PC cDNA ORF clone, Ailuropoda melanoleuca(giant panda)

The following PC gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the PC 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
OAc14834 XM_011235477.2
Latest version!
Ailuropoda melanoleuca pyruvate carboxylase (PC), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAc14834 XM_019808540.1
Latest version!
Ailuropoda melanoleuca pyruvate carboxylase (PC), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAc98720 XM_019808538.1
Latest version!
Ailuropoda melanoleuca pyruvate carboxylase (PC), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00

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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 OAc14834
    Clone ID Related Accession (Same CDS sequence) XM_011235477.2 , XM_019808540.1
    Accession Version XM_011235477.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3537bp)
    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 2016-12-27
    Organism Ailuropoda melanoleuca(giant panda)
    Product pyruvate carboxylase, mitochondrial isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003218636.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 28, 2016 this sequence version replaced XM_011235477.1. ##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
    ATGCTGAAGT TCCAAACCGT CCGTGGGGGC CTGAGGCTTC TGGGTATCCG CCGAACCTCC 
    ACTGCCCCTG CTGCCTCCCC AAATGTCCGG CGCCTGGAGT ATAAGCCCAT CAAGAAAGTC
    ATGGTGGCCA ACAGAGGTGA GATTGCCATC CGTGTGTTCC GGGCCTGCAC AGAGCTGGGT
    ATCCGCACTG TGGCTGTCTA CTCGGAGCAG GACACAGGCC AGATGCACCG GCAGAAAGCA
    GATGAAGCCT ACCTCATCGG CCGCGGCCTC GCCCCGGTGC AGGCCTATCT GCACATCCCA
    GACATCATCA AGGTGGCCAA GGAGAACAAC GTGGATGCAG TGCACCCCGG CTACGGGTTC
    TTGTCGGAGC GAGCGGACTT CGCCCAGGCC TGTCAGGATG CTGGCGTCCG GTTCATTGGG
    CCGAGCCCCG AGGTGGTCCG CAAGATGGGA GATAAAGTGG AGGCCCGGGC CATCGCCATC
    GCCGCAGGTG TCCCTGTGGT CCCTGGCACA GACGCCCCCA TCACCTCCCT GCACGAGGCC
    CATGAGTTCT CCAACACCTA CGGCTTCCCT ATTATCTTCA AGGCCGCCTA TGGGGGCGGG
    GGGCGTGGCA TGAGGGTCGT GCACAGCTAT GAGGAGCTGG AGGAAAACTA CAACCGGGCC
    TACTCGGAGG CTCTGGCCGC CTTTGGGAAC GGGGCGCTGT TTGTGGAGAA GTTCATCGAG
    AAGCCGCGCC ACATTGAGGT GCAGATCCTG GGAGACCAGT ATGGGAACAT TCTGCACCTG
    TATGAGCGAG ACTGTTCCAT CCAGCGGCGG CACCAGAAAG TGGTCGAGAT TGCCCCTGCC
    GCCCACCTGG ACCCCCAGCT TCGGACTCGG CTCACCAGTG ACTCTGTTAA ACTTGCTAAG
    CAGGTGGGCT ACGAGAACGC GGGCACGGTG GAGTTCCTGG TGGACAGACA CGGCAAGCAT
    TACTTCATTG AGGTCAACTC CCGCCTGCAG GTGGAACACA CTGTCACCGA GGAGATTACC
    GATGTGGACC TGGTCCATGC CCAGATCCAT GTGGCCGAGG GCCGGAGCCT TCCTGACCTG
    GGCCTGCGGC AGGAGAATAT CCGTATCAAC GGCTGTGCTA TTCAGTGCCG GGTCACCACG
    GAGGACCCTG CGCGCAGCTT CCAGCCGGAC ACTGGCCGCA TCGAGGTGTT CCGGAGCGGA
