTCGCCA GTAAAGAGCA GCTGGTCCAG AGAGATGACC CAGGCACGAG CACACAGAGC
    AGCAACCAAG CAGATAACAG CCGGCTGTCT CCTCCGGAGG CACCAGACCG TCCCACTATA
    TCCATGGCAT CAGAGACATC TGTCTACGTG ACCTGGATCC CCCGTGGAAA TGGAGGTTTC
    CCCATCCAGT CATTCCGAGT GGAGTACAAG AAACTGAAGA AGCCTGGAGA CTGGGTGCTG
    GCCACCAATG ACATCCCTCC CTCTCGCCTC TCAGTGGAGA TCACAGGCCT GGAGAAAGGC
    ACCTCCTATA AGTTCCGTGT TCGGGCTCTG AACATACTGG GGGAGAGTGA ACCCAGTGCT
    GCCTCTAGGC CCTATGTGGT GTCAGGCTTC AGTAACCGTG TGTATGAACG CCCCGTTGCC
    GGACCTTACA TCACCTTTAC TGATGCCATC AATGAGACCA CCATCATGCT AAAGTGGATG
    TACATCCCAG CCAGTAACAA CAACACCCCG ATCCACGGCT TTTACATCTA CTACCGCCCC
    ACTGACAGTG ACAACGACAG TGACTACAAG AAGGACGTAG TGGAAGGTGA TCGGTACTGG
    CACTCCATCA GCCACTTGCA GCCAGAGACT TCATACGACA TTAAGATGCA GTGCTTCAAT
    GAGGGTGGTG AAAGTGAATT CAGCAATGTG ATGATTTGTG AAACCAAAGC TCGTAAGTCC
    CTTGGGCTGC CCGGTCGCCT GCCACCCCCA ACAGTGCCCC CACAGCAGCG CCCACCAGTC
    GGCAGTGGGC AAAGTGGCCT GGGGACAGGG GCCATGGTGG CCCGCTCCAG CGACCTGCCG
    TACCTGATCG TAGGGGTAGT GCTGGGCTCC ATCGTGCTCA TCATCGTGGC CTTTATCCCC
    TTCTGCCTTT GGAGAGCCTG GTCCAAACAG AAGCAGACCA TAGACATGGG CTTCCCTGGA
    GCTGGGCTGT TGGTGTCTTC CTGCCAATAT ACCATGGTAC CCCTGCGAGG GGTCTCTGCT
    CCTCGAGCCA GTGGGCAGCC CTATGCCAAT GGGGTGCACC TGAATGGCAG CTATCCCTCA
    GCAGGGATAG GCTACCCAAG CACAAAGCCC CGGGACTACT GTCCGGATGA AGTTCATCAG
    GATGAGACCA ACACCTTGCT GCAGGAAAGG GTGATGCAAA ATGGCAACCT CCAGCAAGAT
    TATCAGAGCT CCAGGTTGCC CAATTCCAGA CAGGAAGAAC ATTCTTTCTT CTACAGCCTC
    CCAGGTGATT CCACTCATCA GCTGCTCCAG CCGCACGATG ACTGCCATCA CCTGCAGGAA
    CAACTCGTTG GCCTCCATCG CCCAGTGATG GGAACCAAGG TGCGAGGCCT TGGCCTGGAA
    GCCAGGAGGG ACCCCATGTT CCACACAGGT GCCCCATGCT GCCTGGGCCT GGTGCCAGTT
    GAAGAAGTAG AAAGGACAGG CTGCTGCCAG GCCAGAGGAG ACCTACATGT CCAGAACCCA
    GCAATCACTT GCCTGACCCA GGACCCAAGA AGGCATCTGT GCAGCAGCCC TCCTGCACAT
    ATGCCCATAG AGACTCCTCC TCCCACCAGT TAG

