ITGA10 cDNA ORF clone, Ailuropoda melanoleuca(giant panda)

The following ITGA10 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ITGA10 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
OAc32796 XM_011231480.2
Latest version!
Ailuropoda melanoleuca integrin subunit alpha 10 (ITGA10), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OAc32797 XM_011231481.2
Latest version!
Ailuropoda melanoleuca integrin subunit alpha 10 (ITGA10), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OAc96538 XM_019805224.1
Latest version!
Ailuropoda melanoleuca integrin subunit alpha 10 (ITGA10), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OAc96539 XM_019805225.1
Latest version!
Ailuropoda melanoleuca integrin subunit alpha 10 (ITGA10), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00

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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 OAc32796
    Clone ID Related Accession (Same CDS sequence) XM_011231480.2
    Accession Version XM_011231480.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3498bp)
    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 1482768000000
    Organism Ailuropoda melanoleuca(giant panda)
    Product integrin alpha-10 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003218110.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 28, 2016 this sequence version replaced XM_011231480.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Ailuropoda melanoleuca 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
    3421
    3481
    ATGGAACTCC TCCTCATCCC TCACCTGCTC TTGCCCGTGA TGGTCCTGAC AGGTCTGTGC 
    TCCCCCTTTA ACCTGGATGT GCACCACCCA CGCCTATTCC CAGGGCCACC TGAGGCTGAA
    TTCGGATATA GTGTCTTACA ACATGTCGGG GGTGGACGTC GATGGATGCT GGTGGGTGCC
    CCCTGGGATG GGCCTTCAGG TGACAGAAGG GGGGACGTTT ATCGCTGCCC TGTAGGGGGC
    TCCCACAGTG CTCCGTGTGC CAAAGGCCAC TTGGGTGACT ATCCACTGGG AAATTCATCT
    CATCCTGCTA TGAATATGCA CCTGGGAATG TCTCTACTAG AGACAGACAA TGATGGGGGA
    TTCATGGCTT GTGCCCCTCT CTGGTCTCGT GCTTGTGGCT CCTCTGTCTT CAGTTCTGGG
    ATATGTGCCC GTGTAGACGC TTCATTCCGG CCCCAGGGAA GCCTGGCACC CACCGCACAA
    CGCTGTCCCA CCTACATGGA TGTTGTCATT GTCTTGGATG GCTCCAATAG CATCTACCCC
    TGGTCTGAAG TTCAGACTTT CCTACGAAGA CTGGTAGGGA GACTGTTTAT TGACCCGGAG
    CAGATACAGG TGGGACTGGT ACAGTATGGG GAGAGCCCCG TGCATGAGTG GTCCCTGGGA
    GATTTCCGAA CCAAGGACGA AGTGGTGAGG GCAGCGAGGA ACTTGAGTCG GCGAGAGGGA
    CGAGAAACAA AGACTGCCCA AGCAATCCTG GTGGCCTGCA CAGAAGGATT CAGTCTGTCC
    CGTGGGGGCC GGCCAGAGGC TGCCAGGCTG CTGGTGGTTG TCACCGACGG AGAGTCGCAT
    GATGGCGAGG AGCTTCCCGC CGCACTAAAG GCCTGTGAGG CTGGAAGAGT GACCCGCTAT
    GGGATCGCGG TCCTTGGCCA CTACCTCCGG CGGCAGCGAG ACCCCACGTC TTTCCTGCGG
    GAAATCAGGA CGATTGCCAG TGACCCGGAT GAGAGATTCT TCTTCAACGT CACAGATGAA
    GCTGCGCTGA CTGACATTGT GGACGCGCTG GGAGACCGGA TCTTTGGCCT TGAGGGGTCC
    CATGGAGAAA ATGAAAGCTC TTTTGGGCTG GAAATGTCTC AGATTGGTTT CTCTACTCAT
    CGGCTGAAGG ATGGGATTCT CTTTGGAATG GTGGGGGCCT ATGACTGGGG GGGCTCCGTG
    TTATGGCTTG AAGAAGGTCA CCGCCTTTTC CCCCCACGGA CGGCCCTGGA AGATGAGTTC
    CCCCCTGCTT TGCAGAACCA CGCAGCCTAC TTGGGTTACT CTGTTTCCTC CATGCTTTTG
    CGGGGTGGAC GCCGCCTCTT TCTCTCGGGG GCTCCTCGGT TTAGACATAG AGGAAAGGTC
    ATCGCCTTCC AGCTTAAGAA AGATGGGGCT GTGAGGGTTG CCCAGAGCCT CCAGGGAGAG
    CAGATCGGCT CCTACTTCGG CAGTGAACTC TGTCCGTTGG ATACGGACGG GGATGGAACA
    ACCGATGTCT TACTTGTGGC TGCCCCCATG TTCCTGGGAC CCCAGAACAA GGAGACAGGA
    CGTGTTTATG TGTATCTGGT GGGTCAGCAG GCCTTGCTGA CACTCCAGGC AACACTTCAG
    CCAGAACCCC CCCAGGATGC TCGGTTTGGC TTTGCCATGG GTGCCCTTCC TGATCTGAAC
    CAAGACGGTT TTGCTGACGT GGCTGTGGGG GCGCCCCTGG AGGACGGACA TCACGGAGCC
    CTGTACCTAT ATCATGGCAC CCAGAGTGGA CTCAGGCCCC GGCCCGCCCA GAGGATTGCT
    GCCATCTCCA TGCCACAGGC CCTCAGCTAC TTTGGCCGGA GTGTGGACGG CCGGCTGGAC
    CTGGATGGAG ATAACCTGGT AGATGTGGCC GTGGGCGCCC AGGGGGCAGC CGTCCTGCTC
    AGCTCCCGGC CCATTGTCCA CCTGGCCCCT TCACTGGAGG TGACCCCGCC AGCCATCAGT
    GTGGTTCAGA GGGACTGCAG CCGGCGAGGC CAGGAGGCAA CCTGCCTTTC TGCAGCCCTT
    TGCTTCCAAG TGACCTCGCG CACTCCTGGC CGCTGGGATC GCCGATTCTA TCTGCGGTTT
    ACGGCATCCC TGGATGAGTG GACGGCGGGG GCACGTGCTG CGTTTGATGG CTCTGGCCAG
    AGGCTGTCCC CTCGGAGGCT CCGGCTCAGC GTGGGGAATG TCACTTGCGA GCAGCTGAGC
    TTCCATGTGC TGGACACCTC AGATTACCTC CGGCCACTGG CCTTGACTGT GACCTTTGCA
    TTGGACAACA CCACGAAGCC AGGGCCTGTG CTGGATGAAG GCTCACCCAC CTCCATACGA
    AAGCTGGTCC CCTTCTCGAA GGATTGTGGC CCTGACAATG AATGTGTCAC TGACCTGGTG
    CTTCGAGCTA ATATGGACAT CAAAGGTTCC AGGAAGGACC CGTTTATAGT TCGAGGAGGT
    CGGCAGAAAG TGTTGGTGTC AGCAACTCTG GAGAACAGGA AGGAAAATGC CTACAACACT
    AGCCTGAGTC TCAGCTTCTC TAGAAACCTC CACTTGGCCA GTTTCACGCC TCAGAGGGAC
    AGCCCTGTGA AGGTGGAATG CTCCGCCCCT TCCCCTCATG TCCGGCTCTG CAGTGTGGGG
    CACCCTGTCT TTCAGACCGG AGCCAAGGTG ACCTTCCTGC TGGAGTTTGA GTTTAGCTGC
    TCTTCCCTCC TGAGCCAGGT CCTTGTGAGG CTGACTGCCA CCAGCAATAG CCTGGAGAGA
    AATGGGACCC TTCAAGATAA CACAGCCCAG ACCTCAGCCT ACATTCAATA TGAGCCCCAC
    CTCCTGTTCT CCAGTGAGTC CACTCTGCAC CGCTATGAGG TTCACCCATA CGGGACCCTC
    CCAGTGGGTC CCGAATTCAA AACCACTCTT AGGGTTCAGA ACCTCGGCTG CTATGTGGTC
    AGTGGCCTCA TCCTCTCTGC CCTCCTTCCA GCTGTAGCCC ATGGGGGCAA TTACTTCCTG
    TCATTGTCTC AAGTCATCAC TAACAATGCA AGCTGCACAG TACAGAATCT GACCGAGCCC
    CCAGGGCCCC CTGTGCACCC AGAGGAGTTT CAGCACACAA ACAGACTGAA TGGGAGTAAC
    ACTCGCTGTC AGGTCGTGAG GTGCCACCTT GGGCGACTGG CAAAGGGGAC CGAGGTCTCT
    GTGGGACTGC TGAGGCTGGT TCACAATGAA TTTTTCCGGA GGGCCAAATT CAAGTCTCTG
    ACAGTGGTCA GCACCTTTGA GCTGGGAGCT AAGGAGGGCA GTGTCCTACA GCTGACGGAA
    GCCTCTCGTT GGAGCGAGAG CCTGCTGGAG GTGATTCAGG CCCGCCCTGT CCTCATCTCC
    CTGTGGATCC TCATTGGCAG TGTCCTGGGG GGGCTGCTTC TGCTCGCTCT CCTTGTCTTC
    TGTCTTTGGA AGCTTGGCTT CTTCTCCCGA AAGAAAATCC CCGAGGAAGA AAAAAGAGAA
    GAGAAATTGG AGCAATGA