    GAGGGCATGG GCATCCGCCT GGATAATGCA TCTGCATTCC AAGGGGCTGT CATCTCTCCA
    CATTATGACT CCCTGCTCGT CAAAGTCATT GCCCACGGCA AAGACCACCC CACGGCTGCC
    ACCAAGATGA GCAGAGCCCT GGCCGAGTTC CGAGTCCGAG GCGTGAAGAC CAACATCCCC
    TTCCTGCAGA ACGTGCTCAA TAACCAGCAG TTCCTGGCAG GCACCGTGGA CACCCAGTTC
    ATCGATGAGA ACCCGGACCT GTTCCAGCTG CGGCCTGCGC AGAACCGGGC TCAGAAGCTG
    CTGCACTACC TTGGTCATGT CATGGTGAAC GGCCCAACCA CCCCAATCCC CGTCAAGGCC
    AGCCCCAGCC CTACGGACCC TGTTGTCCCT GCAGTGCCCA TAGGCCCACC CCCGGCCGGT
    TTCAGAGACA TCCTGCTGCG GGAGGGGCCG GAGGGCTTTG CTCGAGCTGT GCGGAACCAC
    CAGGGGCTGC TGCTGATGGA CACGACCTTC AGGGATGCCC ACCAGTCACT GCTGGCCACG
    CGTGTGCGAA CCCACGATCT CAAAAAGATA GCCCCCTATG TTGCCCACAA CTTCAGCAAG
    CTCTTCAGCA TAGAGAACTG GGGAGGAGCC ACATTTGATG TTGCCATGCG CTTCCTGTAT
    GAGTGTCCCT GGCGGCGGCT GCAGGAGCTC CGGGAGCTCA TCCCCAACAT CCCATTCCAG
    ATGCTACTGC GGGGGGCCAA CGCTGTGGGC TACACCAACT ACCCCGACAA CGTGGTCTTC
    AAGTTCTGTG AGGTAGCCAA GGAGAACGGC ATGGACGTCT TCCGGGTCTT CGACTCCCTC
    AACTACATGC CCAATCTGCT GCTGGGCATG GAGGCCGCGG GCAGTGCCGG TGGTGTGGTG
    GAGGCTGCCA TCTCCTACAC CGGTGACGTG GCTGACCCCA GCCGCACCAA GTACTCGCTG
    CAGTACTACA TGGACTTGGC TGAAGAGCTG GTGCGAGCCG GCACCCACAT CCTGTGCATC
    AAGGACATGG CAGGGCTGCT AAAGCCCATG GCCTGCACCA TGTTGGTCAG CTCCCTCAGG
    GACCGATTCC CCGACCTCCC ACTGCACATC CACACCCACG ACACATCAGG GGCAGGTGTG
    GCAGCTATGT TGGCCTGTGC CCAGGCTGGG GCCGACGTGG TAGATGTGGC GGCTGACTCC
    ATGTCCGGGA TGACGTCACA GCCCAGCATG GGGGCCCTGG TGGCCTGCAC CCGAAGGACT
    CCCCTGGACA CAGGGGTGCC CCTGGAGCGT GTGTTTGACT ACAGTGAGTA CTGGGAGGGG
    GCCCGAGGAT TGTATGCGGC TTTTGACTGC ACGGCCACCA TGAAGTCTGG CAATTCGGAT
    GTCTACGAGA ACGAGATCCC AGGGGGCCAG TACACCAACC TGCACTTCCA GGCACACAGC
    ATGGGGCTTG GCTCCAAGTT CAAGGAGGTC AAGAAGGCCT ATGTGGAGGC CAACCAGATG
    CTGGGAGACC TCATCAAGGT GACACCGTCC TCCAAGATCG TGGGGGACCT GGCCCAGTTC
    ATGGTGCAGA ATGGGCTGAG CCGGGCAGAG GCTGAAGCCC AGGCAGAAGA ACTGTCCTTC
    CCCCGCTCCG TGGTAGAGTT CCTGCAGGGC TACATTGGTA TTCCCCACGG GGGGTTCCCT
    GAGCCCCTTC GCTCTAAGGT GCTAAAGGAC CTGCCAAGGG TGGAGGGGCG GCCTGGCGCC
    TCCCTCCCTC CACTGGATCT GCAGATGCTG GAGAAGGAAC TCATAGAACG GCATGGGGAG
    GAGGTGACCC CAGAGGATGT GCTCTCAGCA GCCATATATC CAGACGTCTT TGCCCACTTT
    AAGGACTTCA CGGCTACCTT TGGCCCCCTG GATAGCCTCA GTACCCGCCT CTTTCTGCAG
    GGACCCAAAA TTGCAGAGGA GTTTGAGGTG GAGCTGGAGC GGGGCAAGAC ACTGCACATC
    AAAGCCCTCG CCATAAGTGA CCTGAACCGG GCTGGCCAGA GGCAGGTCTT CTTTGAGCTC
    AATGGACAGC TGCGGTCCAT TCTGGTCAAG GACACTCAGG CCATGAAGGA GATGCACTTC
    CACCCCAAGG CCCTGAAGGA TGTGAAGGGC CAGATTGGGG CACCCATGCC TGGGAAGGTG
    ATAGACATCA AGGTGGCAGC TGGGGCTAAG GTGGCCAAGG GCCAGCCCCT CTGTGTGCTT
    AGCGCCATGA AGATGGAGAC TGTGGTGACT TCACCCATGG AGGGCACTGT CCGCAAGGTG
    CACGTAACCA CAGACATGAC ACTGGAGGGT GATGACCTCA TCCTGGAGAT TGAGTGA