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

    CloneID OAl73679
    Clone ID Related Accession (Same CDS sequence) XM_006259427.3 , XM_014603968.2 , XM_019476164.1
    Accession Version XM_014603968.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3273bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product brother of CDO isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017713645.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 9, 2016 this sequence version replaced XM_014603968.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGACAATGA CACCTGGAAG GAAGAGACCA GTGGCCACCA TCCCCTGCCT TATCCTAGCA 
    GCTGCTAGTT GCTTTGCTAA TTTAGGTGAG TCTCTACAAG TCACCGTCCA ACCTGCCTCC
    ATTGTCCAAA AATATGGTGG CGTGGTGAGT CTGGGTTGTG TGGCAAACCC CACAAGAGTG
    AACGTTACCT GGAGACTGAA TGGGAAGGAG CTGACGGAGT CAGATGAGGT GCTGGGGATT
    CACACCGAGC CAGGGAAACT CATCATCCTT GCTCTCAACA ACCACACCGT AGGCCGGTAT
    CAGTGTATTG CTCGTGTACC TGAGGGGGTT GTGGCCAGTG TCCCAGCCAC AGTGACGTTA
    GCCAATCTCA AAGACTTCAA ATTTGATGGC CAGCATGTGA TTGAAGTGGA TGAAGGCAAC
    ACTGCCGTCA TTGCTTGTGA CCTGCCTGAA AGCCATCCAA AGGCCCTGGT GCGCTACAGT
    GTGAAACATG AGTGGCTAGA GTCCTCCAGA GACAACTACT TGATTATGCC ATCTGGGAAT
    CTTCAGATAG TCAATGCCAG TCAAGAAGAT GAAGGAACTT ACAAATGTGC TGCCTACAAC
    CCTGTGACGC AAGAAGTGAA AACCTCTGTC TCCAGTGAGA GGCTCCGTGT GCGACGCTCC
    ATGGCAGAGG CAGCTCGGAT AATCTACCCC ACAGAGGCTC AGACCATCAT CGTCACCAAG
    GGTCAAAGCC TCATCTTGGA ATGTGTGGCC AGTGGGATCC CACCTCCACG GGTCACTTGG
    GCCAAGGATG GCTCCAATGT CTCTGGCTAC AACAAGACCC GGTTCTTGCT CAGCAACCTC
    CTGATTGACA CCACTAATGA GGAGGACTCT GGGACCTACA GCTGCATGGC GGACAATGGG
    GTGGGCGAGG CTGGAGCTGC ATTCATATTC TACAATGTTC AGGTGTTCGA ACCTCCCGAG
    GTCACCATGG AGCTGTCCCA ACAGATCATC CCCTGGGGTC AGAGCGCAAA GTTCACCTGC
    GAGGTGCGAG GGAACCCCCA GCCCTCAGTG ATGTGGCTGC GCAATGCCAT GCCCCTCTCT
    TCCAACCACC GGCTCCGGCT GTCCCGTAGG GCCCTTCGTG TGGTGAGCGT GGGGCCAGAA
    GATGATGGGA TCTACCAGTG CATGGCTGAG AATGAAGTTG GAAGTGCACA AGCCATGGTG
    CAGCTGAGGA CTGCTCGGCC AGGAGCAACT CTGAATCCCT GGAGAGACTC CAAGCTGAGC
    TCAGCTCAGC CACCGACACC TTCTACTGAC AATGATAAAG CCGTACCACC AAGGCCGGGG
    CCTACCCCAC TGGCCGCTTC TCTCCAGTGC ACAACTAACA GAGAACAAGT GTCTCCAGCA
    GAGGCCCCCA TCATCCTGAG CTCTCCCAGG ACATCCAAGA CAGACTGTTA TGAGCTAGTT
    TGGAGACCCC GGCATGACAG CAGGGCCCCC ATCCTCTACT ATGTTGTGAA GCATCGCAAG