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

    RefSeq XP_011229782.1
    CDS53..3550
    Translation

    Target ORF information:

    RefSeq Version XM_011231480.2
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca integrin subunit alpha 10 (ITGA10), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011231480.2

    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
    ATGGAACTCC TCCTCATCCC TCACCTGCTC TTGCCCGTGA TGGTCCTGAC AGGTCTGTGC 
    TCCCCCTTTA ACCTGGATGT GCACCACCCA CGCCTATTCC CAGGGCCACC TGAGGCTGAA
    TTCGGATATA GTGTCTTACA ACATGTCGGG GGTGGACGTC GATGGATGCT GGTGGGTGCC
    CCCTGGGATG GGCCTTCAGG TGACAGAAGG GGGGACGTTT ATCGCTGCCC TGTAGGGGGC
    TCCCACAGTG CTCCGTGTGC CAAAGGCCAC TTGGGTGACT ATCCACTGGG AAATTCATCT
    CATCCTGCTA TGAATATGCA CCTGGGAATG TCTCTACTAG AGACAGACAA TGATGGGGGA
    TTCATGGCTT GTGCCCCTCT CTGGTCTCGT GCTTGTGGCT CCTCTGTCTT CAGTTCTGGG
    ATATGTGCCC GTGTAGACGC TTCATTCCGG CCCCAGGGAA GCCTGGCACC CACCGCACAA
    CGCTGTCCCA CCTACATGGA TGTTGTCATT GTCTTGGATG GCTCCAATAG CATCTACCCC
    TGGTCTGAAG TTCAGACTTT CCTACGAAGA CTGGTAGGGA GACTGTTTAT TGACCCGGAG
    CAGATACAGG TGGGACTGGT ACAGTATGGG GAGAGCCCCG TGCATGAGTG GTCCCTGGGA
    GATTTCCGAA CCAAGGACGA AGTGGTGAGG GCAGCGAGGA ACTTGAGTCG GCGAGAGGGA
    CGAGAAACAA AGACTGCCCA AGCAATCCTG GTGGCCTGCA CAGAAGGATT CAGTCTGTCC
    CGTGGGGGCC GGCCAGAGGC TGCCAGGCTG CTGGTGGTTG TCACCGACGG AGAGTCGCAT
    GATGGCGAGG AGCTTCCCGC CGCACTAAAG GCCTGTGAGG CTGGAAGAGT GACCCGCTAT
    GGGATCGCGG TCCTTGGCCA CTACCTCCGG CGGCAGCGAG ACCCCACGTC TTTCCTGCGG
    GAAATCAGGA CGATTGCCAG TGACCCGGAT GAGAGATTCT TCTTCAACGT CACAGATGAA
    GCTGCGCTGA CTGACATTGT GGACGCGCTG GGAGACCGGA TCTTTGGCCT TGAGGGGTCC
    CATGGAGAAA ATGAAAGCTC TTTTGGGCTG GAAATGTCTC AGATTGGTTT CTCTACTCAT
    CGGCTGAAGG ATGGGATTCT CTTTGGAATG GTGGGGGCCT ATGACTGGGG GGGCTCCGTG
    TTATGGCTTG AAGAAGGTCA CCGCCTTTTC CCCCCACGGA CGGCCCTGGA AGATGAGTTC
    CCCCCTGCTT TGCAGAACCA CGCAGCCTAC TTGGGTTACT CTGTTTCCTC CATGCTTTTG
    CGGGGTGGAC GCCGCCTCTT TCTCTCGGGG GCTCCTCGGT TTAGACATAG AGGAAAGGTC
    ATCGCCTTCC AGCTTAAGAA AGATGGGGCT GTGAGGGTTG CCCAGAGCCT CCAGGGAGAG
    CAGATCGGCT CCTACTTCGG CAGTGAACTC TGTCCGTTGG ATACGGACGG GGATGGAACA
    ACCGATGTCT TACTTGTGGC TGCCCCCATG TTCCTGGGAC CCCAGAACAA GGAGACAGGA
    CGTGTTTATG TGTATCTGGT GGGTCAGCAG GCCTTGCTGA CACTCCAGGC AACACTTCAG
    CCAGAACCCC CCCAGGATGC TCGGTTTGGC TTTGCCATGG GTGCCCTTCC TGATCTGAAC
    CAAGACGGTT TTGCTGACGT GGCTGTGGGG GCGCCCCTGG AGGACGGACA TCACGGAGCC
    CTGTACCTAT ATCATGGCAC CCAGAGTGGA CTCAGGCCCC GGCCCGCCCA GAGGATTGCT
    GCCATCTCCA TGCCACAGGC CCTCAGCTAC TTTGGCCGGA GTGTGGACGG CCGGCTGGAC
    CTGGATGGAG ATAACCTGGT AGATGTGGCC GTGGGCGCCC AGGGGGCAGC CGTCCTGCTC
    AGCTCCCGGC CCATTGTCCA CCTGGCCCCT TCACTGGAGG TGACCCCGCC AGCCATCAGT
    GTGGTTCAGA GGGACTGCAG CCGGCGAGGC CAGGAGGCAA CCTGCCTTTC TGCAGCCCTT
    TGCTTCCAAG TGACCTCGCG CACTCCTGGC CGCTGGGATC GCCGATTCTA TCTGCGGTTT
    ACGGCATCCC TGGATGAGTG GACGGCGGGG GCACGTGCTG CGTTTGATGG CTCTGGCCAG
    AGGCTGTCCC CTCGGAGGCT CCGGCTCAGC GTGGGGAATG TCACTTGCGA GCAGCTGAGC
    TTCCATGTGC TGGACACCTC AGATTACCTC CGGCCACTGG CCTTGACTGT GACCTTTGCA
    TTGGACAACA CCACGAAGCC AGGGCCTGTG CTGGATGAAG GCTCACCCAC CTCCATACGA
    AAGCTGGTCC CCTTCTCGAA GGATTGTGGC CCTGACAATG AATGTGTCAC TGACCTGGTG
    CTTCGAGCTA ATATGGACAT CAAAGGTTCC AGGAAGGACC CGTTTATAGT TCGAGGAGGT
    CGGCAGAAAG TGTTGGTGTC AGCAACTCTG GAGAACAGGA AGGAAAATGC CTACAACACT
    AGCCTGAGTC TCAGCTTCTC TAGAAACCTC CACTTGGCCA GTTTCACGCC TCAGAGGGAC
    AGCCCTGTGA AGGTGGAATG CTCCGCCCCT TCCCCTCATG TCCGGCTCTG CAGTGTGGGG
    CACCCTGTCT TTCAGACCGG AGCCAAGGTG ACCTTCCTGC TGGAGTTTGA GTTTAGCTGC
    TCTTCCCTCC TGAGCCAGGT CCTTGTGAGG CTGACTGCCA CCAGCAATAG CCTGGAGAGA
    AATGGGACCC TTCAAGATAA CACAGCCCAG ACCTCAGCCT ACATTCAATA TGAGCCCCAC
    CTCCTGTTCT CCAGTGAGTC CACTCTGCAC CGCTATGAGG TTCACCCATA CGGGACCCTC
    CCAGTGGGTC CCGAATTCAA AACCACTCTT AGGGTTCAGA ACCTCGGCTG CTATGTGGTC
    AGTGGCCTCA TCCTCTCTGC CCTCCTTCCA GCTGTAGCCC ATGGGGGCAA TTACTTCCTG
    TCATTGTCTC AAGTCATCAC TAACAATGCA AGCTGCACAG TACAGAATCT GACCGAGCCC
    CCAGGGCCCC CTGTGCACCC AGAGGAGTTT CAGCACACAA ACAGACTGAA TGGGAGTAAC
    ACTCGCTGTC AGGTCGTGAG GTGCCACCTT GGGCGACTGG CAAAGGGGAC CGAGGTCTCT
    GTGGGACTGC TGAGGCTGGT TCACAATGAA TTTTTCCGGA GGGCCAAATT CAAGTCTCTG
    ACAGTGGTCA GCACCTTTGA GCTGGGAGCT AAGGAGGGCA GTGTCCTACA GCTGACGGAA
    GCCTCTCGTT GGAGCGAGAG CCTGCTGGAG GTGATTCAGG CCCGCCCTGT CCTCATCTCC
    CTGTGGATCC TCATTGGCAG TGTCCTGGGG GGGCTGCTTC TGCTCGCTCT CCTTGTCTTC
    TGTCTTTGGA AGCTTGGCTT CTTCTCCCGA AAGAAAATCC CCGAGGAAGA AAAAAGAGAA
    GAGAAATTGG AGCAATGA

