ACLY cDNA ORF clone, Ailuropoda melanoleuca(giant panda)

The following ACLY gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ACLY 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
OAc09481 XM_002922123.3
Latest version!
Ailuropoda melanoleuca ATP citrate lyase (ACLY), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OAc20875 XM_019802706.1
Latest version!
Ailuropoda melanoleuca ATP citrate lyase (ACLY), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OAc20876 XM_011228608.2
Latest version!
Ailuropoda melanoleuca ATP citrate lyase (ACLY), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OAc20877 XM_011228609.2
Latest version!
Ailuropoda melanoleuca ATP citrate lyase (ACLY), transcript variant X4, 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 OAc09481
    Clone ID Related Accession (Same CDS sequence) XM_002922123.3
    Accession Version XM_002922123.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3306bp)
    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 ATP-citrate synthase isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003217842.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 28, 2016 this sequence version replaced XM_002922123.2. ##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
    ATGTCGGCCA AGGCGATTTC GGAGCAGACC GGCAAAGAAC TCCTTTACAA ATACATCTGC 
    ACCACCTCGG CCATCCAGAA CCGGTTCAAG TATGCCCGGG TCACCCCTGA CACAGACTGG
    GCCCGCCTGC TGCAGGACCA CCCTTGGCTG CTCAGCCAGA GCTTGGTGGT CAAGCCAGAC
    CAGCTGATCA AACGGCGTGG AAAGCTAGGC CTCGTGGGAG TCAACCTCAC TCTGGAAGGC
    GTTAAGTCCT GGCTGAAACC ACGGCTGGGA CAGGAGGCCA CTGTGGGCAA GGCCAGAGGC
    TTCCTCAAGA ATTTTCTGAT TGAACCCTTC GTCCCCCACA GTCAGGCGGA GGAGTTCTAT
    GTCTGCATCT ATGCTACCCG AGAAGGGGAC TATGTCCTGT TCCACCATGA AGGTGGGGTG
    GATGTGGGCG ACGTGGACGC CAAAGCCCAG AAACTGCTTG TTGGCGTGGA CAAGAAACTG
    AATCCTGAGG ACATCAAGAA ACACCTGTTG GTCCACGCTC CTGGAGACAA GAAAGAGATT
    CTGGCCAGTT TTATCTCCGG CCTCTTCGAT TTCTATGAGG ATCTGTACTT CACCTACCTC
    GAGATCAACC CCCTTGTTGT GACCAAAGAT GGCGTCTATG TCCTTGACTT GGCGGCCAAG
    ATAGATGCCA CAGCCGACTA CATCTGCAAA GTGAAGTGGG GTGATATAGA GTTCCCTCCT
    CCCTTCGGAC GGGAGGCTTA CCCAGAGGAA GCTTACATTG CAGACCTGGA TGCCAAAAGT
    GGGGCGAGCC TGAAGCTGAC CTTGCTGAAC CCCAAGGGGA GGATCTGGAC CATGGTGGCC
    GGAGGTGGTG CCTCGGTTGT GTACAGTGAC ACCATCTGTG ACTTAGGGGG TGTCAACGAA
    CTGGCAAACT ATGGGGAGTA CTCGGGCGCC CCCAGCGAGC AGCAGACCTA TGACTACGCC
    AAGACGATCC TCTCCCTCAT GACCCGGGAG AAGCACCCAG ATGGCAAGAT CCTCATCATC
    GGAGGCAGCA TCGCAAATTT CACCAATGTG GCCGCCACGT TCAAGGGCAT CGTGAGAGCA
    ATTCGAGATT ACCAGGGCCC CCTGAAGGAG CATGAGGTCA CCATCTTTGT CCGAAGAGGT