    GTTATGAACT CTTCAGACAA CTGGACAGTC AGGGACATTC CAGCTACACA GCACCGCCTG
    ATCTTGACTA AACTGGATCC TGGGAGCTTG TATGAAGTGG AGATGGCAGC TTATAACTGT
    GCCGGGGAGG GGCAGACAGC CATGGTGACA TTCAGGACAG GTCGACGACC AAAACCCGAG
    ATTGTCGCCA GTAAAGAGCA GCTGGTCCAG AGAGATGACC CAGGCACGAG CACACAGAGC
    AGCAACCAAG CAGATAACAG CCGGCTGTCT CCTCCGGAGG CACCAGACCG TCCCACTATA
    TCCATGGCAT CAGAGACATC TGTCTACGTG ACCTGGATCC CCCGTGGAAA TGGAGGTTTC
    CCCATCCAGT CATTCCGAGT GGAGTACAAG AAACTGAAGA AGCCTGGAGA CTGGGTGCTG
    GCCACCAATG ACATCCCTCC CTCTCGCCTC TCAGTGGAGA TCACAGGCCT GGAGAAAGGC
    ACCTCCTATA AGTTCCGTGT TCGGGCTCTG AACATACTGG GGGAGAGTGA ACCCAGTGCT
    GCCTCTAGGC CCTATGTGGT GTCAGGCTTC AGTAACCGTG TGTATGAACG CCCCGTTGCC
    GGACCTTACA TCACCTTTAC TGATGCCATC AATGAGACCA CCATCATGCT AAAGTGGATG
    TACATCCCAG CCAGTAACAA CAACACCCCG ATCCACGGCT TTTACATCTA CTACCGCCCC
    ACTGACAGTG ACAACGACAG TGACTACAAG AAGGACGTAG TGGAAGGTGA TCGGTACTGG
    CACTCCATCA GCCACTTGCA GCCAGAGACT TCATACGACA TTAAGATGCA GTGCTTCAAT
    GAGGGTGGTG AAAGTGAATT CAGCAATGTG ATGATTTGTG AAACCAAAGC TCGTAAGTCC
    CTTGGGCTGC CCGGTCGCCT GCCACCCCCA ACAGTGCCCC CACAGCAGCG CCCACCAGTC
    GGCAGTGGGC AAAGTGGCCT GGGGACAGGG GCCATGGTGG CCCGCTCCAG CGACCTGCCG
    TACCTGATCG TAGGGGTAGT GCTGGGCTCC ATCGTGCTCA TCATCGTGGC CTTTATCCCC
    TTCTGCCTTT GGAGAGCCTG GTCCAAACAG AAGCAGACCA TAGACATGGG CTTCCCTGGA
    GCTGGGCTGT TGGTGTCTTC CTGCCAATAT ACCATGGTAC CCCTGCGAGG GGTCTCTGCT
    CCTCGAGCCA GTGGGCAGCC CTATGCCAAT GGGGTGCACC TGAATGGCAG CTATCCCTCA
    GCAGGGATAG GCTACCCAAG CACAAAGCCC CGGGACTACT GTCCGGATGA AGTTCATCAG
    GATGAGACCA ACACCTTGCT GCAGGAAAGG GTGATGCAAA ATGGCAACCT CCAGCAAGAT
    TATCAGAGCT CCAGGTTGCC CAATTCCAGA CAGGAAGAAC ATTCTTTCTT CTACAGCCTC
    CCAGGTGATT CCACTCATCA GCTGCTCCAG CCGCACGATG ACTGCCATCA CCTGCAGGAA
    CAACTCGTTG GCCTCCATCG CCCAGTGATG GGAACCAAGG TGCGAGGCCT TGGCCTGGAA
    GCCAGGAGGG ACCCCATGTT CCACACAGGT GCCCCATGCT GCCTGGGCCT GGTGCCAGTT
    GAAGAAGTAG AAAGGACAGG CTGCTGCCAG GCCAGAGGAG ACCTACATGT CCAGAACCCA
    GCAATCACTT GCCTGACCCA GGACCCAAGA AGGCATCTGT GCAGCAGCCC TCCTGCACAT
    ATGCCCATAG AGACTCCTCC TCCCACCAGT TAG

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

    RefSeq XP_014459454.1
    CDS703..3975
    Translation

    Target ORF information:

    RefSeq Version XM_014603968.2
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014603968.2