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

    CloneID OAc32797
    Clone ID Related Accession (Same CDS sequence) XM_011231481.2
    Accession Version XM_011231481.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3105bp)
    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 1482768000000
    Organism Ailuropoda melanoleuca(giant panda)
    Product integrin alpha-10 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003218110.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 28, 2016 this sequence version replaced XM_011231481.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Ailuropoda melanoleuca 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
    ATGTGCACCA CCCACGCCTA TTCCCAGGGC CACCTGAGGC TGAATTCGGA TATAGTGTCT 
    TACAACATGT CGGGGGTGGA CGTCGATGGC TGTCCCACCT ACATGGATGT TGTCATTGTC
    TTGGATGGCT CCAATAGCAT CTACCCCTGG TCTGAAGTTC AGACTTTCCT ACGAAGACTG
    GTAGGGAGAC TGTTTATTGA CCCGGAGCAG ATACAGGTGG GACTGGTACA GTATGGGGAG
    AGCCCCGTGC ATGAGTGGTC CCTGGGAGAT TTCCGAACCA AGGACGAAGT GGTGAGGGCA
    GCGAGGAACT TGAGTCGGCG AGAGGGACGA GAAACAAAGA CTGCCCAAGC AATCCTGGTG
    GCCTGCACAG AAGGATTCAG TCTGTCCCGT GGGGGCCGGC CAGAGGCTGC CAGGCTGCTG
    GTGGTTGTCA CCGACGGAGA GTCGCATGAT GGCGAGGAGC TTCCCGCCGC ACTAAAGGCC
    TGTGAGGCTG GAAGAGTGAC CCGCTATGGG ATCGCGGTCC TTGGCCACTA CCTCCGGCGG
    CAGCGAGACC CCACGTCTTT CCTGCGGGAA ATCAGGACGA TTGCCAGTGA CCCGGATGAG
    AGATTCTTCT TCAACGTCAC AGATGAAGCT GCGCTGACTG ACATTGTGGA CGCGCTGGGA
    GACCGGATCT TTGGCCTTGA GGGGTCCCAT GGAGAAAATG AAAGCTCTTT TGGGCTGGAA
    ATGTCTCAGA TTGGTTTCTC TACTCATCGG CTGAAGGATG GGATTCTCTT TGGAATGGTG
    GGGGCCTATG ACTGGGGGGG CTCCGTGTTA TGGCTTGAAG AAGGTCACCG CCTTTTCCCC
    CCACGGACGG CCCTGGAAGA TGAGTTCCCC CCTGCTTTGC AGAACCACGC AGCCTACTTG
    GGTTACTCTG TTTCCTCCAT GCTTTTGCGG GGTGGACGCC GCCTCTTTCT CTCGGGGGCT
    CCTCGGTTTA GACATAGAGG AAAGGTCATC GCCTTCCAGC TTAAGAAAGA TGGGGCTGTG
    AGGGTTGCCC AGAGCCTCCA GGGAGAGCAG ATCGGCTCCT ACTTCGGCAG TGAACTCTGT
    CCGTTGGATA CGGACGGGGA TGGAACAACC GATGTCTTAC TTGTGGCTGC CCCCATGTTC
    CTGGGACCCC AGAACAAGGA GACAGGACGT GTTTATGTGT ATCTGGTGGG TCAGCAGGCC
    TTGCTGACAC TCCAGGCAAC ACTTCAGCCA GAACCCCCCC AGGATGCTCG GTTTGGCTTT
    GCCATGGGTG CCCTTCCTGA TCTGAACCAA GACGGTTTTG CTGACGTGGC TGTGGGGGCG
    CCCCTGGAGG ACGGACATCA CGGAGCCCTG TACCTATATC ATGGCACCCA GAGTGGACTC
    AGGCCCCGGC CCGCCCAGAG GATTGCTGCC ATCTCCATGC CACAGGCCCT CAGCTACTTT
    GGCCGGAGTG TGGACGGCCG GCTGGACCTG GATGGAGATA ACCTGGTAGA TGTGGCCGTG
    GGCGCCCAGG GGGCAGCCGT CCTGCTCAGC TCCCGGCCCA TTGTCCACCT GGCCCCTTCA
    CTGGAGGTGA CCCCGCCAGC CATCAGTGTG GTTCAGAGGG ACTGCAGCCG GCGAGGCCAG
    GAGGCAACCT GCCTTTCTGC AGCCCTTTGC TTCCAAGTGA CCTCGCGCAC TCCTGGCCGC
    TGGGATCGCC GATTCTATCT GCGGTTTACG GCATCCCTGG ATGAGTGGAC GGCGGGGGCA
    CGTGCTGCGT TTGATGGCTC TGGCCAGAGG CTGTCCCCTC GGAGGCTCCG GCTCAGCGTG
    GGGAATGTCA CTTGCGAGCA GCTGAGCTTC CATGTGCTGG ACACCTCAGA TTACCTCCGG
    CCACTGGCCT TGACTGTGAC CTTTGCATTG GACAACACCA CGAAGCCAGG GCCTGTGCTG
    GATGAAGGCT CACCCACCTC CATACGAAAG CTGGTCCCCT TCTCGAAGGA TTGTGGCCCT
    GACAATGAAT GTGTCACTGA CCTGGTGCTT CGAGCTAATA TGGACATCAA AGGTTCCAGG
    AAGGACCCGT TTATAGTTCG AGGAGGTCGG CAGAAAGTGT TGGTGTCAGC AACTCTGGAG
    AACAGGAAGG AAAATGCCTA CAACACTAGC CTGAGTCTCA GCTTCTCTAG AAACCTCCAC
    TTGGCCAGTT TCACGCCTCA GAGGGACAGC CCTGTGAAGG TGGAATGCTC CGCCCCTTCC
    CCTCATGTCC GGCTCTGCAG TGTGGGGCAC CCTGTCTTTC AGACCGGAGC CAAGGTGACC
    TTCCTGCTGG AGTTTGAGTT TAGCTGCTCT TCCCTCCTGA GCCAGGTCCT TGTGAGGCTG
    ACTGCCACCA GCAATAGCCT GGAGAGAAAT GGGACCCTTC AAGATAACAC AGCCCAGACC
    TCAGCCTACA TTCAATATGA GCCCCACCTC CTGTTCTCCA GTGAGTCCAC TCTGCACCGC
    TATGAGGTTC ACCCATACGG GACCCTCCCA GTGGGTCCCG AATTCAAAAC CACTCTTAGG
    GTTCAGAACC TCGGCTGCTA TGTGGTCAGT GGCCTCATCC TCTCTGCCCT CCTTCCAGCT
    GTAGCCCATG GGGGCAATTA CTTCCTGTCA TTGTCTCAAG TCATCACTAA CAATGCAAGC
    TGCACAGTAC AGAATCTGAC CGAGCCCCCA GGGCCCCCTG TGCACCCAGA GGAGTTTCAG
    CACACAAACA GACTGAATGG GAGTAACACT CGCTGTCAGG TCGTGAGGTG CCACCTTGGG
    CGACTGGCAA AGGGGACCGA GGTCTCTGTG GGACTGCTGA GGCTGGTTCA CAATGAATTT
    TTCCGGAGGG CCAAATTCAA GTCTCTGACA GTGGTCAGCA CCTTTGAGCT GGGAGCTAAG
    GAGGGCAGTG TCCTACAGCT GACGGAAGCC TCTCGTTGGA GCGAGAGCCT GCTGGAGGTG
    ATTCAGGCCC GCCCTGTCCT CATCTCCCTG TGGATCCTCA TTGGCAGTGT CCTGGGGGGG
    CTGCTTCTGC TCGCTCTCCT TGTCTTCTGT CTTTGGAAGC TTGGCTTCTT CTCCCGAAAG
    AAAATCCCCG AGGAAGAAAA AAGAGAAGAG AAATTGGAGC AATGA