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

    RefSeq XP_011233779.1
    CDS123..3659
    Translation

    Target ORF information:

    RefSeq Version XM_011235477.2
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca pyruvate carboxylase (PC), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011235477.2

    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
    ATGCTGAAGT TCCAAACCGT CCGTGGGGGC CTGAGGCTTC TGGGTATCCG CCGAACCTCC 
    ACTGCCCCTG CTGCCTCCCC AAATGTCCGG CGCCTGGAGT ATAAGCCCAT CAAGAAAGTC
    ATGGTGGCCA ACAGAGGTGA GATTGCCATC CGTGTGTTCC GGGCCTGCAC AGAGCTGGGT
    ATCCGCACTG TGGCTGTCTA CTCGGAGCAG GACACAGGCC AGATGCACCG GCAGAAAGCA
    GATGAAGCCT ACCTCATCGG CCGCGGCCTC GCCCCGGTGC AGGCCTATCT GCACATCCCA
    GACATCATCA AGGTGGCCAA GGAGAACAAC GTGGATGCAG TGCACCCCGG CTACGGGTTC
    TTGTCGGAGC GAGCGGACTT CGCCCAGGCC TGTCAGGATG CTGGCGTCCG GTTCATTGGG
    CCGAGCCCCG AGGTGGTCCG CAAGATGGGA GATAAAGTGG AGGCCCGGGC CATCGCCATC
    GCCGCAGGTG TCCCTGTGGT CCCTGGCACA GACGCCCCCA TCACCTCCCT GCACGAGGCC
    CATGAGTTCT CCAACACCTA CGGCTTCCCT ATTATCTTCA AGGCCGCCTA TGGGGGCGGG
    GGGCGTGGCA TGAGGGTCGT GCACAGCTAT GAGGAGCTGG AGGAAAACTA CAACCGGGCC
    TACTCGGAGG CTCTGGCCGC CTTTGGGAAC GGGGCGCTGT TTGTGGAGAA GTTCATCGAG
    AAGCCGCGCC ACATTGAGGT GCAGATCCTG GGAGACCAGT ATGGGAACAT TCTGCACCTG
    TATGAGCGAG ACTGTTCCAT CCAGCGGCGG CACCAGAAAG TGGTCGAGAT TGCCCCTGCC
    GCCCACCTGG ACCCCCAGCT TCGGACTCGG CTCACCAGTG ACTCTGTTAA ACTTGCTAAG
    CAGGTGGGCT ACGAGAACGC GGGCACGGTG GAGTTCCTGG TGGACAGACA CGGCAAGCAT
    TACTTCATTG AGGTCAACTC CCGCCTGCAG GTGGAACACA CTGTCACCGA GGAGATTACC
    GATGTGGACC TGGTCCATGC CCAGATCCAT GTGGCCGAGG GCCGGAGCCT TCCTGACCTG
    GGCCTGCGGC AGGAGAATAT CCGTATCAAC GGCTGTGCTA TTCAGTGCCG GGTCACCACG
    GAGGACCCTG CGCGCAGCTT CCAGCCGGAC ACTGGCCGCA TCGAGGTGTT CCGGAGCGGA
    GAGGGCATGG GCATCCGCCT GGATAATGCA TCTGCATTCC AAGGGGCTGT CATCTCTCCA
    CATTATGACT CCCTGCTCGT CAAAGTCATT GCCCACGGCA AAGACCACCC CACGGCTGCC
    ACCAAGATGA GCAGAGCCCT GGCCGAGTTC CGAGTCCGAG GCGTGAAGAC CAACATCCCC
    TTCCTGCAGA ACGTGCTCAA TAACCAGCAG TTCCTGGCAG GCACCGTGGA CACCCAGTTC
    ATCGATGAGA ACCCGGACCT GTTCCAGCTG CGGCCTGCGC AGAACCGGGC TCAGAAGCTG
    CTGCACTACC TTGGTCATGT CATGGTGAAC GGCCCAACCA CCCCAATCCC CGTCAAGGCC
    AGCCCCAGCC CTACGGACCC TGTTGTCCCT GCAGTGCCCA TAGGCCCACC CCCGGCCGGT
    TTCAGAGACA TCCTGCTGCG GGAGGGGCCG GAGGGCTTTG CTCGAGCTGT GCGGAACCAC
    CAGGGGCTGC TGCTGATGGA CACGACCTTC AGGGATGCCC ACCAGTCACT GCTGGCCACG
    CGTGTGCGAA CCCACGATCT CAAAAAGATA GCCCCCTATG TTGCCCACAA CTTCAGCAAG
    CTCTTCAGCA TAGAGAACTG GGGAGGAGCC ACATTTGATG TTGCCATGCG CTTCCTGTAT
    GAGTGTCCCT GGCGGCGGCT GCAGGAGCTC CGGGAGCTCA TCCCCAACAT CCCATTCCAG
    ATGCTACTGC GGGGGGCCAA CGCTGTGGGC TACACCAACT ACCCCGACAA CGTGGTCTTC
    AAGTTCTGTG AGGTAGCCAA GGAGAACGGC ATGGACGTCT TCCGGGTCTT CGACTCCCTC
    AACTACATGC CCAATCTGCT GCTGGGCATG GAGGCCGCGG GCAGTGCCGG TGGTGTGGTG
    GAGGCTGCCA TCTCCTACAC CGGTGACGTG GCTGACCCCA GCCGCACCAA GTACTCGCTG
    CAGTACTACA TGGACTTGGC TGAAGAGCTG GTGCGAGCCG GCACCCACAT CCTGTGCATC
    AAGGACATGG CAGGGCTGCT AAAGCCCATG GCCTGCACCA TGTTGGTCAG CTCCCTCAGG
    GACCGATTCC CCGACCTCCC ACTGCACATC CACACCCACG ACACATCAGG GGCAGGTGTG
    GCAGCTATGT TGGCCTGTGC CCAGGCTGGG GCCGACGTGG TAGATGTGGC GGCTGACTCC
    ATGTCCGGGA TGACGTCACA GCCCAGCATG GGGGCCCTGG TGGCCTGCAC CCGAAGGACT
    CCCCTGGACA CAGGGGTGCC CCTGGAGCGT GTGTTTGACT ACAGTGAGTA CTGGGAGGGG
    GCCCGAGGAT TGTATGCGGC TTTTGACTGC ACGGCCACCA TGAAGTCTGG CAATTCGGAT
    GTCTACGAGA ACGAGATCCC AGGGGGCCAG TACACCAACC TGCACTTCCA GGCACACAGC
    ATGGGGCTTG GCTCCAAGTT CAAGGAGGTC AAGAAGGCCT ATGTGGAGGC CAACCAGATG
    CTGGGAGACC TCATCAAGGT GACACCGTCC TCCAAGATCG TGGGGGACCT GGCCCAGTTC
    ATGGTGCAGA ATGGGCTGAG CCGGGCAGAG GCTGAAGCCC AGGCAGAAGA ACTGTCCTTC
    CCCCGCTCCG TGGTAGAGTT CCTGCAGGGC TACATTGGTA TTCCCCACGG GGGGTTCCCT
    GAGCCCCTTC GCTCTAAGGT GCTAAAGGAC CTGCCAAGGG TGGAGGGGCG GCCTGGCGCC
    TCCCTCCCTC CACTGGATCT GCAGATGCTG GAGAAGGAAC TCATAGAACG GCATGGGGAG
    GAGGTGACCC CAGAGGATGT GCTCTCAGCA GCCATATATC CAGACGTCTT TGCCCACTTT
    AAGGACTTCA CGGCTACCTT TGGCCCCCTG GATAGCCTCA GTACCCGCCT CTTTCTGCAG
    GGACCCAAAA TTGCAGAGGA GTTTGAGGTG GAGCTGGAGC GGGGCAAGAC ACTGCACATC
    AAAGCCCTCG CCATAAGTGA CCTGAACCGG GCTGGCCAGA GGCAGGTCTT CTTTGAGCTC
    AATGGACAGC TGCGGTCCAT TCTGGTCAAG GACACTCAGG CCATGAAGGA GATGCACTTC
    CACCCCAAGG CCCTGAAGGA TGTGAAGGGC CAGATTGGGG CACCCATGCC TGGGAAGGTG
    ATAGACATCA AGGTGGCAGC TGGGGCTAAG GTGGCCAAGG GCCAGCCCCT CTGTGTGCTT
    AGCGCCATGA AGATGGAGAC TGTGGTGACT TCACCCATGG AGGGCACTGT CCGCAAGGTG
    CACGTAACCA CAGACATGAC ACTGGAGGGT GATGACCTCA TCCTGGAGAT TGAGTGA