    GGCCCCAACT ATCAGGAGGG CTTGCGGGTG ATGGGAGAAG TCGGGAAGAC CACTGGGATC
    CCCATCCATG TCTTTGGCAC TGAGACTCAC ATGACGGCCA TTGTGGGCAT GGCTCTGGGC
    CACCGGCCCA TCCCCAACCA GCCACCCACA GCCGCTCACA CTGCAAACTT CCTCCTCAAT
    GCCAGCGGGA GTACATCGAC TCCAGCCCCC AGCAGGACGG CGTCTTTTTC TGAGTCCAGG
    GCTGATGAGG TGGCACCCGC AAAGAAGGCC AAGCCTGCCA TGCCCCAAGA TTCAGTCCCA
    AGTCCAAGAT CCCTGCAAGG AAAGAGTGCC ACCCTCTTCA GCCGCCACAC CAAGGCCATT
    GTGTGGGGCA TGCAGACCCG GGCCGTACAG GGCATGCTGG ACTTCGACTA CGTCTGTTCC
    CGAGATGAGC CTTCGGTGGC CGCCATGGTG TACCCTTTCA CCGGGGACCA CAAGCAGAAG
    TTTTACTGGG GCCACAAAGA GATCCTGATC CCTGTCTTCA AGAACATGGC TGACGCCATG
    AAGAAACACC CAGAAGTAGA CGTGCTGATC AACTTTGCCT CTCTCCGCTC AGCCTACGAC
    AGTACCATTG AGACAATGAA TTACGCGCAG ATCCGGACCA TTGCCATCAT AGCTGAAGGC
    ATCCCTGAGG CCCTCACAAG GAAGCTGATC AAGAAGGCGG ACCAGAAGGG AGTGACCATC
    ATTGGACCTG CCACTGTTGG AGGCATCAAG CCCGGGTGCT TTAAGATCGG GAATACAGGC
    GGGATGCTGG ACAACATCCT GGCCTCCAAG TTGTACCGCC CTGGCAGCGT GGCCTACGTC
    TCGCGCTCAG GGGGCATGTC AAATGAGCTC AACAACATCA TCTCTCGGAC CACAGATGGC
    GTCTACGAGG GCGTGGCCAT CGGCGGGGAC AGGTACCCTG GCTCAACATT TATGGATCAC
    GTGTTACGTT ATCAGGATAC TCCAGGAGTA AAAATGATTG TGGTTCTTGG AGAGATAGGG
    GGCACTGAGG AATACAAGAT CTGCCGGGGC ATCCAAGAGG GCCGCCTCAC CAAGCCCGTG
    GTCTGCTGGT GCATTGGGAC ATGTGCCACC ATGTTCTCCT CTGAGGTACA GTTCGGCCAT
    GCTGGAGCTT GTGCCAACCA GGCTTCCGAA ACTGCAGTAG CCAAGAACCA GGCTTTGAAG
    GAGGCAGGAG TGTTTGTGCC CCCGAGCTTT GATGAACTTG GAGAAATCAT CCAGTCTGTG
    TATGAAGATC TTGTGGCCAG AGGAGTCATT GTCCCTGCTC AGGAGGTGCC GCCTCCAACC
    GTGCCCATGG ACTACTCCTG GGCCAGGGAG CTGGGCTTGA TCCGCAAACC TGCCTCATTC
    ATGACCAGCA TCTGTGACGA GCGAGGACAG GAGCTCATCT ATGCGGGCAT GCCCATCACC
    GAGGTCTTCA AGGAGGAGAT GGGCATTGGT GGGGTCCTTG GCCTCCTGTG GTTCCAGAGA
    AGGTTGCCCA AGTATGCCTG CCAGTTCATT GAGATGTGCC TGATGGTGAC GGCAGATCAC
    GGGCCAGCTG TGTCTGGGGC TCACAACACC ATCATCTGCG CTCGGGCTGG GAAGGACCTG
    GTTTCCAGCC TCACCTCGGG GCTGCTCACT ATTGGGGACC GGTTTGGGGG TGCCCTGGAT
    GCTGCTGCCA AGATGTTCAG CAAAGCCTTT GACAGTGGTA TTATCCCCAT GGAGTTTGTG
    AACAAGATGA AGAAGGAAGG AAAGCTGATC ATGGGCATCG GTCACCGAGT GAAATCGATA
    AACAACCCAG ACATGCGAGT GCAGATCCTC AAAGATTACG TCAAACAGCA CTTCCCCGCC
    ACCCCTCTGC TTGACTATGC GCTGGAGGTC GAGAAGATTA CCACCTCGAA GAAACCAAAT
    CTGATCCTGA ACGTCGACGG TTTCATTGGA GTTGCGTTTG TAGACATGCT TAGAAACTGT
    GGGTCCTTTA CCCGGGAGGA AGCTGATGAA TATATTGACA TTGGAGCCCT CAATGGCATC
    TTTGTGCTGG GAAGGAGTAT GGGCTTCATT GGACACTATC TCGATCAGAA GAGGCTGAAG
    CAGGGGCTGT ATCGTCACCC GTGGGATGAT ATTTCATATG TTCTTCCGGA ACACATGAGC
    ATGTAA