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

    RefSeq XP_011229783.1
    CDS1..3105
    Translation

    Target ORF information:

    RefSeq Version XM_011231481.2
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca integrin subunit alpha 10 (ITGA10), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011231481.2

    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
    ATGTGCACCA CCCACGCCTA TTCCCAGGGC CACCTGAGGC TGAATTCGGA TATAGTGTCT 
    TACAACATGT CGGGGGTGGA CGTCGATGGC TGTCCCACCT ACATGGATGT TGTCATTGTC
    TTGGATGGCT CCAATAGCAT CTACCCCTGG TCTGAAGTTC AGACTTTCCT ACGAAGACTG
    GTAGGGAGAC TGTTTATTGA CCCGGAGCAG ATACAGGTGG GACTGGTACA GTATGGGGAG
    AGCCCCGTGC ATGAGTGGTC CCTGGGAGAT TTCCGAACCA AGGACGAAGT GGTGAGGGCA
    GCGAGGAACT TGAGTCGGCG AGAGGGACGA GAAACAAAGA CTGCCCAAGC AATCCTGGTG
    GCCTGCACAG AAGGATTCAG TCTGTCCCGT GGGGGCCGGC CAGAGGCTGC CAGGCTGCTG
    GTGGTTGTCA CCGACGGAGA GTCGCATGAT GGCGAGGAGC TTCCCGCCGC ACTAAAGGCC
    TGTGAGGCTG GAAGAGTGAC CCGCTATGGG ATCGCGGTCC TTGGCCACTA CCTCCGGCGG
    CAGCGAGACC CCACGTCTTT CCTGCGGGAA ATCAGGACGA TTGCCAGTGA CCCGGATGAG
    AGATTCTTCT TCAACGTCAC AGATGAAGCT GCGCTGACTG ACATTGTGGA CGCGCTGGGA
    GACCGGATCT TTGGCCTTGA GGGGTCCCAT GGAGAAAATG AAAGCTCTTT TGGGCTGGAA
    ATGTCTCAGA TTGGTTTCTC TACTCATCGG CTGAAGGATG GGATTCTCTT TGGAATGGTG
    GGGGCCTATG ACTGGGGGGG CTCCGTGTTA TGGCTTGAAG AAGGTCACCG CCTTTTCCCC
    CCACGGACGG CCCTGGAAGA TGAGTTCCCC CCTGCTTTGC AGAACCACGC AGCCTACTTG
    GGTTACTCTG TTTCCTCCAT GCTTTTGCGG GGTGGACGCC GCCTCTTTCT CTCGGGGGCT
    CCTCGGTTTA GACATAGAGG AAAGGTCATC GCCTTCCAGC TTAAGAAAGA TGGGGCTGTG
    AGGGTTGCCC AGAGCCTCCA GGGAGAGCAG ATCGGCTCCT ACTTCGGCAG TGAACTCTGT
    CCGTTGGATA CGGACGGGGA TGGAACAACC GATGTCTTAC TTGTGGCTGC CCCCATGTTC
    CTGGGACCCC AGAACAAGGA GACAGGACGT GTTTATGTGT ATCTGGTGGG TCAGCAGGCC
    TTGCTGACAC TCCAGGCAAC ACTTCAGCCA GAACCCCCCC AGGATGCTCG GTTTGGCTTT
    GCCATGGGTG CCCTTCCTGA TCTGAACCAA GACGGTTTTG CTGACGTGGC TGTGGGGGCG
    CCCCTGGAGG ACGGACATCA CGGAGCCCTG TACCTATATC ATGGCACCCA GAGTGGACTC
    AGGCCCCGGC CCGCCCAGAG GATTGCTGCC ATCTCCATGC CACAGGCCCT CAGCTACTTT
    GGCCGGAGTG TGGACGGCCG GCTGGACCTG GATGGAGATA ACCTGGTAGA TGTGGCCGTG
    GGCGCCCAGG GGGCAGCCGT CCTGCTCAGC TCCCGGCCCA TTGTCCACCT GGCCCCTTCA
    CTGGAGGTGA CCCCGCCAGC CATCAGTGTG GTTCAGAGGG ACTGCAGCCG GCGAGGCCAG
    GAGGCAACCT GCCTTTCTGC AGCCCTTTGC TTCCAAGTGA CCTCGCGCAC TCCTGGCCGC
    TGGGATCGCC GATTCTATCT GCGGTTTACG GCATCCCTGG ATGAGTGGAC GGCGGGGGCA
    CGTGCTGCGT TTGATGGCTC TGGCCAGAGG CTGTCCCCTC GGAGGCTCCG GCTCAGCGTG
    GGGAATGTCA CTTGCGAGCA GCTGAGCTTC CATGTGCTGG ACACCTCAGA TTACCTCCGG
    CCACTGGCCT TGACTGTGAC CTTTGCATTG GACAACACCA CGAAGCCAGG GCCTGTGCTG
    GATGAAGGCT CACCCACCTC CATACGAAAG CTGGTCCCCT TCTCGAAGGA TTGTGGCCCT
    GACAATGAAT GTGTCACTGA CCTGGTGCTT CGAGCTAATA TGGACATCAA AGGTTCCAGG
    AAGGACCCGT TTATAGTTCG AGGAGGTCGG CAGAAAGTGT TGGTGTCAGC AACTCTGGAG
    AACAGGAAGG AAAATGCCTA CAACACTAGC CTGAGTCTCA GCTTCTCTAG AAACCTCCAC
    TTGGCCAGTT TCACGCCTCA GAGGGACAGC CCTGTGAAGG TGGAATGCTC CGCCCCTTCC
    CCTCATGTCC GGCTCTGCAG TGTGGGGCAC CCTGTCTTTC AGACCGGAGC CAAGGTGACC
    TTCCTGCTGG AGTTTGAGTT TAGCTGCTCT TCCCTCCTGA GCCAGGTCCT TGTGAGGCTG
    ACTGCCACCA GCAATAGCCT GGAGAGAAAT GGGACCCTTC AAGATAACAC AGCCCAGACC
    TCAGCCTACA TTCAATATGA GCCCCACCTC CTGTTCTCCA GTGAGTCCAC TCTGCACCGC
    TATGAGGTTC ACCCATACGG GACCCTCCCA GTGGGTCCCG AATTCAAAAC CACTCTTAGG
    GTTCAGAACC TCGGCTGCTA TGTGGTCAGT GGCCTCATCC TCTCTGCCCT CCTTCCAGCT
    GTAGCCCATG GGGGCAATTA CTTCCTGTCA TTGTCTCAAG TCATCACTAA CAATGCAAGC
    TGCACAGTAC AGAATCTGAC CGAGCCCCCA GGGCCCCCTG TGCACCCAGA GGAGTTTCAG
    CACACAAACA GACTGAATGG GAGTAACACT CGCTGTCAGG TCGTGAGGTG CCACCTTGGG
    CGACTGGCAA AGGGGACCGA GGTCTCTGTG GGACTGCTGA GGCTGGTTCA CAATGAATTT
    TTCCGGAGGG CCAAATTCAA GTCTCTGACA GTGGTCAGCA CCTTTGAGCT GGGAGCTAAG
    GAGGGCAGTG TCCTACAGCT GACGGAAGCC TCTCGTTGGA GCGAGAGCCT GCTGGAGGTG
    ATTCAGGCCC GCCCTGTCCT CATCTCCCTG TGGATCCTCA TTGGCAGTGT CCTGGGGGGG
    CTGCTTCTGC TCGCTCTCCT TGTCTTCTGT CTTTGGAAGC TTGGCTTCTT CTCCCGAAAG
    AAAATCCCCG AGGAAGAAAA AAGAGAAGAG AAATTGGAGC AATGA