    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
    ATGACAATGA CACCTGGAAG GAAGAGACCA GTGGCCACCA TCCCCTGCCT TATCCTAGCA 
    GCTGCTAGTT GCTTTGCTAA TTTAGGTGAG TCTCTACAAG TCACCGTCCA ACCTGCCTCC
    ATTGTCCAAA AATATGGTGG CGTGGTGAGT CTGGGTTGTG TGGCAAACCC CACAAGAGTG
    AACGTTACCT GGAGACTGAA TGGGAAGGAG CTGACGGAGT CAGATGAGGT GCTGGGGATT
    CACACCGAGC CAGGGAAACT CATCATCCTT GCTCTCAACA ACCACACCGT AGGCCGGTAT
    CAGTGTATTG CTCGTGTACC TGAGGGGGTT GTGGCCAGTG TCCCAGCCAC AGTGACGTTA
    GCCAATCTCA AAGACTTCAA ATTTGATGGC CAGCATGTGA TTGAAGTGGA TGAAGGCAAC
    ACTGCCGTCA TTGCTTGTGA CCTGCCTGAA AGCCATCCAA AGGCCCTGGT GCGCTACAGT
    GTGAAACATG AGTGGCTAGA GTCCTCCAGA GACAACTACT TGATTATGCC ATCTGGGAAT
    CTTCAGATAG TCAATGCCAG TCAAGAAGAT GAAGGAACTT ACAAATGTGC TGCCTACAAC
    CCTGTGACGC AAGAAGTGAA AACCTCTGTC TCCAGTGAGA GGCTCCGTGT GCGACGCTCC
    ATGGCAGAGG CAGCTCGGAT AATCTACCCC ACAGAGGCTC AGACCATCAT CGTCACCAAG
    GGTCAAAGCC TCATCTTGGA ATGTGTGGCC AGTGGGATCC CACCTCCACG GGTCACTTGG
    GCCAAGGATG GCTCCAATGT CTCTGGCTAC AACAAGACCC GGTTCTTGCT CAGCAACCTC
    CTGATTGACA CCACTAATGA GGAGGACTCT GGGACCTACA GCTGCATGGC GGACAATGGG
    GTGGGCGAGG CTGGAGCTGC ATTCATATTC TACAATGTTC AGGTGTTCGA ACCTCCCGAG
    GTCACCATGG AGCTGTCCCA ACAGATCATC CCCTGGGGTC AGAGCGCAAA GTTCACCTGC
    GAGGTGCGAG GGAACCCCCA GCCCTCAGTG ATGTGGCTGC GCAATGCCAT GCCCCTCTCT
    TCCAACCACC GGCTCCGGCT GTCCCGTAGG GCCCTTCGTG TGGTGAGCGT GGGGCCAGAA
    GATGATGGGA TCTACCAGTG CATGGCTGAG AATGAAGTTG GAAGTGCACA AGCCATGGTG
    CAGCTGAGGA CTGCTCGGCC AGGAGCAACT CTGAATCCCT GGAGAGACTC CAAGCTGAGC
    TCAGCTCAGC CACCGACACC TTCTACTGAC AATGATAAAG CCGTACCACC AAGGCCGGGG
    CCTACCCCAC TGGCCGCTTC TCTCCAGTGC ACAACTAACA GAGAACAAGT GTCTCCAGCA
    GAGGCCCCCA TCATCCTGAG CTCTCCCAGG ACATCCAAGA CAGACTGTTA TGAGCTAGTT
    TGGAGACCCC GGCATGACAG CAGGGCCCCC ATCCTCTACT ATGTTGTGAA GCATCGCAAG
    GTTATGAACT CTTCAGACAA CTGGACAGTC AGGGACATTC CAGCTACACA GCACCGCCTG
    ATCTTGACTA AACTGGATCC TGGGAGCTTG TATGAAGTGG AGATGGCAGC TTATAACTGT
    GCCGGGGAGG GGCAGACAGC CATGGTGACA TTCAGGACAG GTCGACGACC AAAACCCGAG
    ATTGTCGCCA GTAAAGAGCA GCTGGTCCAG AGAGATGACC CAGGCACGAG CACACAGAGC
    AGCAACCAAG CAGATAACAG CCGGCTGTCT CCTCCGGAGG CACCAGACCG TCCCACTATA
    TCCATGGCAT CAGAGACATC TGTCTACGTG ACCTGGATCC CCCGTGGAAA TGGAGGTTTC
    CCCATCCAGT CATTCCGAGT GGAGTACAAG AAACTGAAGA AGCCTGGAGA CTGGGTGCTG
    GCCACCAATG ACATCCCTCC CTCTCGCCTC TCAGTGGAGA TCACAGGCCT GGAGAAAGGC
    ACCTCCTATA AGTTCCGTGT TCGGGCTCTG AACATACTGG GGGAGAGTGA ACCCAGTGCT
    GCCTCTAGGC CCTATGTGGT GTCAGGCTTC AGTAACCGTG TGTATGAACG CCCCGTTGCC
    GGACCTTACA TCACCTTTAC TGATGCCATC AATGAGACCA CCATCATGCT AAAGTGGATG
    TACATCCCAG CCAGTAACAA CAACACCCCG ATCCACGGCT TTTACATCTA CTACCGCCCC
    ACTGACAGTG ACAACGACAG TGACTACAAG AAGGACGTAG TGGAAGGTGA TCGGTACTGG
    CACTCCATCA GCCACTTGCA GCCAGAGACT TCATACGACA TTAAGATGCA GTGCTTCAAT
    GAGGGTGGTG AAAGTGAATT CAGCAATGTG ATGATTTGTG AAACCAAAGC TCGTAAGTCC
    CTTGGGCTGC CCGGTCGCCT GCCACCCCCA ACAGTGCCCC CACAGCAGCG CCCACCAGTC
    GGCAGTGGGC AAAGTGGCCT GGGGACAGGG GCCATGGTGG CCCGCTCCAG CGACCTGCCG
    TACCTGATCG TAGGGGTAGT GCTGGGCTCC ATCGTGCTCA TCATCGTGGC CTTTATCCCC
    TTCTGCCTTT GGAGAGCCTG GTCCAAACAG AAGCAGACCA TAGACATGGG CTTCCCTGGA
    GCTGGGCTGT TGGTGTCTTC CTGCCAATAT ACCATGGTAC CCCTGCGAGG GGTCTCTGCT
    CCTCGAGCCA GTGGGCAGCC CTATGCCAAT GGGGTGCACC TGAATGGCAG CTATCCCTCA
    GCAGGGATAG GCTACCCAAG CACAAAGCCC CGGGACTACT GTCCGGATGA AGTTCATCAG
    GATGAGACCA ACACCTTGCT GCAGGAAAGG GTGATGCAAA ATGGCAACCT CCAGCAAGAT
    TATCAGAGCT CCAGGTTGCC CAATTCCAGA CAGGAAGAAC ATTCTTTCTT CTACAGCCTC
    CCAGGTGATT CCACTCATCA GCTGCTCCAG CCGCACGATG ACTGCCATCA CCTGCAGGAA
    CAACTCGTTG GCCTCCATCG CCCAGTGATG GGAACCAAGG TGCGAGGCCT TGGCCTGGAA
    GCCAGGAGGG ACCCCATGTT CCACACAGGT GCCCCATGCT GCCTGGGCCT GGTGCCAGTT
    GAAGAAGTAG AAAGGACAGG CTGCTGCCAG GCCAGAGGAG ACCTACATGT CCAGAACCCA
    GCAATCACTT GCCTGACCCA GGACCCAAGA AGGCATCTGT GCAGCAGCCC TCCTGCACAT
    ATGCCCATAG AGACTCCTCC TCCCACCAGT TAG