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

    RefSeq XP_002922169.1
    CDS171..3476
    Translation

    Target ORF information:

    RefSeq Version XM_002922123.3
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca ATP citrate lyase (ACLY), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002922123.3

    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
    3301
    ATGTCGGCCA AGGCGATTTC GGAGCAGACC GGCAAAGAAC TCCTTTACAA ATACATCTGC 
    ACCACCTCGG CCATCCAGAA CCGGTTCAAG TATGCCCGGG TCACCCCTGA CACAGACTGG
    GCCCGCCTGC TGCAGGACCA CCCTTGGCTG CTCAGCCAGA GCTTGGTGGT CAAGCCAGAC
    CAGCTGATCA AACGGCGTGG AAAGCTAGGC CTCGTGGGAG TCAACCTCAC TCTGGAAGGC
    GTTAAGTCCT GGCTGAAACC ACGGCTGGGA CAGGAGGCCA CTGTGGGCAA GGCCAGAGGC
    TTCCTCAAGA ATTTTCTGAT TGAACCCTTC GTCCCCCACA GTCAGGCGGA GGAGTTCTAT
    GTCTGCATCT ATGCTACCCG AGAAGGGGAC TATGTCCTGT TCCACCATGA AGGTGGGGTG
    GATGTGGGCG ACGTGGACGC CAAAGCCCAG AAACTGCTTG TTGGCGTGGA CAAGAAACTG
    AATCCTGAGG ACATCAAGAA ACACCTGTTG GTCCACGCTC CTGGAGACAA GAAAGAGATT
    CTGGCCAGTT TTATCTCCGG CCTCTTCGAT TTCTATGAGG ATCTGTACTT CACCTACCTC
    GAGATCAACC CCCTTGTTGT GACCAAAGAT GGCGTCTATG TCCTTGACTT GGCGGCCAAG
    ATAGATGCCA CAGCCGACTA CATCTGCAAA GTGAAGTGGG GTGATATAGA GTTCCCTCCT
    CCCTTCGGAC GGGAGGCTTA CCCAGAGGAA GCTTACATTG CAGACCTGGA TGCCAAAAGT
    GGGGCGAGCC TGAAGCTGAC CTTGCTGAAC CCCAAGGGGA GGATCTGGAC CATGGTGGCC
    GGAGGTGGTG CCTCGGTTGT GTACAGTGAC ACCATCTGTG ACTTAGGGGG TGTCAACGAA
    CTGGCAAACT ATGGGGAGTA CTCGGGCGCC CCCAGCGAGC AGCAGACCTA TGACTACGCC
    AAGACGATCC TCTCCCTCAT GACCCGGGAG AAGCACCCAG ATGGCAAGAT CCTCATCATC
    GGAGGCAGCA TCGCAAATTT CACCAATGTG GCCGCCACGT TCAAGGGCAT CGTGAGAGCA
    ATTCGAGATT ACCAGGGCCC CCTGAAGGAG CATGAGGTCA CCATCTTTGT CCGAAGAGGT
    GGCCCCAACT ATCAGGAGGG CTTGCGGGTG ATGGGAGAAG TCGGGAAGAC CACTGGGATC
    CCCATCCATG TCTTTGGCAC TGAGACTCAC ATGACGGCCA TTGTGGGCAT GGCTCTGGGC
    CACCGGCCCA TCCCCAACCA GCCACCCACA GCCGCTCACA CTGCAAACTT CCTCCTCAAT
    GCCAGCGGGA GTACATCGAC TCCAGCCCCC AGCAGGACGG CGTCTTTTTC TGAGTCCAGG
    GCTGATGAGG TGGCACCCGC AAAGAAGGCC AAGCCTGCCA TGCCCCAAGA TTCAGTCCCA
    AGTCCAAGAT CCCTGCAAGG AAAGAGTGCC ACCCTCTTCA GCCGCCACAC CAAGGCCATT