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

    CloneID OAc96538
    Clone ID Related Accession (Same CDS sequence) XM_019805224.1
    Accession Version XM_019805224.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3495bp)
    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 1482768000000
    Organism Ailuropoda melanoleuca(giant panda)
    Product integrin alpha-10 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003218110.1) 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 :: Ailuropoda melanoleuca 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
    3421
    3481
    ATGGAACTCC TCCTCATCCC TCACCTGCTC TTGCCCGTGA TGGTCCTGAC AGGTCTGTGC 
    TCCCCCTTTA ACCTGGATGT GCACCACCCA CGCCTATTCC CAGGGCCACC TGAGGCTGAA
    TTCGGATATA GTGTCTTACA ACATGTCGGG GGTGGACGTC GATGGATGCT GGTGGGTGCC
    CCCTGGGATG GGCCTTCAGG TGACAGAAGG GGGGACGTTT ATCGCTGCCC TGTAGGGGGC
    TCCCACAGTG CTCCGTGTGC CAAAGGCCAC TTGGGTGACT ATCCACTGGG AAATTCATCT
    CATCCTGCTA TGAATATGCA CCTGGGAATG TCTCTACTAG AGACAGACAA TGATGGGGGA
    TTCATGGCTT GTGCCCCTCT CTGGTCTCGT GCTTGTGGCT CCTCTGTCTT CAGTTCTGGG
    ATATGTGCCC GTGTAGACGC TTCATTCCGG CCCCAGGGAA GCCTGGCACC CACCGCACAA
    CGCTGTCCCA CCTACATGGA TGTTGTCATT GTCTTGGATG GCTCCAATAG CATCTACCCC
    TGGTCTGAAG TTCAGACTTT CCTACGAAGA CTGGTAGGGA GACTGTTTAT TGACCCGGAG
    CAGATACAGG TGGGACTGGT ACAGTATGGG GAGAGCCCCG TGCATGAGTG GTCCCTGGGA
    GATTTCCGAA CCAAGGACGA AGTGGTGAGG GCAGCGAGGA ACTTGAGTCG GCGAGAGGGA
    CGAGAAACAA AGACTGCCCA AGCAATCCTG GTGGCCTGCA CAGAAGGATT CAGTCTGTCC
    CGTGGGGGCC GGCCAGAGGC TGCCAGGCTG CTGGTGGTTG TCACCGACGG AGAGTCGCAT
    GATGGCGAGG AGCTTCCCGC CGCACTAAAG GCCTGTGAGG CTGGAAGAGT GACCCGCTAT
    GGGATCGCGG TCCTTGGCCA CTACCTCCGG CGGCAGCGAG ACCCCACGTC TTTCCTGCGG
    GAAATCAGGA CGATTGCCAG TGACCCGGAT GAGAGATTCT TCTTCAACGT CACAGATGAA
    GCTGCGCTGA CTGACATTGT GGACGCGCTG GGAGACCGGA TCTTTGGCCT TGAGGGGTCC
    CATGGAGAAA ATGAAAGCTC TTTTGGGCTG GAAATGTCTC AGATTGGTTT CTCTACTCAT
    CGGCTGAAGG ATGGGATTCT CTTTGGAATG GTGGGGGCCT ATGACTGGGG GGGCTCCGTG
    TTATGGCTTG AAGAAGGTCA CCGCCTTTTC CCCCCACGGA CGGCCCTGGA AGATGAGTTC
    CCCCCTGCTT TGCAGAACCA CGCAGCCTAC TTGGGTTACT CTGTTTCCTC CATGCTTTTG
    CGGGGTGGAC GCCGCCTCTT TCTCTCGGGG GCTCCTCGGT TTAGACATAG AGGAAAGGTC
    ATCGCCTTCC AGCTTAAGAA AGATGGGGCT GTGAGGGTTG CCCAGAGCCT CCAGGGAGAG
    CAGATCGGCT CCTACTTCGG CAGTGAACTC TGTCCGTTGG ATACGGACGG GGATGGAACA
    ACCGATGTCT TACTTGTGGC TGCCCCCATG TTCCTGGGAC CCCAGAACAA GGAGACAGGA
    CGTGTTTATG TGTATCTGGT GGGTCAGGCC TTGCTGACAC TCCAGGCAAC ACTTCAGCCA
    GAACCCCCCC AGGATGCTCG GTTTGGCTTT GCCATGGGTG CCCTTCCTGA TCTGAACCAA
    GACGGTTTTG CTGACGTGGC TGTGGGGGCG CCCCTGGAGG ACGGACATCA CGGAGCCCTG
    TACCTATATC ATGGCACCCA GAGTGGACTC AGGCCCCGGC CCGCCCAGAG GATTGCTGCC
    ATCTCCATGC CACAGGCCCT CAGCTACTTT GGCCGGAGTG TGGACGGCCG GCTGGACCTG
    GATGGAGATA ACCTGGTAGA TGTGGCCGTG GGCGCCCAGG GGGCAGCCGT CCTGCTCAGC
    TCCCGGCCCA TTGTCCACCT GGCCCCTTCA CTGGAGGTGA CCCCGCCAGC CATCAGTGTG
    GTTCAGAGGG ACTGCAGCCG GCGAGGCCAG GAGGCAACCT GCCTTTCTGC AGCCCTTTGC
    TTCCAAGTGA CCTCGCGCAC TCCTGGCCGC TGGGATCGCC GATTCTATCT GCGGTTTACG
    GCATCCCTGG ATGAGTGGAC GGCGGGGGCA CGTGCTGCGT TTGATGGCTC TGGCCAGAGG
    CTGTCCCCTC GGAGGCTCCG GCTCAGCGTG GGGAATGTCA CTTGCGAGCA GCTGAGCTTC
    CATGTGCTGG ACACCTCAGA TTACCTCCGG CCACTGGCCT TGACTGTGAC CTTTGCATTG
    GACAACACCA CGAAGCCAGG GCCTGTGCTG GATGAAGGCT CACCCACCTC CATACGAAAG
    CTGGTCCCCT TCTCGAAGGA TTGTGGCCCT GACAATGAAT GTGTCACTGA CCTGGTGCTT
    CGAGCTAATA TGGACATCAA AGGTTCCAGG AAGGACCCGT TTATAGTTCG AGGAGGTCGG
    CAGAAAGTGT TGGTGTCAGC AACTCTGGAG AACAGGAAGG AAAATGCCTA CAACACTAGC
    CTGAGTCTCA GCTTCTCTAG AAACCTCCAC TTGGCCAGTT TCACGCCTCA GAGGGACAGC
    CCTGTGAAGG TGGAATGCTC CGCCCCTTCC CCTCATGTCC GGCTCTGCAG TGTGGGGCAC
    CCTGTCTTTC AGACCGGAGC CAAGGTGACC TTCCTGCTGG AGTTTGAGTT TAGCTGCTCT
    TCCCTCCTGA GCCAGGTCCT TGTGAGGCTG ACTGCCACCA GCAATAGCCT GGAGAGAAAT
    GGGACCCTTC AAGATAACAC AGCCCAGACC TCAGCCTACA TTCAATATGA GCCCCACCTC
    CTGTTCTCCA GTGAGTCCAC TCTGCACCGC TATGAGGTTC ACCCATACGG GACCCTCCCA
    GTGGGTCCCG AATTCAAAAC CACTCTTAGG GTTCAGAACC TCGGCTGCTA TGTGGTCAGT
    GGCCTCATCC TCTCTGCCCT CCTTCCAGCT GTAGCCCATG GGGGCAATTA CTTCCTGTCA
    TTGTCTCAAG TCATCACTAA CAATGCAAGC TGCACAGTAC AGAATCTGAC CGAGCCCCCA
    GGGCCCCCTG TGCACCCAGA GGAGTTTCAG CACACAAACA GACTGAATGG GAGTAACACT
    CGCTGTCAGG TCGTGAGGTG CCACCTTGGG CGACTGGCAA AGGGGACCGA GGTCTCTGTG
    GGACTGCTGA GGCTGGTTCA CAATGAATTT TTCCGGAGGG CCAAATTCAA GTCTCTGACA
    GTGGTCAGCA CCTTTGAGCT GGGAGCTAAG GAGGGCAGTG TCCTACAGCT GACGGAAGCC
    TCTCGTTGGA GCGAGAGCCT GCTGGAGGTG ATTCAGGCCC GCCCTGTCCT CATCTCCCTG
    TGGATCCTCA TTGGCAGTGT CCTGGGGGGG CTGCTTCTGC TCGCTCTCCT TGTCTTCTGT
    CTTTGGAAGC TTGGCTTCTT CTCCCGAAAG AAAATCCCCG AGGAAGAAAA AAGAGAAGAG
    AAATTGGAGC AATGA