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

    CloneID OAc14834
    Clone ID Related Accession (Same CDS sequence) XM_011235477.2 , XM_019808540.1
    Accession Version XM_019808540.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3537bp)
    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 2016-12-27
    Organism Ailuropoda melanoleuca(giant panda)
    Product pyruvate carboxylase, mitochondrial isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003218636.1) 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
    ATGCTGAAGT TCCAAACCGT CCGTGGGGGC CTGAGGCTTC TGGGTATCCG CCGAACCTCC 
    ACTGCCCCTG CTGCCTCCCC AAATGTCCGG CGCCTGGAGT ATAAGCCCAT CAAGAAAGTC
    ATGGTGGCCA ACAGAGGTGA GATTGCCATC CGTGTGTTCC GGGCCTGCAC AGAGCTGGGT
    ATCCGCACTG TGGCTGTCTA CTCGGAGCAG GACACAGGCC AGATGCACCG GCAGAAAGCA
    GATGAAGCCT ACCTCATCGG CCGCGGCCTC GCCCCGGTGC AGGCCTATCT GCACATCCCA
    GACATCATCA AGGTGGCCAA GGAGAACAAC GTGGATGCAG TGCACCCCGG CTACGGGTTC
    TTGTCGGAGC GAGCGGACTT CGCCCAGGCC TGTCAGGATG CTGGCGTCCG GTTCATTGGG
    CCGAGCCCCG AGGTGGTCCG CAAGATGGGA GATAAAGTGG AGGCCCGGGC CATCGCCATC
    GCCGCAGGTG TCCCTGTGGT CCCTGGCACA GACGCCCCCA TCACCTCCCT GCACGAGGCC
    CATGAGTTCT CCAACACCTA CGGCTTCCCT ATTATCTTCA AGGCCGCCTA TGGGGGCGGG
    GGGCGTGGCA TGAGGGTCGT GCACAGCTAT GAGGAGCTGG AGGAAAACTA CAACCGGGCC
    TACTCGGAGG CTCTGGCCGC CTTTGGGAAC GGGGCGCTGT TTGTGGAGAA GTTCATCGAG
    AAGCCGCGCC ACATTGAGGT GCAGATCCTG GGAGACCAGT ATGGGAACAT TCTGCACCTG
    TATGAGCGAG ACTGTTCCAT CCAGCGGCGG CACCAGAAAG TGGTCGAGAT TGCCCCTGCC
    GCCCACCTGG ACCCCCAGCT TCGGACTCGG CTCACCAGTG ACTCTGTTAA ACTTGCTAAG
    CAGGTGGGCT ACGAGAACGC GGGCACGGTG GAGTTCCTGG TGGACAGACA CGGCAAGCAT
    TACTTCATTG AGGTCAACTC CCGCCTGCAG GTGGAACACA CTGTCACCGA GGAGATTACC
    GATGTGGACC TGGTCCATGC CCAGATCCAT GTGGCCGAGG GCCGGAGCCT TCCTGACCTG
    GGCCTGCGGC AGGAGAATAT CCGTATCAAC GGCTGTGCTA TTCAGTGCCG GGTCACCACG
    GAGGACCCTG CGCGCAGCTT CCAGCCGGAC ACTGGCCGCA TCGAGGTGTT CCGGAGCGGA
    GAGGGCATGG GCATCCGCCT GGATAATGCA TCTGCATTCC AAGGGGCTGT CATCTCTCCA
    CATTATGACT CCCTGCTCGT CAAAGTCATT GCCCACGGCA AAGACCACCC CACGGCTGCC
    ACCAAGATGA GCAGAGCCCT GGCCGAGTTC CGAGTCCGAG GCGTGAAGAC CAACATCCCC
    TTCCTGCAGA ACGTGCTCAA TAACCAGCAG TTCCTGGCAG GCACCGTGGA CACCCAGTTC
    ATCGATGAGA ACCCGGACCT GTTCCAGCTG CGGCCTGCGC AGAACCGGGC TCAGAAGCTG
    CTGCACTACC TTGGTCATGT CATGGTGAAC GGCCCAACCA CCCCAATCCC CGTCAAGGCC
    AGCCCCAGCC CTACGGACCC TGTTGTCCCT GCAGTGCCCA TAGGCCCACC CCCGGCCGGT
    TTCAGAGACA TCCTGCTGCG GGAGGGGCCG GAGGGCTTTG CTCGAGCTGT GCGGAACCAC
    CAGGGGCTGC TGCTGATGGA CACGACCTTC AGGGATGCCC ACCAGTCACT GCTGGCCACG
    CGTGTGCGAA CCCACGATCT CAAAAAGATA GCCCCCTATG TTGCCCACAA CTTCAGCAAG
    CTCTTCAGCA TAGAGAACTG GGGAGGAGCC ACATTTGATG TTGCCATGCG CTTCCTGTAT
    GAGTGTCCCT GGCGGCGGCT GCAGGAGCTC CGGGAGCTCA TCCCCAACAT CCCATTCCAG
    ATGCTACTGC GGGGGGCCAA CGCTGTGGGC TACACCAACT ACCCCGACAA CGTGGTCTTC
    AAGTTCTGTG AGGTAGCCAA GGAGAACGGC ATGGACGTCT TCCGGGTCTT CGACTCCCTC
    AACTACATGC CCAATCTGCT GCTGGGCATG GAGGCCGCGG GCAGTGCCGG TGGTGTGGTG
    GAGGCTGCCA TCTCCTACAC CGGTGACGTG GCTGACCCCA GCCGCACCAA GTACTCGCTG
    CAGTACTACA TGGACTTGGC TGAAGAGCTG GTGCGAGCCG GCACCCACAT CCTGTGCATC
    AAGGACATGG CAGGGCTGCT AAAGCCCATG GCCTGCACCA TGTTGGTCAG CTCCCTCAGG
    GACCGATTCC CCGACCTCCC ACTGCACATC CACACCCACG ACACATCAGG GGCAGGTGTG
    GCAGCTATGT TGGCCTGTGC CCAGGCTGGG GCCGACGTGG TAGATGTGGC GGCTGACTCC
    ATGTCCGGGA TGACGTCACA GCCCAGCATG GGGGCCCTGG TGGCCTGCAC CCGAAGGACT
    CCCCTGGACA CAGGGGTGCC CCTGGAGCGT GTGTTTGACT ACAGTGAGTA CTGGGAGGGG
    GCCCGAGGAT TGTATGCGGC TTTTGACTGC ACGGCCACCA TGAAGTCTGG CAATTCGGAT
    GTCTACGAGA ACGAGATCCC AGGGGGCCAG TACACCAACC TGCACTTCCA GGCACACAGC
    ATGGGGCTTG GCTCCAAGTT CAAGGAGGTC AAGAAGGCCT ATGTGGAGGC CAACCAGATG
    CTGGGAGACC TCATCAAGGT GACACCGTCC TCCAAGATCG TGGGGGACCT GGCCCAGTTC
    ATGGTGCAGA ATGGGCTGAG CCGGGCAGAG GCTGAAGCCC AGGCAGAAGA ACTGTCCTTC
    CCCCGCTCCG TGGTAGAGTT CCTGCAGGGC TACATTGGTA TTCCCCACGG GGGGTTCCCT
    GAGCCCCTTC GCTCTAAGGT GCTAAAGGAC CTGCCAAGGG TGGAGGGGCG GCCTGGCGCC
    TCCCTCCCTC CACTGGATCT GCAGATGCTG GAGAAGGAAC TCATAGAACG GCATGGGGAG
    GAGGTGACCC CAGAGGATGT GCTCTCAGCA GCCATATATC CAGACGTCTT TGCCCACTTT
    AAGGACTTCA CGGCTACCTT TGGCCCCCTG GATAGCCTCA GTACCCGCCT CTTTCTGCAG
    GGACCCAAAA TTGCAGAGGA GTTTGAGGTG GAGCTGGAGC GGGGCAAGAC ACTGCACATC
    AAAGCCCTCG CCATAAGTGA CCTGAACCGG GCTGGCCAGA GGCAGGTCTT CTTTGAGCTC
    AATGGACAGC TGCGGTCCAT TCTGGTCAAG GACACTCAGG CCATGAAGGA GATGCACTTC
    CACCCCAAGG CCCTGAAGGA TGTGAAGGGC CAGATTGGGG CACCCATGCC TGGGAAGGTG
    ATAGACATCA AGGTGGCAGC TGGGGCTAAG GTGGCCAAGG GCCAGCCCCT CTGTGTGCTT
    AGCGCCATGA AGATGGAGAC TGTGGTGACT TCACCCATGG AGGGCACTGT CCGCAAGGTG
    CACGTAACCA CAGACATGAC ACTGGAGGGT GATGACCTCA TCCTGGAGAT TGAGTGA

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

    RefSeq XP_019664099.1
    CDS256..3792
    Translation

    Target ORF information:

    RefSeq Version XM_019808540.1
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca pyruvate carboxylase (PC), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019808540.1

    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
    ATGCTGAAGT TCCAAACCGT CCGTGGGGGC CTGAGGCTTC TGGGTATCCG CCGAACCTCC 
    ACTGCCCCTG CTGCCTCCCC AAATGTCCGG CGCCTGGAGT ATAAGCCCAT CAAGAAAGTC
    ATGGTGGCCA ACAGAGGTGA GATTGCCATC CGTGTGTTCC GGGCCTGCAC AGAGCTGGGT
    ATCCGCACTG TGGCTGTCTA CTCGGAGCAG GACACAGGCC AGATGCACCG GCAGAAAGCA
    GATGAAGCCT ACCTCATCGG CCGCGGCCTC GCCCCGGTGC AGGCCTATCT GCACATCCCA
    GACATCATCA AGGTGGCCAA GGAGAACAAC GTGGATGCAG TGCACCCCGG CTACGGGTTC
    TTGTCGGAGC GAGCGGACTT CGCCCAGGCC TGTCAGGATG CTGGCGTCCG GTTCATTGGG
    CCGAGCCCCG AGGTGGTCCG CAAGATGGGA GATAAAGTGG AGGCCCGGGC CATCGCCATC
    GCCGCAGGTG TCCCTGTGGT CCCTGGCACA GACGCCCCCA TCACCTCCCT GCACGAGGCC
    CATGAGTTCT CCAACACCTA CGGCTTCCCT ATTATCTTCA AGGCCGCCTA TGGGGGCGGG
    GGGCGTGGCA TGAGGGTCGT GCACAGCTAT GAGGAGCTGG AGGAAAACTA CAACCGGGCC
    TACTCGGAGG CTCTGGCCGC CTTTGGGAAC GGGGCGCTGT TTGTGGAGAA GTTCATCGAG
    AAGCCGCGCC ACATTGAGGT GCAGATCCTG GGAGACCAGT ATGGGAACAT TCTGCACCTG
    TATGAGCGAG ACTGTTCCAT CCAGCGGCGG CACCAGAAAG TGGTCGAGAT TGCCCCTGCC
    GCCCACCTGG ACCCCCAGCT TCGGACTCGG CTCACCAGTG ACTCTGTTAA ACTTGCTAAG
    CAGGTGGGCT ACGAGAACGC GGGCACGGTG GAGTTCCTGG TGGACAGACA CGGCAAGCAT
    TACTTCATTG AGGTCAACTC CCGCCTGCAG GTGGAACACA CTGTCACCGA GGAGATTACC
    GATGTGGACC TGGTCCATGC CCAGATCCAT GTGGCCGAGG GCCGGAGCCT TCCTGACCTG
    GGCCTGCGGC AGGAGAATAT CCGTATCAAC GGCTGTGCTA TTCAGTGCCG GGTCACCACG
    GAGGACCCTG CGCGCAGCTT CCAGCCGGAC ACTGGCCGCA TCGAGGTGTT CCGGAGCGGA
    GAGGGCATGG GCATCCGCCT GGATAATGCA TCTGCATTCC AAGGGGCTGT CATCTCTCCA
    CATTATGACT CCCTGCTCGT CAAAGTCATT GCCCACGGCA AAGACCACCC CACGGCTGCC
    ACCAAGATGA GCAGAGCCCT GGCCGAGTTC CGAGTCCGAG GCGTGAAGAC CAACATCCCC
    TTCCTGCAGA ACGTGCTCAA TAACCAGCAG TTCCTGGCAG GCACCGTGGA CACCCAGTTC
    ATCGATGAGA ACCCGGACCT GTTCCAGCTG CGGCCTGCGC AGAACCGGGC TCAGAAGCTG
    CTGCACTACC TTGGTCATGT CATGGTGAAC GGCCCAACCA CCCCAATCCC CGTCAAGGCC
    AGCCCCAGCC CTACGGACCC TGTTGTCCCT GCAGTGCCCA TAGGCCCACC CCCGGCCGGT
    TTCAGAGACA TCCTGCTGCG GGAGGGGCCG GAGGGCTTTG CTCGAGCTGT GCGGAACCAC
    CAGGGGCTGC TGCTGATGGA CACGACCTTC AGGGATGCCC ACCAGTCACT GCTGGCCACG
    CGTGTGCGAA CCCACGATCT CAAAAAGATA GCCCCCTATG TTGCCCACAA CTTCAGCAAG
    CTCTTCAGCA TAGAGAACTG GGGAGGAGCC ACATTTGATG TTGCCATGCG CTTCCTGTAT
    GAGTGTCCCT GGCGGCGGCT GCAGGAGCTC CGGGAGCTCA TCCCCAACAT CCCATTCCAG
    ATGCTACTGC GGGGGGCCAA CGCTGTGGGC TACACCAACT ACCCCGACAA CGTGGTCTTC
    AAGTTCTGTG AGGTAGCCAA GGAGAACGGC ATGGACGTCT TCCGGGTCTT CGACTCCCTC
    AACTACATGC CCAATCTGCT GCTGGGCATG GAGGCCGCGG GCAGTGCCGG TGGTGTGGTG
    GAGGCTGCCA TCTCCTACAC CGGTGACGTG GCTGACCCCA GCCGCACCAA GTACTCGCTG
    CAGTACTACA TGGACTTGGC TGAAGAGCTG GTGCGAGCCG GCACCCACAT CCTGTGCATC
    AAGGACATGG CAGGGCTGCT AAAGCCCATG GCCTGCACCA TGTTGGTCAG CTCCCTCAGG
    GACCGATTCC CCGACCTCCC ACTGCACATC CACACCCACG ACACATCAGG GGCAGGTGTG
    GCAGCTATGT TGGCCTGTGC CCAGGCTGGG GCCGACGTGG TAGATGTGGC GGCTGACTCC
    ATGTCCGGGA TGACGTCACA GCCCAGCATG GGGGCCCTGG TGGCCTGCAC CCGAAGGACT
    CCCCTGGACA CAGGGGTGCC CCTGGAGCGT GTGTTTGACT ACAGTGAGTA CTGGGAGGGG
    GCCCGAGGAT TGTATGCGGC TTTTGACTGC ACGGCCACCA TGAAGTCTGG CAATTCGGAT
    GTCTACGAGA ACGAGATCCC AGGGGGCCAG TACACCAACC TGCACTTCCA GGCACACAGC
    ATGGGGCTTG GCTCCAAGTT CAAGGAGGTC AAGAAGGCCT ATGTGGAGGC CAACCAGATG
    CTGGGAGACC TCATCAAGGT GACACCGTCC TCCAAGATCG TGGGGGACCT GGCCCAGTTC
    ATGGTGCAGA ATGGGCTGAG CCGGGCAGAG GCTGAAGCCC AGGCAGAAGA ACTGTCCTTC
    CCCCGCTCCG TGGTAGAGTT CCTGCAGGGC TACATTGGTA TTCCCCACGG GGGGTTCCCT
    GAGCCCCTTC GCTCTAAGGT GCTAAAGGAC CTGCCAAGGG TGGAGGGGCG GCCTGGCGCC
    TCCCTCCCTC CACTGGATCT GCAGATGCTG GAGAAGGAAC TCATAGAACG GCATGGGGAG
    GAGGTGACCC CAGAGGATGT GCTCTCAGCA GCCATATATC CAGACGTCTT TGCCCACTTT
    AAGGACTTCA CGGCTACCTT TGGCCCCCTG GATAGCCTCA GTACCCGCCT CTTTCTGCAG
    GGACCCAAAA TTGCAGAGGA GTTTGAGGTG GAGCTGGAGC GGGGCAAGAC ACTGCACATC
    AAAGCCCTCG CCATAAGTGA CCTGAACCGG GCTGGCCAGA GGCAGGTCTT CTTTGAGCTC
    AATGGACAGC TGCGGTCCAT TCTGGTCAAG GACACTCAGG CCATGAAGGA GATGCACTTC
    CACCCCAAGG CCCTGAAGGA TGTGAAGGGC CAGATTGGGG CACCCATGCC TGGGAAGGTG
    ATAGACATCA AGGTGGCAGC TGGGGCTAAG GTGGCCAAGG GCCAGCCCCT CTGTGTGCTT
    AGCGCCATGA AGATGGAGAC TGTGGTGACT TCACCCATGG AGGGCACTGT CCGCAAGGTG
    CACGTAACCA CAGACATGAC ACTGGAGGGT GATGACCTCA TCCTGGAGAT TGAGTGA