    GTGTGGGGCA TGCAGACCCG GGCCGTACAG GGCATGCTGG ACTTCGACTA CGTCTGTTCC
    CGAGATGAGC CTTCGGTGGC CGCCATGGTG TACCCTTTCA CCGGGGACCA CAAGCAGAAG
    TTTTACTGGG GCCACAAAGA GATCCTGATC CCTGTCTTCA AGAACATGGC TGACGCCATG
    AAGAAACACC CAGAAGTAGA CGTGCTGATC AACTTTGCCT CTCTCCGCTC AGCCTACGAC
    AGTACCATTG AGACAATGAA TTACGCGCAG ATCCGGACCA TTGCCATCAT AGCTGAAGGC
    ATCCCTGAGG CCCTCACAAG GAAGCTGATC AAGAAGGCGG ACCAGAAGGG AGTGACCATC
    ATTGGACCTG CCACTGTTGG AGGCATCAAG CCCGGGTGCT TTAAGATCGG GAATACAGGC
    GGGATGCTGG ACAACATCCT GGCCTCCAAG TTGTACCGCC CTGGCAGCGT GGCCTACGTC
    TCGCGCTCAG GGGGCATGTC AAATGAGCTC AACAACATCA TCTCTCGGAC CACAGATGGC
    GTCTACGAGG GCGTGGCCAT CGGCGGGGAC AGGTACCCTG GCTCAACATT TATGGATCAC
    GTGTTACGTT ATCAGGATAC TCCAGGAGTA AAAATGATTG TGGTTCTTGG AGAGATAGGG
    GGCACTGAGG AATACAAGAT CTGCCGGGGC ATCCAAGAGG GCCGCCTCAC CAAGCCCGTG
    GTCTGCTGGT GCATTGGGAC ATGTGCCACC ATGTTCTCCT CTGAGGTACA GTTCGGCCAT
    GCTGGAGCTT GTGCCAACCA GGCTTCCGAA ACTGCAGTAG CCAAGAACCA GGCTTTGAAG
    GAGGCAGGAG TGTTTGTGCC CCCGAGCTTT GATGAACTTG GAGAAATCAT CCAGTCTGTG
    TATGAAGATC TTGTGGCCAG AGGAGTCATT GTCCCTGCTC AGGAGGTGCC GCCTCCAACC
    GTGCCCATGG ACTACTCCTG GGCCAGGGAG CTGGGCTTGA TCCGCAAACC TGCCTCATTC
    ATGACCAGCA TCTGTGACGA GCGAGGACAG GAGCTCATCT ATGCGGGCAT GCCCATCACC
    GAGGTCTTCA AGGAGGAGAT GGGCATTGGT GGGGTCCTTG GCCTCCTGTG GTTCCAGAGA
    AGGTTGCCCA AGTATGCCTG CCAGTTCATT GAGATGTGCC TGATGGTGAC GGCAGATCAC
    GGGCCAGCTG TGTCTGGGGC TCACAACACC ATCATCTGCG CTCGGGCTGG GAAGGACCTG
    GTTTCCAGCC TCACCTCGGG GCTGCTCACT ATTGGGGACC GGTTTGGGGG TGCCCTGGAT
    GCTGCTGCCA AGATGTTCAG CAAAGCCTTT GACAGTGGTA TTATCCCCAT GGAGTTTGTG
    AACAAGATGA AGAAGGAAGG AAAGCTGATC ATGGGCATCG GTCACCGAGT GAAATCGATA
    AACAACCCAG ACATGCGAGT GCAGATCCTC AAAGATTACG TCAAACAGCA CTTCCCCGCC
    ACCCCTCTGC TTGACTATGC GCTGGAGGTC GAGAAGATTA CCACCTCGAA GAAACCAAAT
    CTGATCCTGA ACGTCGACGG TTTCATTGGA GTTGCGTTTG TAGACATGCT TAGAAACTGT
    GGGTCCTTTA CCCGGGAGGA AGCTGATGAA TATATTGACA TTGGAGCCCT CAATGGCATC
    TTTGTGCTGG GAAGGAGTAT GGGCTTCATT GGACACTATC TCGATCAGAA GAGGCTGAAG
    CAGGGGCTGT ATCGTCACCC GTGGGATGAT ATTTCATATG TTCTTCCGGA ACACATGAGC
    ATGTAA