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

    RefSeq XP_019660783.1
    CDS53..3547
    Translation

    Target ORF information:

    RefSeq Version XM_019805224.1
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca integrin subunit alpha 10 (ITGA10), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019805224.1

    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
    ATGGAACTCC TCCTCATCCC TCACCTGCTC TTGCCCGTGA TGGTCCTGAC AGGTCTGTGC 
    TCCCCCTTTA ACCTGGATGT GCACCACCCA CGCCTATTCC CAGGGCCACC TGAGGCTGAA
    TTCGGATATA GTGTCTTACA ACATGTCGGG GGTGGACGTC GATGGATGCT GGTGGGTGCC
    CCCTGGGATG GGCCTTCAGG TGACAGAAGG GGGGACGTTT ATCGCTGCCC TGTAGGGGGC
    TCCCACAGTG CTCCGTGTGC CAAAGGCCAC TTGGGTGACT ATCCACTGGG AAATTCATCT
    CATCCTGCTA TGAATATGCA CCTGGGAATG TCTCTACTAG AGACAGACAA TGATGGGGGA
    TTCATGGCTT GTGCCCCTCT CTGGTCTCGT GCTTGTGGCT CCTCTGTCTT CAGTTCTGGG
    ATATGTGCCC GTGTAGACGC TTCATTCCGG CCCCAGGGAA GCCTGGCACC CACCGCACAA
    CGCTGTCCCA CCTACATGGA TGTTGTCATT GTCTTGGATG GCTCCAATAG CATCTACCCC
    TGGTCTGAAG TTCAGACTTT CCTACGAAGA CTGGTAGGGA GACTGTTTAT TGACCCGGAG
    CAGATACAGG TGGGACTGGT ACAGTATGGG GAGAGCCCCG TGCATGAGTG GTCCCTGGGA
    GATTTCCGAA CCAAGGACGA AGTGGTGAGG GCAGCGAGGA ACTTGAGTCG GCGAGAGGGA
    CGAGAAACAA AGACTGCCCA AGCAATCCTG GTGGCCTGCA CAGAAGGATT CAGTCTGTCC
    CGTGGGGGCC GGCCAGAGGC TGCCAGGCTG CTGGTGGTTG TCACCGACGG AGAGTCGCAT
    GATGGCGAGG AGCTTCCCGC CGCACTAAAG GCCTGTGAGG CTGGAAGAGT GACCCGCTAT
    GGGATCGCGG TCCTTGGCCA CTACCTCCGG CGGCAGCGAG ACCCCACGTC TTTCCTGCGG
    GAAATCAGGA CGATTGCCAG TGACCCGGAT GAGAGATTCT TCTTCAACGT CACAGATGAA
    GCTGCGCTGA CTGACATTGT GGACGCGCTG GGAGACCGGA TCTTTGGCCT TGAGGGGTCC
    CATGGAGAAA ATGAAAGCTC TTTTGGGCTG GAAATGTCTC AGATTGGTTT CTCTACTCAT
    CGGCTGAAGG ATGGGATTCT CTTTGGAATG GTGGGGGCCT ATGACTGGGG GGGCTCCGTG
    TTATGGCTTG AAGAAGGTCA CCGCCTTTTC CCCCCACGGA CGGCCCTGGA AGATGAGTTC
    CCCCCTGCTT TGCAGAACCA CGCAGCCTAC TTGGGTTACT CTGTTTCCTC CATGCTTTTG
    CGGGGTGGAC GCCGCCTCTT TCTCTCGGGG GCTCCTCGGT TTAGACATAG AGGAAAGGTC
    ATCGCCTTCC AGCTTAAGAA AGATGGGGCT GTGAGGGTTG CCCAGAGCCT CCAGGGAGAG
    CAGATCGGCT CCTACTTCGG CAGTGAACTC TGTCCGTTGG ATACGGACGG GGATGGAACA
    ACCGATGTCT TACTTGTGGC TGCCCCCATG TTCCTGGGAC CCCAGAACAA GGAGACAGGA
    CGTGTTTATG TGTATCTGGT GGGTCAGGCC TTGCTGACAC TCCAGGCAAC ACTTCAGCCA
    GAACCCCCCC AGGATGCTCG GTTTGGCTTT GCCATGGGTG CCCTTCCTGA TCTGAACCAA
    GACGGTTTTG CTGACGTGGC TGTGGGGGCG CCCCTGGAGG ACGGACATCA CGGAGCCCTG
    TACCTATATC ATGGCACCCA GAGTGGACTC AGGCCCCGGC CCGCCCAGAG GATTGCTGCC
    ATCTCCATGC CACAGGCCCT CAGCTACTTT GGCCGGAGTG TGGACGGCCG GCTGGACCTG
    GATGGAGATA ACCTGGTAGA TGTGGCCGTG GGCGCCCAGG GGGCAGCCGT CCTGCTCAGC
    TCCCGGCCCA TTGTCCACCT GGCCCCTTCA CTGGAGGTGA CCCCGCCAGC CATCAGTGTG
    GTTCAGAGGG ACTGCAGCCG GCGAGGCCAG GAGGCAACCT GCCTTTCTGC AGCCCTTTGC
    TTCCAAGTGA CCTCGCGCAC TCCTGGCCGC TGGGATCGCC GATTCTATCT GCGGTTTACG
    GCATCCCTGG ATGAGTGGAC GGCGGGGGCA CGTGCTGCGT TTGATGGCTC TGGCCAGAGG
    CTGTCCCCTC GGAGGCTCCG GCTCAGCGTG GGGAATGTCA CTTGCGAGCA GCTGAGCTTC
    CATGTGCTGG ACACCTCAGA TTACCTCCGG CCACTGGCCT TGACTGTGAC CTTTGCATTG
    GACAACACCA CGAAGCCAGG GCCTGTGCTG GATGAAGGCT CACCCACCTC CATACGAAAG
    CTGGTCCCCT TCTCGAAGGA TTGTGGCCCT GACAATGAAT GTGTCACTGA CCTGGTGCTT
    CGAGCTAATA TGGACATCAA AGGTTCCAGG AAGGACCCGT TTATAGTTCG AGGAGGTCGG
    CAGAAAGTGT TGGTGTCAGC AACTCTGGAG AACAGGAAGG AAAATGCCTA CAACACTAGC
    CTGAGTCTCA GCTTCTCTAG AAACCTCCAC TTGGCCAGTT TCACGCCTCA GAGGGACAGC
    CCTGTGAAGG TGGAATGCTC CGCCCCTTCC CCTCATGTCC GGCTCTGCAG TGTGGGGCAC
    CCTGTCTTTC AGACCGGAGC CAAGGTGACC TTCCTGCTGG AGTTTGAGTT TAGCTGCTCT
    TCCCTCCTGA GCCAGGTCCT TGTGAGGCTG ACTGCCACCA GCAATAGCCT GGAGAGAAAT
    GGGACCCTTC AAGATAACAC AGCCCAGACC TCAGCCTACA TTCAATATGA GCCCCACCTC
    CTGTTCTCCA GTGAGTCCAC TCTGCACCGC TATGAGGTTC ACCCATACGG GACCCTCCCA
    GTGGGTCCCG AATTCAAAAC CACTCTTAGG GTTCAGAACC TCGGCTGCTA TGTGGTCAGT
    GGCCTCATCC TCTCTGCCCT CCTTCCAGCT GTAGCCCATG GGGGCAATTA CTTCCTGTCA
    TTGTCTCAAG TCATCACTAA CAATGCAAGC TGCACAGTAC AGAATCTGAC CGAGCCCCCA
    GGGCCCCCTG TGCACCCAGA GGAGTTTCAG CACACAAACA GACTGAATGG GAGTAACACT
    CGCTGTCAGG TCGTGAGGTG CCACCTTGGG CGACTGGCAA AGGGGACCGA GGTCTCTGTG
    GGACTGCTGA GGCTGGTTCA CAATGAATTT TTCCGGAGGG CCAAATTCAA GTCTCTGACA
    GTGGTCAGCA CCTTTGAGCT GGGAGCTAAG GAGGGCAGTG TCCTACAGCT GACGGAAGCC
    TCTCGTTGGA GCGAGAGCCT GCTGGAGGTG ATTCAGGCCC GCCCTGTCCT CATCTCCCTG
    TGGATCCTCA TTGGCAGTGT CCTGGGGGGG CTGCTTCTGC TCGCTCTCCT TGTCTTCTGT
    CTTTGGAAGC TTGGCTTCTT CTCCCGAAAG AAAATCCCCG AGGAAGAAAA AAGAGAAGAG
    AAATTGGAGC AATGA