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

    CloneID OAl73679
    Clone ID Related Accession (Same CDS sequence) XM_006259427.3 , XM_014603968.2 , XM_019476164.1
    Accession Version XM_019476164.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3273bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product brother of CDO isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017713645.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGACAATGA CACCTGGAAG GAAGAGACCA GTGGCCACCA TCCCCTGCCT TATCCTAGCA 
    GCTGCTAGTT GCTTTGCTAA TTTAGGTGAG TCTCTACAAG TCACCGTCCA ACCTGCCTCC
    ATTGTCCAAA AATATGGTGG CGTGGTGAGT CTGGGTTGTG TGGCAAACCC CACAAGAGTG
    AACGTTACCT GGAGACTGAA TGGGAAGGAG CTGACGGAGT CAGATGAGGT GCTGGGGATT
    CACACCGAGC CAGGGAAACT CATCATCCTT GCTCTCAACA ACCACACCGT AGGCCGGTAT
    CAGTGTATTG CTCGTGTACC TGAGGGGGTT GTGGCCAGTG TCCCAGCCAC AGTGACGTTA
    GCCAATCTCA AAGACTTCAA ATTTGATGGC CAGCATGTGA TTGAAGTGGA TGAAGGCAAC
    ACTGCCGTCA TTGCTTGTGA CCTGCCTGAA AGCCATCCAA AGGCCCTGGT GCGCTACAGT
    GTGAAACATG AGTGGCTAGA GTCCTCCAGA GACAACTACT TGATTATGCC ATCTGGGAAT
    CTTCAGATAG TCAATGCCAG TCAAGAAGAT GAAGGAACTT ACAAATGTGC TGCCTACAAC
    CCTGTGACGC AAGAAGTGAA AACCTCTGTC TCCAGTGAGA GGCTCCGTGT GCGACGCTCC
    ATGGCAGAGG CAGCTCGGAT AATCTACCCC ACAGAGGCTC AGACCATCAT CGTCACCAAG
    GGTCAAAGCC TCATCTTGGA ATGTGTGGCC AGTGGGATCC CACCTCCACG GGTCACTTGG
    GCCAAGGATG GCTCCAATGT CTCTGGCTAC AACAAGACCC GGTTCTTGCT CAGCAACCTC
    CTGATTGACA CCACTAATGA GGAGGACTCT GGGACCTACA GCTGCATGGC GGACAATGGG
    GTGGGCGAGG CTGGAGCTGC ATTCATATTC TACAATGTTC AGGTGTTCGA ACCTCCCGAG
    GTCACCATGG AGCTGTCCCA ACAGATCATC CCCTGGGGTC AGAGCGCAAA GTTCACCTGC
    GAGGTGCGAG GGAACCCCCA GCCCTCAGTG ATGTGGCTGC GCAATGCCAT GCCCCTCTCT
    TCCAACCACC GGCTCCGGCT GTCCCGTAGG GCCCTTCGTG TGGTGAGCGT GGGGCCAGAA
    GATGATGGGA TCTACCAGTG CATGGCTGAG AATGAAGTTG GAAGTGCACA AGCCATGGTG
    CAGCTGAGGA CTGCTCGGCC AGGAGCAACT CTGAATCCCT GGAGAGACTC CAAGCTGAGC
    TCAGCTCAGC CACCGACACC TTCTACTGAC AATGATAAAG CCGTACCACC AAGGCCGGGG
    CCTACCCCAC TGGCCGCTTC TCTCCAGTGC ACAACTAACA GAGAACAAGT GTCTCCAGCA
    GAGGCCCCCA TCATCCTGAG CTCTCCCAGG ACATCCAAGA CAGACTGTTA TGAGCTAGTT
    TGGAGACCCC GGCATGACAG CAGGGCCCCC ATCCTCTACT ATGTTGTGAA GCATCGCAAG
    GTTATGAACT CTTCAGACAA CTGGACAGTC AGGGACATTC CAGCTACACA GCACCGCCTG
    ATCTTGACTA AACTGGATCC TGGGAGCTTG TATGAAGTGG AGATGGCAGC TTATAACTGT
    GCCGGGGAGG GGCAGACAGC CATGGTGACA TTCAGGACAG GTCGACGACC AAAACCCGAG
    ATTGTCGCCA GTAAAGAGCA GCTGGTCCAG AGAGATGACC CAGGCACGAG CACACAGAGC
    AGCAACCAAG CAGATAACAG CCGGCTGTCT CCTCCGGAGG CACCAGACCG TCCCACTATA
    TCCATGGCAT CAGAGACATC TGTCTACGTG ACCTGGATCC CCCGTGGAAA TGGAGGTTTC
    CCCATCCAGT CATTCCGAGT GGAGTACAAG AAACTGAAGA AGCCTGGAGA CTGGGTGCTG
    GCCACCAATG ACATCCCTCC CTCTCGCCTC TCAGTGGAGA TCACAGGCCT GGAGAAAGGC
    ACCTCCTATA AGTTCCGTGT TCGGGCTCTG AACATACTGG GGGAGAGTGA ACCCAGTGCT
    GCCTCTAGGC CCTATGTGGT GTCAGGCTTC AGTAACCGTG TGTATGAACG CCCCGTTGCC
    GGACCTTACA TCACCTTTAC TGATGCCATC AATGAGACCA CCATCATGCT AAAGTGGATG
    TACATCCCAG CCAGTAACAA CAACACCCCG ATCCACGGCT TTTACATCTA CTACCGCCCC
    ACTGACAGTG ACAACGACAG TGACTACAAG AAGGACGTAG TGGAAGGTGA TCGGTACTGG
    CACTCCATCA GCCACTTGCA GCCAGAGACT TCATACGACA TTAAGATGCA GTGCTTCAAT
    GAGGGTGGTG AAAGTGAATT CAGCAATGTG ATGATTTGTG AAACCAAAGC TCGTAAGTCC
    CTTGGGCTGC CCGGTCGCCT GCCACCCCCA ACAGTGCCCC CACAGCAGCG CCCACCAGTC
    GGCAGTGGGC AAAGTGGCCT GGGGACAGGG GCCATGGTGG CCCGCTCCAG CGACCTGCCG
    TACCTGATCG TAGGGGTAGT GCTGGGCTCC ATCGTGCTCA TCATCGTGGC CTTTATCCCC
    TTCTGCCTTT GGAGAGCCTG GTCCAAACAG AAGCAGACCA TAGACATGGG CTTCCCTGGA
    GCTGGGCTGT TGGTGTCTTC CTGCCAATAT ACCATGGTAC CCCTGCGAGG GGTCTCTGCT
    CCTCGAGCCA GTGGGCAGCC CTATGCCAAT GGGGTGCACC TGAATGGCAG CTATCCCTCA
    GCAGGGATAG GCTACCCAAG CACAAAGCCC CGGGACTACT GTCCGGATGA AGTTCATCAG
    GATGAGACCA ACACCTTGCT GCAGGAAAGG GTGATGCAAA ATGGCAACCT CCAGCAAGAT
    TATCAGAGCT CCAGGTTGCC CAATTCCAGA CAGGAAGAAC ATTCTTTCTT CTACAGCCTC
    CCAGGTGATT CCACTCATCA GCTGCTCCAG CCGCACGATG ACTGCCATCA CCTGCAGGAA
    CAACTCGTTG GCCTCCATCG CCCAGTGATG GGAACCAAGG TGCGAGGCCT TGGCCTGGAA
    GCCAGGAGGG ACCCCATGTT CCACACAGGT GCCCCATGCT GCCTGGGCCT GGTGCCAGTT
    GAAGAAGTAG AAAGGACAGG CTGCTGCCAG GCCAGAGGAG ACCTACATGT CCAGAACCCA
    GCAATCACTT GCCTGACCCA GGACCCAAGA AGGCATCTGT GCAGCAGCCC TCCTGCACAT
    ATGCCCATAG AGACTCCTCC TCCCACCAGT TAG