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

    CloneID OAc20875
    Clone ID Related Accession (Same CDS sequence) XM_019802706.1
    Accession Version XM_019802706.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3276bp)
    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 ATP-citrate synthase isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003217842.1) 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
    ATGTCGGCCA AGGCGATTTC GGAGCAGACC GGCAAAGAAC TCCTTTACAA ATACATCTGC 
    ACCACCTCGG CCATCCAGAA CCGGTTCAAG TATGCCCGGG TCACCCCTGA CACAGACTGG
    GCCCGCCTGC TGCAGGACCA CCCTTGGCTG CTCAGCCAGA GCTTGGTGGT CAAGCCAGAC
    CAGCTGATCA AACGGCGTGG AAAGCTAGGC CTCGTGGGAG TCAACCTCAC TCTGGAAGGC
    GTTAAGTCCT GGCTGAAACC ACGGCTGGGA CAGGAGGCCA CTGTGGGCAA GGCCAGAGGC
    TTCCTCAAGA ATTTTCTGAT TGAACCCTTC GTCCCCCACA GTCAGGCGGA GGAGTTCTAT
    GTCTGCATCT ATGCTACCCG AGAAGGGGAC TATGTCCTGT TCCACCATGA AGGTGGGGTG
    GATGTGGGCG ACGTGGACGC CAAAGCCCAG AAACTGCTTG TTGGCGTGGA CAAGAAACTG
    AATCCTGAGG ACATCAAGAA ACACCTGTTG GTCCACGCTC CTGGAGACAA GAAAGAGATT
    CTGGCCAGTT TTATCTCCGG CCTCTTCGAT TTCTATGAGG ATCTGTACTT CACCTACCTC
    GAGATCAACC CCCTTGTTGT GACCAAAGAT GGCGTCTATG TCCTTGACTT GGCGGCCAAG
    ATAGATGCCA CAGCCGACTA CATCTGCAAA GTGAAGTGGG GTGATATAGA GTTCCCTCCT
    CCCTTCGGAC GGGAGGCTTA CCCAGAGGAA GCTTACATTG CAGACCTGGA TGCCAAAAGT
    GGGGCGAGCC TGAAGCTGAC CTTGCTGAAC CCCAAGGGGA GGATCTGGAC CATGGTGGCC
    GGAGGTGGTG CCTCGGTTGT GTACAGTGAC ACCATCTGTG ACTTAGGGGG TGTCAACGAA
    CTGGCAAACT ATGGGGAGTA CTCGGGCGCC CCCAGCGAGC AGCAGACCTA TGACTACGCC
    AAGACGATCC TCTCCCTCAT GACCCGGGAG AAGCACCCAG ATGGCAAGAT CCTCATCATC
    GGAGGCAGCA TCGCAAATTT CACCAATGTG GCCGCCACGT TCAAGGGCAT CGTGAGAGCA
    ATTCGAGATT ACCAGGGCCC CCTGAAGGAG CATGAGGTCA CCATCTTTGT CCGAAGAGGT
    GGCCCCAACT ATCAGGAGGG CTTGCGGGTG ATGGGAGAAG TCGGGAAGAC CACTGGGATC
    CCCATCCATG TCTTTGGCAC TGAGACTCAC ATGACGGCCA TTGTGGGCAT GGCTCTGGGC
    CACCGGCCCA TCCCCAACCA GCCACCCACA GCCGCTCACA CTGCAAACTT CCTCCTCAAT
    GCCAGCGGGA GTACATCGAC TCCAGCCCCC AGCAGGACGG CGTCTTTTTC TGAGTCCAGG
    GCTGATGAGG TGGCACCCGC AAAGAAGGCC AAGCCTGCCA TGCCCCAAGG AAAGAGTGCC