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

    CloneID OAc96539
    Clone ID Related Accession (Same CDS sequence) XM_019805225.1
    Accession Version XM_019805225.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3348bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1482768000000
    Organism Ailuropoda melanoleuca(giant panda)
    Product integrin alpha-10 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003218110.1) 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 :: Ailuropoda melanoleuca 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
    ATGGAACTCC TCCTCATCCC TCACCTGCTC TTGCCCGTGA TGGTCCTGAC AGGTCTGTGC 
    TCCCCCTTTA ACCTGGATGT GCACCACCCA CGCCTATTCC CAGGGCCACC TGAGGCTGAA
    TTCGGATATA GTGTCTTACA ACATGTCGGG GGTGGACGTC GATGGATGCT GGTGGGTGCC
    CCCTGGGATG GGCCTTCAGG TGACAGAAGG GGGGACGTTT ATCGCTGCCC TGTAGGGGGC
    TCCCACAGTG CTCCGTGTGC CAAAGGCCAC TTGGGTGACT ATCCACTGGG AAATTCATCT
    CATCCTGCTA TGAATATGCA CCTGGGAATG TCTCTACTAG AGACAGACAA TGATGGGGGA
    TTCATGGCTT GTGCCCCTCT CTGGTCTCGT GCTTGTGGCT CCTCTGTCTT CAGTTCTGGG
    ATATGTGCCC GTGTAGACGC TTCATTCCGG CCCCAGGGAA GCCTGGCACC CACCGCACAA
    CGCTGTCCCA CCTACATGGA TGTTGTCATT GTCTTGGATG GCTCCAATAG CATCTACCCC
    TGGTCTGAAG TTCAGACTTT CCTACGAAGA CTGGTAGGGA GACTGTTTAT TGACCCGGAG
    CAGATACAGG TGGGACTGGT ACAGTATGGG GAGAGCCCCG TGCATGAGTG GTCCCTGGGA
    GATTTCCGAA CCAAGGACGA AGTGGTGAGG GCAGCGAGGA ACTTGAGTCG GCGAGAGGGA
    CGAGAAACAA AGACTGCCCA AGCAATCCTG GTGGCCTGCA CAGAAGGATT CAGTCTGTCC
    CGTGGGGGCC GGCCAGAGGC TGCCAGGCTG CTGGTGGTTG TCACCGACGG AGAGTCGCAT
    GATGGCGAGG AGCTTCCCGC CGCACTAAAG GCCTGTGAGG CTGGAAGAGT GACCCGCTAT
    GGGATCGCGG TCCTTGGCCA CTACCTCCGG CGGCAGCGAG ACCCCACGTC TTTCCTGCGG
    GAAATCAGGA CGATTGCCAG TGACCCGGAT GAGAGATTCT TCTTCAACGT CACAGATGAA
    GCTGCGCTGA CTGACATTGT GGACGCGCTG GGAGACCGGA TCTTTGGCCT TGAGGGGTCC
    CATGGAGAAA ATGAAAGCTC TTTTGGGCTG GAAATGTCTC AGATTGGTTT CTCTACTCAT
    CGGCTGAAGG ATGGGATTCT CTTTGGAATG GTGGGGGCCT ATGACTGGGG GGGCTCCGTG
    TTATGGCTTG AAGAAGGTCA CCGCCTTTTC CCCCCACGGA CGGCCCTGGA AGATGAGTTC
    CCCCCTGCTT TGCAGAACCA CGCAGCCTAC TTGGGTTACT CTGTTTCCTC CATGCTTTTG
    CGGGGTGGAC GCCGCCTCTT TCTCTCGGGG GCTCCTCGGT TTAGACATAG AGGAAAGGTC
    ATCGCCTTCC AGCTTAAGAA AGATGGGGCT GTGAGGGTTG CCCAGAGCCT CCAGGGAGAG
    CAGATCGGCT CCTACTTCGG CAGTGAACTC TGTCCGTTGG ATACGGACGG GGATGGAACA
    ACCGATGTCT TACTTGTGGC TGCCCCCATG TTCCTGGGAC CCCAGAACAA GGAGACAGGA
    CGTGTTTATG TGTATCTGGT GGGTCAGCAG GCCTTGCTGA CACTCCAGGC AACACTTCAG
    CCAGAACCCC CCCAGGATGC TCGGTTTGGC TTTGCCATGG GTGCCCTTCC TGATCTGAAC
    CAAGACGGTT TTGCTGACGT GGCTGTGGGG GCGCCCCTGG AGGACGGACA TCACGGAGCC
    CTGTACCTAT ATCATGGCAC CCAGAGTGGA CTCAGGCCCC GGCCCGCCCA GAGGATTGCT
    GCCATCTCCA TGCCACAGGC CCTCAGCTAC TTTGGCCGGA GTGTGGACGG CCGGCTGGAC
    CTGGATGGAG ATAACCTGGT AGATGTGGCC GTGGGCGCCC AGGGGGCAGC CGTCCTGCTC
    AGCTCCCGGC CCATTGTCCA CCTGGCCCCT TCACTGGAGG TGACCCCGCC AGCCATCAGT
    GTGGTTCAGA GGGACTGCAG CCGGCGAGGC CAGGAGGCAA CCTGCCTTTC TGCAGCCCTT
    TGCTTCCAAG TGACCTCGCG CACTCCTGGC CGCTGGGATC GCCGATTCTA TCTGCGGTTT
    ACGGCATCCC TGGATGAGTG GACGGCGGGG GCACGTGCTG CGTTTGATGG CTCTGGCCAG
    AGGCTGTCCC CTCGGAGGCT CCGGCTCAGC GTGGGGAATG TCACTTGCGA GCAGCTGAGC
    TTCCATGTGC TGGACACCTC AGATTACCTC CGGCCACTGG CCTTGACTGT GACCTTTGCA
    TTGGACAACA CCACGAAGCC AGGGCCTGTG CTGGATGAAG GCTCACCCAC CTCCATACGA
    AAGCTGGTCC CCTTCTCGAA GGATTGTGGC CCTGACAATG AATGTGTCAC TGACCTGGTG
    CTTCGAGCTA ATATGGACAT CAAAGGTTCC AGGAAGGACC CGTTTATAGT TCGAGGAGGT
    CGGCAGAAAG TGTTGGTGTC AGCAACTCTG GAGAACAGGA AGGAAAATGC CTACAACACT
    AGCCTGAGTC TCAGCTTCTC TAGAAACCTC CACTTGGCCA GTTTCACGCC TCAGAGGGAC
    AGCCCTGTGA AGGTGGAATG CTCCGCCCCT TCCCCTCATG TCCGGCTCTG CAGTGTGGGG
    CACCCTGTCT TTCAGACCGG AGCCAAGGTG ACCTTCCTGC TGGAGTTTGA GTTTAGCTGC
    TCTTCCCTCC TGAGCCAGGT CCTTGTGAGG CTGACTGCCA CCAGCAATAG CCTGGAGAGA
    AATGGGACCC TTCAAGATAA CACAGCCCAG ACCTCAGCCT ACATTCAATA TGAGCCCCAC
    CTCCTGTTCT CCAGTGAGTC CACTCTGCAC CGCTATGAGG TTCACCCATA CGGGACCCTC
    CCAGTGGGTC CCGAATTCAA AACCACTCTT AGGGTTCAGA ACCTCGGCTG CTATGTGGTC
    AGTGGCCTCA TCCTCTCTGC CCTCCTTCCA GCTGTAGCCC ATGGGGGCAA TTACTTCCTG
    TCATTGTCTC AAGTCATCAC TAACAATGCA AGCTGCACAG TACAGAATCT GACCGAGCCC
    CCAGGGCCCC CTGTGCACCC AGAGGAGTTT CAGCACACAA ACAGACTGAA TGGGAGTAAC
    ACTCGCTGTC AGGTCGTGAG GTGCCACCTT GGGCGACTGG CAAAGGGGAC CGAGGTCTCT
    GTGGGACTGC TGAGGCTGGT TCACAATGAA TTTTTCCGGA GGGCCAAATT CAAGTCTCTG
    ACAGTGGTCA GCACCTTTGA GCTGGGAGCT AAGGAGGGCA GTGTCCTACA GCTGACGGAA
    GCCTCTCGTT GGAGCGAGGC TTCTACTCAC CCCTCTAACG TGAGGTGA