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

    RefSeq XP_019331709.1
    CDS946..4218
    Translation

    Target ORF information:

    RefSeq Version XM_019476164.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019476164.1

    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
    ATGACAATGA CACCTGGAAG GAAGAGACCA GTGGCCACCA TCCCCTGCCT TATCCTAGCA 
    GCTGCTAGTT GCTTTGCTAA TTTAGGTGAG TCTCTACAAG TCACCGTCCA ACCTGCCTCC
    ATTGTCCAAA AATATGGTGG CGTGGTGAGT CTGGGTTGTG TGGCAAACCC CACAAGAGTG
    AACGTTACCT GGAGACTGAA TGGGAAGGAG CTGACGGAGT CAGATGAGGT GCTGGGGATT
    CACACCGAGC CAGGGAAACT CATCATCCTT GCTCTCAACA ACCACACCGT AGGCCGGTAT
    CAGTGTATTG CTCGTGTACC TGAGGGGGTT GTGGCCAGTG TCCCAGCCAC AGTGACGTTA
    GCCAATCTCA AAGACTTCAA ATTTGATGGC CAGCATGTGA TTGAAGTGGA TGAAGGCAAC
    ACTGCCGTCA TTGCTTGTGA CCTGCCTGAA AGCCATCCAA AGGCCCTGGT GCGCTACAGT
    GTGAAACATG AGTGGCTAGA GTCCTCCAGA GACAACTACT TGATTATGCC ATCTGGGAAT
    CTTCAGATAG TCAATGCCAG TCAAGAAGAT GAAGGAACTT ACAAATGTGC TGCCTACAAC
    CCTGTGACGC AAGAAGTGAA AACCTCTGTC TCCAGTGAGA GGCTCCGTGT GCGACGCTCC
    ATGGCAGAGG CAGCTCGGAT AATCTACCCC ACAGAGGCTC AGACCATCAT CGTCACCAAG
    GGTCAAAGCC TCATCTTGGA ATGTGTGGCC AGTGGGATCC CACCTCCACG GGTCACTTGG
    GCCAAGGATG GCTCCAATGT CTCTGGCTAC AACAAGACCC GGTTCTTGCT CAGCAACCTC
    CTGATTGACA CCACTAATGA GGAGGACTCT GGGACCTACA GCTGCATGGC GGACAATGGG
    GTGGGCGAGG CTGGAGCTGC ATTCATATTC TACAATGTTC AGGTGTTCGA ACCTCCCGAG
    GTCACCATGG AGCTGTCCCA ACAGATCATC CCCTGGGGTC AGAGCGCAAA GTTCACCTGC
    GAGGTGCGAG GGAACCCCCA GCCCTCAGTG ATGTGGCTGC GCAATGCCAT GCCCCTCTCT
    TCCAACCACC GGCTCCGGCT GTCCCGTAGG GCCCTTCGTG TGGTGAGCGT GGGGCCAGAA
    GATGATGGGA TCTACCAGTG CATGGCTGAG AATGAAGTTG GAAGTGCACA AGCCATGGTG
    CAGCTGAGGA CTGCTCGGCC AGGAGCAACT CTGAATCCCT GGAGAGACTC CAAGCTGAGC
    TCAGCTCAGC CACCGACACC TTCTACTGAC AATGATAAAG CCGTACCACC AAGGCCGGGG
    CCTACCCCAC TGGCCGCTTC TCTCCAGTGC ACAACTAACA GAGAACAAGT GTCTCCAGCA
    GAGGCCCCCA TCATCCTGAG CTCTCCCAGG ACATCCAAGA CAGACTGTTA TGAGCTAGTT
    TGGAGACCCC GGCATGACAG CAGGGCCCCC ATCCTCTACT ATGTTGTGAA GCATCGCAAG
    GTTATGAACT CTTCAGACAA CTGGACAGTC AGGGACATTC CAGCTACACA GCACCGCCTG
    ATCTTGACTA AACTGGATCC TGGGAGCTTG TATGAAGTGG AGATGGCAGC TTATAACTGT
    GCCGGGGAGG GGCAGACAGC CATGGTGACA TTCAGGACAG GTCGACGACC AAAACCCGAG
    ATTGTCGCCA GTAAAGAGCA GCTGGTCCAG AGAGATGACC CAGGCACGAG CACACAGAGC
    AGCAACCAAG CAGATAACAG CCGGCTGTCT CCTCCGGAGG CACCAGACCG TCCCACTATA
    TCCATGGCAT CAGAGACATC TGTCTACGTG ACCTGGATCC CCCGTGGAAA TGGAGGTTTC
    CCCATCCAGT CATTCCGAGT GGAGTACAAG AAACTGAAGA AGCCTGGAGA CTGGGTGCTG
    GCCACCAATG ACATCCCTCC CTCTCGCCTC TCAGTGGAGA TCACAGGCCT GGAGAAAGGC
    ACCTCCTATA AGTTCCGTGT TCGGGCTCTG AACATACTGG GGGAGAGTGA ACCCAGTGCT
    GCCTCTAGGC CCTATGTGGT GTCAGGCTTC AGTAACCGTG TGTATGAACG CCCCGTTGCC
    GGACCTTACA TCACCTTTAC TGATGCCATC AATGAGACCA CCATCATGCT AAAGTGGATG
    TACATCCCAG CCAGTAACAA CAACACCCCG ATCCACGGCT TTTACATCTA CTACCGCCCC
    ACTGACAGTG ACAACGACAG TGACTACAAG AAGGACGTAG TGGAAGGTGA TCGGTACTGG
    CACTCCATCA GCCACTTGCA GCCAGAGACT TCATACGACA TTAAGATGCA GTGCTTCAAT
    GAGGGTGGTG AAAGTGAATT CAGCAATGTG ATGATTTGTG AAACCAAAGC TCGTAAGTCC
    CTTGGGCTGC CCGGTCGCCT GCCACCCCCA ACAGTGCCCC CACAGCAGCG CCCACCAGTC
    GGCAGTGGGC AAAGTGGCCT GGGGACAGGG GCCATGGTGG CCCGCTCCAG CGACCTGCCG
    TACCTGATCG TAGGGGTAGT GCTGGGCTCC ATCGTGCTCA TCATCGTGGC CTTTATCCCC
    TTCTGCCTTT GGAGAGCCTG GTCCAAACAG AAGCAGACCA TAGACATGGG CTTCCCTGGA
    GCTGGGCTGT TGGTGTCTTC CTGCCAATAT ACCATGGTAC CCCTGCGAGG GGTCTCTGCT
    CCTCGAGCCA GTGGGCAGCC CTATGCCAAT GGGGTGCACC TGAATGGCAG CTATCCCTCA
    GCAGGGATAG GCTACCCAAG CACAAAGCCC CGGGACTACT GTCCGGATGA AGTTCATCAG
    GATGAGACCA ACACCTTGCT GCAGGAAAGG GTGATGCAAA ATGGCAACCT CCAGCAAGAT
    TATCAGAGCT CCAGGTTGCC CAATTCCAGA CAGGAAGAAC ATTCTTTCTT CTACAGCCTC
    CCAGGTGATT CCACTCATCA GCTGCTCCAG CCGCACGATG ACTGCCATCA CCTGCAGGAA
    CAACTCGTTG GCCTCCATCG CCCAGTGATG GGAACCAAGG TGCGAGGCCT TGGCCTGGAA
    GCCAGGAGGG ACCCCATGTT CCACACAGGT GCCCCATGCT GCCTGGGCCT GGTGCCAGTT
    GAAGAAGTAG AAAGGACAGG CTGCTGCCAG GCCAGAGGAG ACCTACATGT CCAGAACCCA
    GCAATCACTT GCCTGACCCA GGACCCAAGA AGGCATCTGT GCAGCAGCCC TCCTGCACAT
    ATGCCCATAG AGACTCCTCC TCCCACCAGT TAG