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

    CloneID OAc98720
    Clone ID Related Accession (Same CDS sequence) XM_019808538.1
    Accession Version XM_019808538.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3690bp)
    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 2016-12-27
    Organism Ailuropoda melanoleuca(giant panda)
    Product pyruvate carboxylase, mitochondrial isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003218636.1) 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
    3541
    3601
    3661
    ATGCCTCGGG CGAGGTCCGT GAGGGCTCGA ACCCAAGTCT GTCGGAAGAG GGAGCCCAGG 
    CTTTCCCCAG CGTACTGGAA GTTGTTCAGC CCTGAAGAAA GCCGCGGCGT GCAAGATAGC
    TGCTGCCTTC TGAGAGCTGA CAGAACACTG AGGATGCTGA AGTTCCAAAC CGTCCGTGGG
    GGCCTGAGGC TTCTGGGTAT CCGCCGAACC TCCACTGCCC CTGCTGCCTC CCCAAATGTC
    CGGCGCCTGG AGTATAAGCC CATCAAGAAA GTCATGGTGG CCAACAGAGG TGAGATTGCC
    ATCCGTGTGT TCCGGGCCTG CACAGAGCTG GGTATCCGCA CTGTGGCTGT CTACTCGGAG
    CAGGACACAG GCCAGATGCA CCGGCAGAAA GCAGATGAAG CCTACCTCAT CGGCCGCGGC
    CTCGCCCCGG TGCAGGCCTA TCTGCACATC CCAGACATCA TCAAGGTGGC CAAGGAGAAC
    AACGTGGATG CAGTGCACCC CGGCTACGGG TTCTTGTCGG AGCGAGCGGA CTTCGCCCAG
    GCCTGTCAGG ATGCTGGCGT CCGGTTCATT GGGCCGAGCC CCGAGGTGGT CCGCAAGATG
    GGAGATAAAG TGGAGGCCCG GGCCATCGCC ATCGCCGCAG GTGTCCCTGT GGTCCCTGGC
    ACAGACGCCC CCATCACCTC CCTGCACGAG GCCCATGAGT TCTCCAACAC CTACGGCTTC
    CCTATTATCT TCAAGGCCGC CTATGGGGGC GGGGGGCGTG GCATGAGGGT CGTGCACAGC
    TATGAGGAGC TGGAGGAAAA CTACAACCGG GCCTACTCGG AGGCTCTGGC CGCCTTTGGG
    AACGGGGCGC TGTTTGTGGA GAAGTTCATC GAGAAGCCGC GCCACATTGA GGTGCAGATC
    CTGGGAGACC AGTATGGGAA CATTCTGCAC CTGTATGAGC GAGACTGTTC CATCCAGCGG
    CGGCACCAGA AAGTGGTCGA GATTGCCCCT GCCGCCCACC TGGACCCCCA GCTTCGGACT
    CGGCTCACCA GTGACTCTGT TAAACTTGCT AAGCAGGTGG GCTACGAGAA CGCGGGCACG
    GTGGAGTTCC TGGTGGACAG ACACGGCAAG CATTACTTCA TTGAGGTCAA CTCCCGCCTG
    CAGGTGGAAC ACACTGTCAC CGAGGAGATT ACCGATGTGG ACCTGGTCCA TGCCCAGATC
    CATGTGGCCG AGGGCCGGAG CCTTCCTGAC CTGGGCCTGC GGCAGGAGAA TATCCGTATC
    AACGGCTGTG CTATTCAGTG CCGGGTCACC ACGGAGGACC CTGCGCGCAG CTTCCAGCCG
    GACACTGGCC GCATCGAGGT GTTCCGGAGC GGAGAGGGCA TGGGCATCCG CCTGGATAAT
    GCATCTGCAT TCCAAGGGGC TGTCATCTCT CCACATTATG ACTCCCTGCT CGTCAAAGTC
    ATTGCCCACG GCAAAGACCA CCCCACGGCT GCCACCAAGA TGAGCAGAGC CCTGGCCGAG
    TTCCGAGTCC GAGGCGTGAA GACCAACATC CCCTTCCTGC AGAACGTGCT CAATAACCAG
    CAGTTCCTGG CAGGCACCGT GGACACCCAG TTCATCGATG AGAACCCGGA CCTGTTCCAG