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

    RefSeq XP_019660784.1
    CDS53..3400
    Translation

    Target ORF information:

    RefSeq Version XM_019805225.1
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca integrin subunit alpha 10 (ITGA10), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019805225.1

    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
    ATGGAACTCC TCCTCATCCC TCACCTGCTC TTGCCCGTGA TGGTCCTGAC AGGTCTGTGC 
    TCCCCCTTTA ACCTGGATGT GCACCACCCA CGCCTATTCC CAGGGCCACC TGAGGCTGAA
    TTCGGATATA GTGTCTTACA ACATGTCGGG GGTGGACGTC GATGGATGCT GGTGGGTGCC
    CCCTGGGATG GGCCTTCAGG TGACAGAAGG GGGGACGTTT ATCGCTGCCC TGTAGGGGGC
    TCCCACAGTG CTCCGTGTGC CAAAGGCCAC TTGGGTGACT ATCCACTGGG AAATTCATCT
    CATCCTGCTA TGAATATGCA CCTGGGAATG TCTCTACTAG AGACAGACAA TGATGGGGGA
    TTCATGGCTT GTGCCCCTCT CTGGTCTCGT GCTTGTGGCT CCTCTGTCTT CAGTTCTGGG
    ATATGTGCCC GTGTAGACGC TTCATTCCGG CCCCAGGGAA GCCTGGCACC CACCGCACAA
    CGCTGTCCCA CCTACATGGA TGTTGTCATT GTCTTGGATG GCTCCAATAG CATCTACCCC
    TGGTCTGAAG TTCAGACTTT CCTACGAAGA CTGGTAGGGA GACTGTTTAT TGACCCGGAG
    CAGATACAGG TGGGACTGGT ACAGTATGGG GAGAGCCCCG TGCATGAGTG GTCCCTGGGA
    GATTTCCGAA CCAAGGACGA AGTGGTGAGG GCAGCGAGGA ACTTGAGTCG GCGAGAGGGA
    CGAGAAACAA AGACTGCCCA AGCAATCCTG GTGGCCTGCA CAGAAGGATT CAGTCTGTCC
    CGTGGGGGCC GGCCAGAGGC TGCCAGGCTG CTGGTGGTTG TCACCGACGG AGAGTCGCAT
    GATGGCGAGG AGCTTCCCGC CGCACTAAAG GCCTGTGAGG CTGGAAGAGT GACCCGCTAT
    GGGATCGCGG TCCTTGGCCA CTACCTCCGG CGGCAGCGAG ACCCCACGTC TTTCCTGCGG
    GAAATCAGGA CGATTGCCAG TGACCCGGAT GAGAGATTCT TCTTCAACGT CACAGATGAA
    GCTGCGCTGA CTGACATTGT GGACGCGCTG GGAGACCGGA TCTTTGGCCT TGAGGGGTCC
    CATGGAGAAA ATGAAAGCTC TTTTGGGCTG GAAATGTCTC AGATTGGTTT CTCTACTCAT
    CGGCTGAAGG ATGGGATTCT CTTTGGAATG GTGGGGGCCT ATGACTGGGG GGGCTCCGTG
    TTATGGCTTG AAGAAGGTCA CCGCCTTTTC CCCCCACGGA CGGCCCTGGA AGATGAGTTC
    CCCCCTGCTT TGCAGAACCA CGCAGCCTAC TTGGGTTACT CTGTTTCCTC CATGCTTTTG
    CGGGGTGGAC GCCGCCTCTT TCTCTCGGGG GCTCCTCGGT TTAGACATAG AGGAAAGGTC
    ATCGCCTTCC AGCTTAAGAA AGATGGGGCT GTGAGGGTTG CCCAGAGCCT CCAGGGAGAG
    CAGATCGGCT CCTACTTCGG CAGTGAACTC TGTCCGTTGG ATACGGACGG GGATGGAACA
    ACCGATGTCT TACTTGTGGC TGCCCCCATG TTCCTGGGAC CCCAGAACAA GGAGACAGGA
    CGTGTTTATG TGTATCTGGT GGGTCAGCAG GCCTTGCTGA CACTCCAGGC AACACTTCAG
    CCAGAACCCC CCCAGGATGC TCGGTTTGGC TTTGCCATGG GTGCCCTTCC TGATCTGAAC
    CAAGACGGTT TTGCTGACGT GGCTGTGGGG GCGCCCCTGG AGGACGGACA TCACGGAGCC
    CTGTACCTAT ATCATGGCAC CCAGAGTGGA CTCAGGCCCC GGCCCGCCCA GAGGATTGCT
    GCCATCTCCA TGCCACAGGC CCTCAGCTAC TTTGGCCGGA GTGTGGACGG CCGGCTGGAC
    CTGGATGGAG ATAACCTGGT AGATGTGGCC GTGGGCGCCC AGGGGGCAGC CGTCCTGCTC
    AGCTCCCGGC CCATTGTCCA CCTGGCCCCT TCACTGGAGG TGACCCCGCC AGCCATCAGT
    GTGGTTCAGA GGGACTGCAG CCGGCGAGGC CAGGAGGCAA CCTGCCTTTC TGCAGCCCTT
    TGCTTCCAAG TGACCTCGCG CACTCCTGGC CGCTGGGATC GCCGATTCTA TCTGCGGTTT
    ACGGCATCCC TGGATGAGTG GACGGCGGGG GCACGTGCTG CGTTTGATGG CTCTGGCCAG
    AGGCTGTCCC CTCGGAGGCT CCGGCTCAGC GTGGGGAATG TCACTTGCGA GCAGCTGAGC
    TTCCATGTGC TGGACACCTC AGATTACCTC CGGCCACTGG CCTTGACTGT GACCTTTGCA
    TTGGACAACA CCACGAAGCC AGGGCCTGTG CTGGATGAAG GCTCACCCAC CTCCATACGA
    AAGCTGGTCC CCTTCTCGAA GGATTGTGGC CCTGACAATG AATGTGTCAC TGACCTGGTG
    CTTCGAGCTA ATATGGACAT CAAAGGTTCC AGGAAGGACC CGTTTATAGT TCGAGGAGGT
    CGGCAGAAAG TGTTGGTGTC AGCAACTCTG GAGAACAGGA AGGAAAATGC CTACAACACT
    AGCCTGAGTC TCAGCTTCTC TAGAAACCTC CACTTGGCCA GTTTCACGCC TCAGAGGGAC
    AGCCCTGTGA AGGTGGAATG CTCCGCCCCT TCCCCTCATG TCCGGCTCTG CAGTGTGGGG
    CACCCTGTCT TTCAGACCGG AGCCAAGGTG ACCTTCCTGC TGGAGTTTGA GTTTAGCTGC
    TCTTCCCTCC TGAGCCAGGT CCTTGTGAGG CTGACTGCCA CCAGCAATAG CCTGGAGAGA
    AATGGGACCC TTCAAGATAA CACAGCCCAG ACCTCAGCCT ACATTCAATA TGAGCCCCAC
    CTCCTGTTCT CCAGTGAGTC CACTCTGCAC CGCTATGAGG TTCACCCATA CGGGACCCTC
    CCAGTGGGTC CCGAATTCAA AACCACTCTT AGGGTTCAGA ACCTCGGCTG CTATGTGGTC
    AGTGGCCTCA TCCTCTCTGC CCTCCTTCCA GCTGTAGCCC ATGGGGGCAA TTACTTCCTG
    TCATTGTCTC AAGTCATCAC TAACAATGCA AGCTGCACAG TACAGAATCT GACCGAGCCC
    CCAGGGCCCC CTGTGCACCC AGAGGAGTTT CAGCACACAA ACAGACTGAA TGGGAGTAAC
    ACTCGCTGTC AGGTCGTGAG GTGCCACCTT GGGCGACTGG CAAAGGGGAC CGAGGTCTCT
    GTGGGACTGC TGAGGCTGGT TCACAATGAA TTTTTCCGGA GGGCCAAATT CAAGTCTCTG
    ACAGTGGTCA GCACCTTTGA GCTGGGAGCT AAGGAGGGCA GTGTCCTACA GCTGACGGAA
    GCCTCTCGTT GGAGCGAGGC TTCTACTCAC CCCTCTAACG TGAGGTGA

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