    ACCCTCTTCA GCCGCCACAC CAAGGCCATT GTGTGGGGCA TGCAGACCCG GGCCGTACAG
    GGCATGCTGG ACTTCGACTA CGTCTGTTCC CGAGATGAGC CTTCGGTGGC CGCCATGGTG
    TACCCTTTCA CCGGGGACCA CAAGCAGAAG TTTTACTGGG GCCACAAAGA GATCCTGATC
    CCTGTCTTCA AGAACATGGC TGACGCCATG AAGAAACACC CAGAAGTAGA CGTGCTGATC
    AACTTTGCCT CTCTCCGCTC AGCCTACGAC AGTACCATTG AGACAATGAA TTACGCGCAG
    ATCCGGACCA TTGCCATCAT AGCTGAAGGC ATCCCTGAGG CCCTCACAAG GAAGCTGATC
    AAGAAGGCGG ACCAGAAGGG AGTGACCATC ATTGGACCTG CCACTGTTGG AGGCATCAAG
    CCCGGGTGCT TTAAGATCGG GAATACAGGC GGGATGCTGG ACAACATCCT GGCCTCCAAG
    TTGTACCGCC CTGGCAGCGT GGCCTACGTC TCGCGCTCAG GGGGCATGTC AAATGAGCTC
    AACAACATCA TCTCTCGGAC CACAGATGGC GTCTACGAGG GCGTGGCCAT CGGCGGGGAC
    AGGTACCCTG GCTCAACATT TATGGATCAC GTGTTACGTT ATCAGGATAC TCCAGGAGTA
    AAAATGATTG TGGTTCTTGG AGAGATAGGG GGCACTGAGG AATACAAGAT CTGCCGGGGC
    ATCCAAGAGG GCCGCCTCAC CAAGCCCGTG GTCTGCTGGT GCATTGGGAC ATGTGCCACC
    ATGTTCTCCT CTGAGGTACA GTTCGGCCAT GCTGGAGCTT GTGCCAACCA GGCTTCCGAA
    ACTGCAGTAG CCAAGAACCA GGCTTTGAAG GAGGCAGGAG TGTTTGTGCC CCCGAGCTTT
    GATGAACTTG GAGAAATCAT CCAGTCTGTG TATGAAGATC TTGTGGCCAG AGGAGTCATT
    GTCCCTGCTC AGGAGGTGCC GCCTCCAACC GTGCCCATGG ACTACTCCTG GGCCAGGGAG
    CTGGGCTTGA TCCGCAAACC TGCCTCATTC ATGACCAGCA TCTGTGACGA GCGAGGACAG
    GAGCTCATCT ATGCGGGCAT GCCCATCACC GAGGTCTTCA AGGAGGAGAT GGGCATTGGT
    GGGGTCCTTG GCCTCCTGTG GTTCCAGAGA AGGTTGCCCA AGTATGCCTG CCAGTTCATT
    GAGATGTGCC TGATGGTGAC GGCAGATCAC GGGCCAGCTG TGTCTGGGGC TCACAACACC
    ATCATCTGCG CTCGGGCTGG GAAGGACCTG GTTTCCAGCC TCACCTCGGG GCTGCTCACT
    ATTGGGGACC GGTTTGGGGG TGCCCTGGAT GCTGCTGCCA AGATGTTCAG CAAAGCCTTT
    GACAGTGGTA TTATCCCCAT GGAGTTTGTG AACAAGATGA AGAAGGAAGG AAAGCTGATC
    ATGGGCATCG GTCACCGAGT GAAATCGATA AACAACCCAG ACATGCGAGT GCAGATCCTC
    AAAGATTACG TCAAACAGCA CTTCCCCGCC ACCCCTCTGC TTGACTATGC GCTGGAGGTC
    GAGAAGATTA CCACCTCGAA GAAACCAAAT CTGATCCTGA ACGTCGACGG TTTCATTGGA
    GTTGCGTTTG TAGACATGCT TAGAAACTGT GGGTCCTTTA CCCGGGAGGA AGCTGATGAA
    TATATTGACA TTGGAGCCCT CAATGGCATC TTTGTGCTGG GAAGGAGTAT GGGCTTCATT
    GGACACTATC TCGATCAGAA GAGGCTGAAG CAGGGGCTGT ATCGTCACCC GTGGGATGAT
    ATTTCATATG TTCTTCCGGA ACACATGAGC ATGTAA