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

    CloneID OAl73680
    Clone ID Related Accession (Same CDS sequence) XM_019476165.1
    Accession Version XM_019476165.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3120bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product brother of CDO isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017713645.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGCAACACA GCTACCCTCG AGCAGCGCTA GGGCACCGCA GGAAGCCACA GCACCTCCTT 
    GAGTCTTCTG AGGCAACTTA TGGGAACCCT GCCTGGGCCC TTCTGCTCCA GGCTACGCTG
    CATGGGATGA CAATGACACC TGGAAGGAAG AGACCAGTGG CCACCATCCC CTGCCTTATC
    CTAGCAGCTG CTAGTTGCTT TGCTAATTTA GATCTCAAAG ACTTCAAATT TGATGGCCAG
    CATGTGATTG AAGTGGATGA AGGCAACACT GCCGTCATTG CTTGTGACCT GCCTGAAAGC
    CATCCAAAGG CCCTGGTGCG CTACAGTGTG AAACATGAGT GGCTAGAGTC CTCCAGAGAC
    AACTACTTGA TTATGCCATC TGGGAATCTT CAGATAGTCA ATGCCAGTCA AGAAGATGAA
    GGAACTTACA AATGTGCTGC CTACAACCCT GTGACGCAAG AAGTGAAAAC CTCTGTCTCC
    AGTGAGAGGC TCCGTGTGCG ACGCTCCATG GCAGAGGCAG CTCGGATAAT CTACCCCACA
    GAGGCTCAGA CCATCATCGT CACCAAGGGT CAAAGCCTCA TCTTGGAATG TGTGGCCAGT
    GGGATCCCAC CTCCACGGGT CACTTGGGCC AAGGATGGCT CCAATGTCTC TGGCTACAAC
    AAGACCCGGT TCTTGCTCAG CAACCTCCTG ATTGACACCA CTAATGAGGA GGACTCTGGG
    ACCTACAGCT GCATGGCGGA CAATGGGGTG GGCGAGGCTG GAGCTGCATT CATATTCTAC
    AATGTTCAGG TGTTCGAACC TCCCGAGGTC ACCATGGAGC TGTCCCAACA GATCATCCCC
    TGGGGTCAGA GCGCAAAGTT CACCTGCGAG GTGCGAGGGA ACCCCCAGCC CTCAGTGATG
    TGGCTGCGCA ATGCCATGCC CCTCTCTTCC AACCACCGGC TCCGGCTGTC CCGTAGGGCC
    CTTCGTGTGG TGAGCGTGGG GCCAGAAGAT GATGGGATCT ACCAGTGCAT GGCTGAGAAT
    GAAGTTGGAA GTGCACAAGC CATGGTGCAG CTGAGGACTG CTCGGCCAGG AGCAACTCTG
    AATCCCTGGA GAGACTCCAA GCTGAGCTCA GCTCAGCCAC CGACACCTTC TACTGACAAT
    GATAAAGCCG TACCACCAAG GCCGGGGCCT ACCCCACTGG CCGCTTCTCT CCAGTGCACA
    ACTAACAGAG AACAAGTGTC TCCAGCAGAG GCCCCCATCA TCCTGAGCTC TCCCAGGACA
    TCCAAGACAG ACTGTTATGA GCTAGTTTGG AGACCCCGGC ATGACAGCAG GGCCCCCATC
    CTCTACTATG TTGTGAAGCA TCGCAAGGTT ATGAACTCTT CAGACAACTG GACAGTCAGG
    GACATTCCAG CTACACAGCA CCGCCTGATC TTGACTAAAC TGGATCCTGG GAGCTTGTAT
    GAAGTGGAGA TGGCAGCTTA TAACTGTGCC GGGGAGGGGC AGACAGCCAT GGTGACATTC
    AGGACAGGTC GACGACCAAA ACCCGAGATT GTCGCCAGTA AAGAGCAGCT GGTCCAGAGA
    GATGACCCAG GCACGAGCAC ACAGAGCAGC AACCAAGCAG ATAACAGCCG GCTGTCTCCT
    CCGGAGGCAC CAGACCGTCC CACTATATCC ATGGCATCAG AGACATCTGT CTACGTGACC
    TGGATCCCCC GTGGAAATGG AGGTTTCCCC ATCCAGTCAT TCCGAGTGGA GTACAAGAAA
    CTGAAGAAGC CTGGAGACTG GGTGCTGGCC ACCAATGACA TCCCTCCCTC TCGCCTCTCA
    GTGGAGATCA CAGGCCTGGA GAAAGGCACC TCCTATAAGT TCCGTGTTCG GGCTCTGAAC
    ATACTGGGGG AGAGTGAACC CAGTGCTGCC TCTAGGCCCT ATGTGGTGTC AGGCTTCAGT
    AACCGTGTGT ATGAACGCCC CGTTGCCGGA CCTTACATCA CCTTTACTGA TGCCATCAAT
    GAGACCACCA TCATGCTAAA GTGGATGTAC ATCCCAGCCA GTAACAACAA CACCCCGATC
    CACGGCTTTT ACATCTACTA CCGCCCCACT GACAGTGACA ACGACAGTGA CTACAAGAAG
    GACGTAGTGG AAGGTGATCG GTACTGGCAC TCCATCAGCC ACTTGCAGCC AGAGACTTCA
    TACGACATTA AGATGCAGTG CTTCAATGAG GGTGGTGAAA GTGAATTCAG CAATGTGATG
    ATTTGTGAAA CCAAAGCTCG TAAGTCCCTT GGGCTGCCCG GTCGCCTGCC ACCCCCAACA
    GTGCCCCCAC AGCAGCGCCC ACCAGTCGGC AGTGGGCAAA GTGGCCTGGG GACAGGGGCC
    ATGGTGGCCC GCTCCAGCGA CCTGCCGTAC CTGATCGTAG GGGTAGTGCT GGGCTCCATC
    GTGCTCATCA TCGTGGCCTT TATCCCCTTC TGCCTTTGGA GAGCCTGGTC CAAACAGAAG
    CAGACCATAG ACATGGGCTT CCCTGGAGCT GGGCTGTTGG TGTCTTCCTG CCAATATACC
    ATGGTACCCC TGCGAGGGGT CTCTGCTCCT CGAGCCAGTG GGCAGCCCTA TGCCAATGGG
    GTGCACCTGA ATGGCAGCTA TCCCTCAGCA GGGATAGGCT ACCCAAGCAC AAAGCCCCGG
    GACTACTGTC CGGATGAAGT TCATCAGGAT GAGACCAACA CCTTGCTGCA GGAAAGGGTG
    ATGCAAAATG GCAACCTCCA GCAAGATTAT CAGAGCTCCA GGTTGCCCAA TTCCAGACAG
    GAAGAACATT CTTTCTTCTA CAGCCTCCCA GGTGATTCCA CTCATCAGCT GCTCCAGCCG
    CACGATGACT GCCATCACCT GCAGGAACAA CTCGTTGGCC TCCATCGCCC AGTGATGGGA
    ACCAAGGTGC GAGGCCTTGG CCTGGAAGCC AGGAGGGACC CCATGTTCCA CACAGGTGCC
    CCATGCTGCC TGGGCCTGGT GCCAGTTGAA GAAGTAGAAA GGACAGGCTG CTGCCAGGCC
    AGAGGAGACC TACATGTCCA GAACCCAGCA ATCACTTGCC TGACCCAGGA CCCAAGAAGG
    CATCTGTGCA GCAGCCCTCC TGCACATATG CCCATAGAGA CTCCTCCTCC CACCAGTTAG

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

    RefSeq XP_019331710.1
    CDS16..3135
    Translation

    Target ORF information:

    RefSeq Version XM_019476165.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis BOC cell adhesion associated, oncogene regulated (BOC), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019476165.1