    CTGCGGCCTG CGCAGAACCG GGCTCAGAAG CTGCTGCACT ACCTTGGTCA TGTCATGGTG
    AACGGCCCAA CCACCCCAAT CCCCGTCAAG GCCAGCCCCA GCCCTACGGA CCCTGTTGTC
    CCTGCAGTGC CCATAGGCCC ACCCCCGGCC GGTTTCAGAG ACATCCTGCT GCGGGAGGGG
    CCGGAGGGCT TTGCTCGAGC TGTGCGGAAC CACCAGGGGC TGCTGCTGAT GGACACGACC
    TTCAGGGATG CCCACCAGTC ACTGCTGGCC ACGCGTGTGC GAACCCACGA TCTCAAAAAG
    ATAGCCCCCT ATGTTGCCCA CAACTTCAGC AAGCTCTTCA GCATAGAGAA CTGGGGAGGA
    GCCACATTTG ATGTTGCCAT GCGCTTCCTG TATGAGTGTC CCTGGCGGCG GCTGCAGGAG
    CTCCGGGAGC TCATCCCCAA CATCCCATTC CAGATGCTAC TGCGGGGGGC CAACGCTGTG
    GGCTACACCA ACTACCCCGA CAACGTGGTC TTCAAGTTCT GTGAGGTAGC CAAGGAGAAC
    GGCATGGACG TCTTCCGGGT CTTCGACTCC CTCAACTACA TGCCCAATCT GCTGCTGGGC
    ATGGAGGCCG CGGGCAGTGC CGGTGGTGTG GTGGAGGCTG CCATCTCCTA CACCGGTGAC
    GTGGCTGACC CCAGCCGCAC CAAGTACTCG CTGCAGTACT ACATGGACTT GGCTGAAGAG
    CTGGTGCGAG CCGGCACCCA CATCCTGTGC ATCAAGGACA TGGCAGGGCT GCTAAAGCCC
    ATGGCCTGCA CCATGTTGGT CAGCTCCCTC AGGGACCGAT TCCCCGACCT CCCACTGCAC
    ATCCACACCC ACGACACATC AGGGGCAGGT GTGGCAGCTA TGTTGGCCTG TGCCCAGGCT
    GGGGCCGACG TGGTAGATGT GGCGGCTGAC TCCATGTCCG GGATGACGTC ACAGCCCAGC
    ATGGGGGCCC TGGTGGCCTG CACCCGAAGG ACTCCCCTGG ACACAGGGGT GCCCCTGGAG
    CGTGTGTTTG ACTACAGTGA GTACTGGGAG GGGGCCCGAG GATTGTATGC GGCTTTTGAC
    TGCACGGCCA CCATGAAGTC TGGCAATTCG GATGTCTACG AGAACGAGAT CCCAGGGGGC
    CAGTACACCA ACCTGCACTT CCAGGCACAC AGCATGGGGC TTGGCTCCAA GTTCAAGGAG
    GTCAAGAAGG CCTATGTGGA GGCCAACCAG ATGCTGGGAG ACCTCATCAA GGTGACACCG
    TCCTCCAAGA TCGTGGGGGA CCTGGCCCAG TTCATGGTGC AGAATGGGCT GAGCCGGGCA
    GAGGCTGAAG CCCAGGCAGA AGAACTGTCC TTCCCCCGCT CCGTGGTAGA GTTCCTGCAG
    GGCTACATTG GTATTCCCCA CGGGGGGTTC CCTGAGCCCC TTCGCTCTAA GGTGCTAAAG
    GACCTGCCAA GGGTGGAGGG GCGGCCTGGC GCCTCCCTCC CTCCACTGGA TCTGCAGATG
    CTGGAGAAGG AACTCATAGA ACGGCATGGG GAGGAGGTGA CCCCAGAGGA TGTGCTCTCA
    GCAGCCATAT ATCCAGACGT CTTTGCCCAC TTTAAGGACT TCACGGCTAC CTTTGGCCCC
    CTGGATAGCC TCAGTACCCG CCTCTTTCTG CAGGGACCCA AAATTGCAGA GGAGTTTGAG
    GTGGAGCTGG AGCGGGGCAA GACACTGCAC ATCAAAGCCC TCGCCATAAG TGACCTGAAC
    CGGGCTGGCC AGAGGCAGGT CTTCTTTGAG CTCAATGGAC AGCTGCGGTC CATTCTGGTC
    AAGGACACTC AGGCCATGAA GGAGATGCAC TTCCACCCCA AGGCCCTGAA GGATGTGAAG
    GGCCAGATTG GGGCACCCAT GCCTGGGAAG GTGATAGACA TCAAGGTGGC AGCTGGGGCT
    AAGGTGGCCA AGGGCCAGCC CCTCTGTGTG CTTAGCGCCA TGAAGATGGA GACTGTGGTG
    ACTTCACCCA TGGAGGGCAC TGTCCGCAAG GTGCACGTAA CCACAGACAT GACACTGGAG
    GGTGATGACC TCATCCTGGA GATTGAGTGA