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

    RefSeq XP_019658265.1
    CDS171..3446
    Translation

    Target ORF information:

    RefSeq Version XM_019802706.1
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca ATP citrate lyase (ACLY), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019802706.1

    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
    ATGTCGGCCA AGGCGATTTC GGAGCAGACC GGCAAAGAAC TCCTTTACAA ATACATCTGC 
    ACCACCTCGG CCATCCAGAA CCGGTTCAAG TATGCCCGGG TCACCCCTGA CACAGACTGG
    GCCCGCCTGC TGCAGGACCA CCCTTGGCTG CTCAGCCAGA GCTTGGTGGT CAAGCCAGAC
    CAGCTGATCA AACGGCGTGG AAAGCTAGGC CTCGTGGGAG TCAACCTCAC TCTGGAAGGC
    GTTAAGTCCT GGCTGAAACC ACGGCTGGGA CAGGAGGCCA CTGTGGGCAA GGCCAGAGGC
    TTCCTCAAGA ATTTTCTGAT TGAACCCTTC GTCCCCCACA GTCAGGCGGA GGAGTTCTAT
    GTCTGCATCT ATGCTACCCG AGAAGGGGAC TATGTCCTGT TCCACCATGA AGGTGGGGTG
    GATGTGGGCG ACGTGGACGC CAAAGCCCAG AAACTGCTTG TTGGCGTGGA CAAGAAACTG
    AATCCTGAGG ACATCAAGAA ACACCTGTTG GTCCACGCTC CTGGAGACAA GAAAGAGATT
    CTGGCCAGTT TTATCTCCGG CCTCTTCGAT TTCTATGAGG ATCTGTACTT CACCTACCTC
    GAGATCAACC CCCTTGTTGT GACCAAAGAT GGCGTCTATG TCCTTGACTT GGCGGCCAAG
    ATAGATGCCA CAGCCGACTA CATCTGCAAA GTGAAGTGGG GTGATATAGA GTTCCCTCCT
    CCCTTCGGAC GGGAGGCTTA CCCAGAGGAA GCTTACATTG CAGACCTGGA TGCCAAAAGT
    GGGGCGAGCC TGAAGCTGAC CTTGCTGAAC CCCAAGGGGA GGATCTGGAC CATGGTGGCC
    GGAGGTGGTG CCTCGGTTGT GTACAGTGAC ACCATCTGTG ACTTAGGGGG TGTCAACGAA
    CTGGCAAACT ATGGGGAGTA CTCGGGCGCC CCCAGCGAGC AGCAGACCTA TGACTACGCC
    AAGACGATCC TCTCCCTCAT GACCCGGGAG AAGCACCCAG ATGGCAAGAT CCTCATCATC
    GGAGGCAGCA TCGCAAATTT CACCAATGTG GCCGCCACGT TCAAGGGCAT CGTGAGAGCA
    ATTCGAGATT ACCAGGGCCC CCTGAAGGAG CATGAGGTCA CCATCTTTGT CCGAAGAGGT
    GGCCCCAACT ATCAGGAGGG CTTGCGGGTG ATGGGAGAAG TCGGGAAGAC CACTGGGATC
    CCCATCCATG TCTTTGGCAC TGAGACTCAC ATGACGGCCA TTGTGGGCAT GGCTCTGGGC
    CACCGGCCCA TCCCCAACCA GCCACCCACA GCCGCTCACA CTGCAAACTT CCTCCTCAAT
    GCCAGCGGGA GTACATCGAC TCCAGCCCCC AGCAGGACGG CGTCTTTTTC TGAGTCCAGG
    GCTGATGAGG TGGCACCCGC AAAGAAGGCC AAGCCTGCCA TGCCCCAAGG AAAGAGTGCC
    ACCCTCTTCA GCCGCCACAC CAAGGCCATT GTGTGGGGCA TGCAGACCCG GGCCGTACAG
    GGCATGCTGG ACTTCGACTA CGTCTGTTCC CGAGATGAGC CTTCGGTGGC CGCCATGGTG
    TACCCTTTCA CCGGGGACCA CAAGCAGAAG TTTTACTGGG GCCACAAAGA GATCCTGATC
    CCTGTCTTCA AGAACATGGC TGACGCCATG AAGAAACACC CAGAAGTAGA CGTGCTGATC
    AACTTTGCCT CTCTCCGCTC AGCCTACGAC AGTACCATTG AGACAATGAA TTACGCGCAG
    ATCCGGACCA TTGCCATCAT AGCTGAAGGC ATCCCTGAGG CCCTCACAAG GAAGCTGATC
    AAGAAGGCGG ACCAGAAGGG AGTGACCATC ATTGGACCTG CCACTGTTGG AGGCATCAAG
    CCCGGGTGCT TTAAGATCGG GAATACAGGC GGGATGCTGG ACAACATCCT GGCCTCCAAG
    TTGTACCGCC CTGGCAGCGT GGCCTACGTC TCGCGCTCAG GGGGCATGTC AAATGAGCTC
    AACAACATCA TCTCTCGGAC CACAGATGGC GTCTACGAGG GCGTGGCCAT CGGCGGGGAC
    AGGTACCCTG GCTCAACATT TATGGATCAC GTGTTACGTT ATCAGGATAC TCCAGGAGTA
    AAAATGATTG TGGTTCTTGG AGAGATAGGG GGCACTGAGG AATACAAGAT CTGCCGGGGC
    ATCCAAGAGG GCCGCCTCAC CAAGCCCGTG GTCTGCTGGT GCATTGGGAC ATGTGCCACC
    ATGTTCTCCT CTGAGGTACA GTTCGGCCAT GCTGGAGCTT GTGCCAACCA GGCTTCCGAA
    ACTGCAGTAG CCAAGAACCA GGCTTTGAAG GAGGCAGGAG TGTTTGTGCC CCCGAGCTTT
    GATGAACTTG GAGAAATCAT CCAGTCTGTG TATGAAGATC TTGTGGCCAG AGGAGTCATT
    GTCCCTGCTC AGGAGGTGCC GCCTCCAACC GTGCCCATGG ACTACTCCTG GGCCAGGGAG
    CTGGGCTTGA TCCGCAAACC TGCCTCATTC ATGACCAGCA TCTGTGACGA GCGAGGACAG
    GAGCTCATCT ATGCGGGCAT GCCCATCACC GAGGTCTTCA AGGAGGAGAT GGGCATTGGT
    GGGGTCCTTG GCCTCCTGTG GTTCCAGAGA AGGTTGCCCA AGTATGCCTG CCAGTTCATT
    GAGATGTGCC TGATGGTGAC GGCAGATCAC GGGCCAGCTG TGTCTGGGGC TCACAACACC
    ATCATCTGCG CTCGGGCTGG GAAGGACCTG GTTTCCAGCC TCACCTCGGG GCTGCTCACT
    ATTGGGGACC GGTTTGGGGG TGCCCTGGAT GCTGCTGCCA AGATGTTCAG CAAAGCCTTT
    GACAGTGGTA TTATCCCCAT GGAGTTTGTG AACAAGATGA AGAAGGAAGG AAAGCTGATC
    ATGGGCATCG GTCACCGAGT GAAATCGATA AACAACCCAG ACATGCGAGT GCAGATCCTC
    AAAGATTACG TCAAACAGCA CTTCCCCGCC ACCCCTCTGC TTGACTATGC GCTGGAGGTC
    GAGAAGATTA CCACCTCGAA GAAACCAAAT CTGATCCTGA ACGTCGACGG TTTCATTGGA
    GTTGCGTTTG TAGACATGCT TAGAAACTGT GGGTCCTTTA CCCGGGAGGA AGCTGATGAA
    TATATTGACA TTGGAGCCCT CAATGGCATC TTTGTGCTGG GAAGGAGTAT GGGCTTCATT
    GGACACTATC TCGATCAGAA GAGGCTGAAG CAGGGGCTGT ATCGTCACCC GTGGGATGAT
    ATTTCATATG TTCTTCCGGA ACACATGAGC ATGTAA