    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
    ATGCAACACA GCTACCCTCG AGCAGCGCTA GGGCACCGCA GGAAGCCACA GCACCTCCTT 
    GAGTCTTCTG AGGCAACTTA TGGGAACCCT GCCTGGGCCC TTCTGCTCCA GGCTACGCTG
    CATGGGATGA CAATGACACC TGGAAGGAAG AGACCAGTGG CCACCATCCC CTGCCTTATC
    CTAGCAGCTG CTAGTTGCTT TGCTAATTTA GATCTCAAAG ACTTCAAATT TGATGGCCAG
    CATGTGATTG AAGTGGATGA AGGCAACACT GCCGTCATTG CTTGTGACCT GCCTGAAAGC
    CATCCAAAGG CCCTGGTGCG CTACAGTGTG AAACATGAGT GGCTAGAGTC CTCCAGAGAC
    AACTACTTGA TTATGCCATC TGGGAATCTT CAGATAGTCA ATGCCAGTCA AGAAGATGAA
    GGAACTTACA AATGTGCTGC CTACAACCCT GTGACGCAAG AAGTGAAAAC CTCTGTCTCC
    AGTGAGAGGC TCCGTGTGCG ACGCTCCATG GCAGAGGCAG CTCGGATAAT CTACCCCACA
    GAGGCTCAGA CCATCATCGT CACCAAGGGT CAAAGCCTCA TCTTGGAATG TGTGGCCAGT
    GGGATCCCAC CTCCACGGGT CACTTGGGCC AAGGATGGCT CCAATGTCTC TGGCTACAAC
    AAGACCCGGT TCTTGCTCAG CAACCTCCTG ATTGACACCA CTAATGAGGA GGACTCTGGG
    ACCTACAGCT GCATGGCGGA CAATGGGGTG GGCGAGGCTG GAGCTGCATT CATATTCTAC
    AATGTTCAGG TGTTCGAACC TCCCGAGGTC ACCATGGAGC TGTCCCAACA GATCATCCCC
    TGGGGTCAGA GCGCAAAGTT CACCTGCGAG GTGCGAGGGA ACCCCCAGCC CTCAGTGATG
    TGGCTGCGCA ATGCCATGCC CCTCTCTTCC AACCACCGGC TCCGGCTGTC CCGTAGGGCC
    CTTCGTGTGG TGAGCGTGGG GCCAGAAGAT GATGGGATCT ACCAGTGCAT GGCTGAGAAT
    GAAGTTGGAA GTGCACAAGC CATGGTGCAG CTGAGGACTG CTCGGCCAGG AGCAACTCTG
    AATCCCTGGA GAGACTCCAA GCTGAGCTCA GCTCAGCCAC CGACACCTTC TACTGACAAT
    GATAAAGCCG TACCACCAAG GCCGGGGCCT ACCCCACTGG CCGCTTCTCT CCAGTGCACA
    ACTAACAGAG AACAAGTGTC TCCAGCAGAG GCCCCCATCA TCCTGAGCTC TCCCAGGACA
    TCCAAGACAG ACTGTTATGA GCTAGTTTGG AGACCCCGGC ATGACAGCAG GGCCCCCATC
    CTCTACTATG TTGTGAAGCA TCGCAAGGTT ATGAACTCTT CAGACAACTG GACAGTCAGG
    GACATTCCAG CTACACAGCA CCGCCTGATC TTGACTAAAC TGGATCCTGG GAGCTTGTAT
    GAAGTGGAGA TGGCAGCTTA TAACTGTGCC GGGGAGGGGC AGACAGCCAT GGTGACATTC
    AGGACAGGTC GACGACCAAA ACCCGAGATT GTCGCCAGTA AAGAGCAGCT GGTCCAGAGA
    GATGACCCAG GCACGAGCAC ACAGAGCAGC AACCAAGCAG ATAACAGCCG GCTGTCTCCT
    CCGGAGGCAC CAGACCGTCC CACTATATCC ATGGCATCAG AGACATCTGT CTACGTGACC
    TGGATCCCCC GTGGAAATGG AGGTTTCCCC ATCCAGTCAT TCCGAGTGGA GTACAAGAAA
    CTGAAGAAGC CTGGAGACTG GGTGCTGGCC ACCAATGACA TCCCTCCCTC TCGCCTCTCA
    GTGGAGATCA CAGGCCTGGA GAAAGGCACC TCCTATAAGT TCCGTGTTCG GGCTCTGAAC
    ATACTGGGGG AGAGTGAACC CAGTGCTGCC TCTAGGCCCT ATGTGGTGTC AGGCTTCAGT
    AACCGTGTGT ATGAACGCCC CGTTGCCGGA CCTTACATCA CCTTTACTGA TGCCATCAAT
    GAGACCACCA TCATGCTAAA GTGGATGTAC ATCCCAGCCA GTAACAACAA CACCCCGATC
    CACGGCTTTT ACATCTACTA CCGCCCCACT GACAGTGACA ACGACAGTGA CTACAAGAAG
    GACGTAGTGG AAGGTGATCG GTACTGGCAC TCCATCAGCC ACTTGCAGCC AGAGACTTCA
    TACGACATTA AGATGCAGTG CTTCAATGAG GGTGGTGAAA GTGAATTCAG CAATGTGATG
    ATTTGTGAAA CCAAAGCTCG TAAGTCCCTT GGGCTGCCCG GTCGCCTGCC ACCCCCAACA
    GTGCCCCCAC AGCAGCGCCC ACCAGTCGGC AGTGGGCAAA GTGGCCTGGG GACAGGGGCC
    ATGGTGGCCC GCTCCAGCGA CCTGCCGTAC CTGATCGTAG GGGTAGTGCT GGGCTCCATC
    GTGCTCATCA TCGTGGCCTT TATCCCCTTC TGCCTTTGGA GAGCCTGGTC CAAACAGAAG
    CAGACCATAG ACATGGGCTT CCCTGGAGCT GGGCTGTTGG TGTCTTCCTG CCAATATACC
    ATGGTACCCC TGCGAGGGGT CTCTGCTCCT CGAGCCAGTG GGCAGCCCTA TGCCAATGGG
    GTGCACCTGA ATGGCAGCTA TCCCTCAGCA GGGATAGGCT ACCCAAGCAC AAAGCCCCGG
    GACTACTGTC CGGATGAAGT TCATCAGGAT GAGACCAACA CCTTGCTGCA GGAAAGGGTG
    ATGCAAAATG GCAACCTCCA GCAAGATTAT CAGAGCTCCA GGTTGCCCAA TTCCAGACAG
    GAAGAACATT CTTTCTTCTA CAGCCTCCCA GGTGATTCCA CTCATCAGCT GCTCCAGCCG
    CACGATGACT GCCATCACCT GCAGGAACAA CTCGTTGGCC TCCATCGCCC AGTGATGGGA
    ACCAAGGTGC GAGGCCTTGG CCTGGAAGCC AGGAGGGACC CCATGTTCCA CACAGGTGCC
    CCATGCTGCC TGGGCCTGGT GCCAGTTGAA GAAGTAGAAA GGACAGGCTG CTGCCAGGCC
    AGAGGAGACC TACATGTCCA GAACCCAGCA ATCACTTGCC TGACCCAGGA CCCAAGAAGG
    CATCTGTGCA GCAGCCCTCC TGCACATATG CCCATAGAGA CTCCTCCTCC CACCAGTTAG

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