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

    RefSeq XP_019664097.1
    CDS114..3803
    Translation

    Target ORF information:

    RefSeq Version XM_019808538.1
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca pyruvate carboxylase (PC), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019808538.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGCCTCGGG CGAGGTCCGT GAGGGCTCGA ACCCAAGTCT GTCGGAAGAG GGAGCCCAGG 
    CTTTCCCCAG CGTACTGGAA GTTGTTCAGC CCTGAAGAAA GCCGCGGCGT GCAAGATAGC
    TGCTGCCTTC TGAGAGCTGA CAGAACACTG AGGATGCTGA AGTTCCAAAC CGTCCGTGGG
    GGCCTGAGGC TTCTGGGTAT CCGCCGAACC TCCACTGCCC CTGCTGCCTC CCCAAATGTC
    CGGCGCCTGG AGTATAAGCC CATCAAGAAA GTCATGGTGG CCAACAGAGG TGAGATTGCC
    ATCCGTGTGT TCCGGGCCTG CACAGAGCTG GGTATCCGCA CTGTGGCTGT CTACTCGGAG
    CAGGACACAG GCCAGATGCA CCGGCAGAAA GCAGATGAAG CCTACCTCAT CGGCCGCGGC
    CTCGCCCCGG TGCAGGCCTA TCTGCACATC CCAGACATCA TCAAGGTGGC CAAGGAGAAC
    AACGTGGATG CAGTGCACCC CGGCTACGGG TTCTTGTCGG AGCGAGCGGA CTTCGCCCAG
    GCCTGTCAGG ATGCTGGCGT CCGGTTCATT GGGCCGAGCC CCGAGGTGGT CCGCAAGATG
    GGAGATAAAG TGGAGGCCCG GGCCATCGCC ATCGCCGCAG GTGTCCCTGT GGTCCCTGGC
    ACAGACGCCC CCATCACCTC CCTGCACGAG GCCCATGAGT TCTCCAACAC CTACGGCTTC
    CCTATTATCT TCAAGGCCGC CTATGGGGGC GGGGGGCGTG GCATGAGGGT CGTGCACAGC
    TATGAGGAGC TGGAGGAAAA CTACAACCGG GCCTACTCGG AGGCTCTGGC CGCCTTTGGG
    AACGGGGCGC TGTTTGTGGA GAAGTTCATC GAGAAGCCGC GCCACATTGA GGTGCAGATC
    CTGGGAGACC AGTATGGGAA CATTCTGCAC CTGTATGAGC GAGACTGTTC CATCCAGCGG
    CGGCACCAGA AAGTGGTCGA GATTGCCCCT GCCGCCCACC TGGACCCCCA GCTTCGGACT
    CGGCTCACCA GTGACTCTGT TAAACTTGCT AAGCAGGTGG GCTACGAGAA CGCGGGCACG
    GTGGAGTTCC TGGTGGACAG ACACGGCAAG CATTACTTCA TTGAGGTCAA CTCCCGCCTG
    CAGGTGGAAC ACACTGTCAC CGAGGAGATT ACCGATGTGG ACCTGGTCCA TGCCCAGATC
    CATGTGGCCG AGGGCCGGAG CCTTCCTGAC CTGGGCCTGC GGCAGGAGAA TATCCGTATC
    AACGGCTGTG CTATTCAGTG CCGGGTCACC ACGGAGGACC CTGCGCGCAG CTTCCAGCCG
    GACACTGGCC GCATCGAGGT GTTCCGGAGC GGAGAGGGCA TGGGCATCCG CCTGGATAAT
    GCATCTGCAT TCCAAGGGGC TGTCATCTCT CCACATTATG ACTCCCTGCT CGTCAAAGTC
    ATTGCCCACG GCAAAGACCA CCCCACGGCT GCCACCAAGA TGAGCAGAGC CCTGGCCGAG
    TTCCGAGTCC GAGGCGTGAA GACCAACATC CCCTTCCTGC AGAACGTGCT CAATAACCAG
    CAGTTCCTGG CAGGCACCGT GGACACCCAG TTCATCGATG AGAACCCGGA CCTGTTCCAG
    CTGCGGCCTG CGCAGAACCG GGCTCAGAAG CTGCTGCACT ACCTTGGTCA TGTCATGGTG
    AACGGCCCAA CCACCCCAAT CCCCGTCAAG GCCAGCCCCA GCCCTACGGA CCCTGTTGTC
    CCTGCAGTGC CCATAGGCCC ACCCCCGGCC GGTTTCAGAG ACATCCTGCT GCGGGAGGGG
    CCGGAGGGCT TTGCTCGAGC TGTGCGGAAC CACCAGGGGC TGCTGCTGAT GGACACGACC
    TTCAGGGATG CCCACCAGTC ACTGCTGGCC ACGCGTGTGC GAACCCACGA TCTCAAAAAG
    ATAGCCCCCT ATGTTGCCCA CAACTTCAGC AAGCTCTTCA GCATAGAGAA CTGGGGAGGA
    GCCACATTTG ATGTTGCCAT GCGCTTCCTG TATGAGTGTC CCTGGCGGCG GCTGCAGGAG
    CTCCGGGAGC TCATCCCCAA CATCCCATTC CAGATGCTAC TGCGGGGGGC CAACGCTGTG
    GGCTACACCA ACTACCCCGA CAACGTGGTC TTCAAGTTCT GTGAGGTAGC CAAGGAGAAC
    GGCATGGACG TCTTCCGGGT CTTCGACTCC CTCAACTACA TGCCCAATCT GCTGCTGGGC
    ATGGAGGCCG CGGGCAGTGC CGGTGGTGTG GTGGAGGCTG CCATCTCCTA CACCGGTGAC
    GTGGCTGACC CCAGCCGCAC CAAGTACTCG CTGCAGTACT ACATGGACTT GGCTGAAGAG
    CTGGTGCGAG CCGGCACCCA CATCCTGTGC ATCAAGGACA TGGCAGGGCT GCTAAAGCCC
    ATGGCCTGCA CCATGTTGGT CAGCTCCCTC AGGGACCGAT TCCCCGACCT CCCACTGCAC
    ATCCACACCC ACGACACATC AGGGGCAGGT GTGGCAGCTA TGTTGGCCTG TGCCCAGGCT
    GGGGCCGACG TGGTAGATGT GGCGGCTGAC TCCATGTCCG GGATGACGTC ACAGCCCAGC
    ATGGGGGCCC TGGTGGCCTG CACCCGAAGG ACTCCCCTGG ACACAGGGGT GCCCCTGGAG
    CGTGTGTTTG ACTACAGTGA GTACTGGGAG GGGGCCCGAG GATTGTATGC GGCTTTTGAC
    TGCACGGCCA CCATGAAGTC TGGCAATTCG GATGTCTACG AGAACGAGAT CCCAGGGGGC
    CAGTACACCA ACCTGCACTT CCAGGCACAC AGCATGGGGC TTGGCTCCAA GTTCAAGGAG
    GTCAAGAAGG CCTATGTGGA GGCCAACCAG ATGCTGGGAG ACCTCATCAA GGTGACACCG
    TCCTCCAAGA TCGTGGGGGA CCTGGCCCAG TTCATGGTGC AGAATGGGCT GAGCCGGGCA
    GAGGCTGAAG CCCAGGCAGA AGAACTGTCC TTCCCCCGCT CCGTGGTAGA GTTCCTGCAG
    GGCTACATTG GTATTCCCCA CGGGGGGTTC CCTGAGCCCC TTCGCTCTAA GGTGCTAAAG
    GACCTGCCAA GGGTGGAGGG GCGGCCTGGC GCCTCCCTCC CTCCACTGGA TCTGCAGATG
    CTGGAGAAGG AACTCATAGA ACGGCATGGG GAGGAGGTGA CCCCAGAGGA TGTGCTCTCA
    GCAGCCATAT ATCCAGACGT CTTTGCCCAC TTTAAGGACT TCACGGCTAC CTTTGGCCCC
    CTGGATAGCC TCAGTACCCG CCTCTTTCTG CAGGGACCCA AAATTGCAGA GGAGTTTGAG
    GTGGAGCTGG AGCGGGGCAA GACACTGCAC ATCAAAGCCC TCGCCATAAG TGACCTGAAC
    CGGGCTGGCC AGAGGCAGGT CTTCTTTGAG CTCAATGGAC AGCTGCGGTC CATTCTGGTC
    AAGGACACTC AGGCCATGAA GGAGATGCAC TTCCACCCCA AGGCCCTGAA GGATGTGAAG
    GGCCAGATTG GGGCACCCAT GCCTGGGAAG GTGATAGACA TCAAGGTGGC AGCTGGGGCT
    AAGGTGGCCA AGGGCCAGCC CCTCTGTGTG CTTAGCGCCA TGAAGATGGA GACTGTGGTG
    ACTTCACCCA TGGAGGGCAC TGTCCGCAAG GTGCACGTAA CCACAGACAT GACACTGGAG
    GGTGATGACC TCATCCTGGA GATTGAGTGA

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