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

    CloneID OAc20876
    Clone ID Related Accession (Same CDS sequence) XM_011228608.2
    Accession Version XM_011228608.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3477bp)
    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 ATP-citrate synthase isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003217842.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 28, 2016 this sequence version replaced XM_011228608.1. ##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
    ATGGGGGCGG GGAGAAGCCC GCAGGGGCCC GGACAAAAGC CGGATCCCGG GCGGCTGCTT 
    GAGGCTGGAG TGCTCGGGGC ATTGGGCAGT AAGGCGGGTT TCTGGGAAAA GCGGAGGGAG
    CGAGCGGGGC GCTCAGCCTT GGCGGGCCAC GCGGGCATTC CCTCAGCAGC TATGTCGGCC
    AAGGCGATTT CGGAGCAGAC CGGCAAAGAA CTCCTTTACA AATACATCTG CACCACCTCG
    GCCATCCAGA ACCGGTTCAA GTATGCCCGG GTCACCCCTG ACACAGACTG GGCCCGCCTG
    CTGCAGGACC ACCCTTGGCT GCTCAGCCAG AGCTTGGTGG TCAAGCCAGA CCAGCTGATC
    AAACGGCGTG GAAAGCTAGG CCTCGTGGGA GTCAACCTCA CTCTGGAAGG CGTTAAGTCC
    TGGCTGAAAC CACGGCTGGG ACAGGAGGCC ACTGTGGGCA AGGCCAGAGG CTTCCTCAAG
    AATTTTCTGA TTGAACCCTT CGTCCCCCAC AGTCAGGCGG AGGAGTTCTA TGTCTGCATC
    TATGCTACCC GAGAAGGGGA CTATGTCCTG TTCCACCATG AAGGTGGGGT GGATGTGGGC
    GACGTGGACG CCAAAGCCCA GAAACTGCTT GTTGGCGTGG ACAAGAAACT GAATCCTGAG
    GACATCAAGA AACACCTGTT GGTCCACGCT CCTGGAGACA AGAAAGAGAT TCTGGCCAGT
    TTTATCTCCG GCCTCTTCGA TTTCTATGAG GATCTGTACT TCACCTACCT CGAGATCAAC
    CCCCTTGTTG TGACCAAAGA TGGCGTCTAT GTCCTTGACT TGGCGGCCAA GATAGATGCC
    ACAGCCGACT ACATCTGCAA AGTGAAGTGG GGTGATATAG AGTTCCCTCC TCCCTTCGGA
    CGGGAGGCTT ACCCAGAGGA AGCTTACATT GCAGACCTGG ATGCCAAAAG TGGGGCGAGC
    CTGAAGCTGA CCTTGCTGAA CCCCAAGGGG AGGATCTGGA CCATGGTGGC CGGAGGTGGT
    GCCTCGGTTG TGTACAGTGA CACCATCTGT GACTTAGGGG GTGTCAACGA ACTGGCAAAC
    TATGGGGAGT ACTCGGGCGC CCCCAGCGAG CAGCAGACCT ATGACTACGC CAAGACGATC
    CTCTCCCTCA TGACCCGGGA GAAGCACCCA GATGGCAAGA TCCTCATCAT CGGAGGCAGC
    ATCGCAAATT TCACCAATGT GGCCGCCACG TTCAAGGGCA TCGTGAGAGC AATTCGAGAT
    TACCAGGGCC CCCTGAAGGA GCATGAGGTC ACCATCTTTG TCCGAAGAGG TGGCCCCAAC
    TATCAGGAGG GCTTGCGGGT GATGGGAGAA GTCGGGAAGA CCACTGGGAT CCCCATCCAT
    GTCTTTGGCA CTGAGACTCA CATGACGGCC ATTGTGGGCA TGGCTCTGGG CCACCGGCCC
    ATCCCCAACC AGCCACCCAC AGCCGCTCAC ACTGCAAACT TCCTCCTCAA TGCCAGCGGG
    AGTACATCGA CTCCAGCCCC CAGCAGGACG GCGTCTTTTT CTGAGTCCAG GGCTGATGAG
    GTGGCACCCG CAAAGAAGGC CAAGCCTGCC ATGCCCCAAG ATTCAGTCCC AAGTCCAAGA
    TCCCTGCAAG GAAAGAGTGC CACCCTCTTC AGCCGCCACA CCAAGGCCAT TGTGTGGGGC
    ATGCAGACCC GGGCCGTACA GGGCATGCTG GACTTCGACT ACGTCTGTTC CCGAGATGAG
    CCTTCGGTGG CCGCCATGGT GTACCCTTTC ACCGGGGACC ACAAGCAGAA GTTTTACTGG
    GGCCACAAAG AGATCCTGAT CCCTGTCTTC AAGAACATGG CTGACGCCAT GAAGAAACAC
    CCAGAAGTAG ACGTGCTGAT CAACTTTGCC TCTCTCCGCT CAGCCTACGA CAGTACCATT
    GAGACAATGA ATTACGCGCA GATCCGGACC ATTGCCATCA TAGCTGAAGG CATCCCTGAG
    GCCCTCACAA GGAAGCTGAT CAAGAAGGCG GACCAGAAGG GAGTGACCAT CATTGGACCT
    GCCACTGTTG GAGGCATCAA GCCCGGGTGC TTTAAGATCG GGAATACAGG CGGGATGCTG
    GACAACATCC TGGCCTCCAA GTTGTACCGC CCTGGCAGCG TGGCCTACGT CTCGCGCTCA
    GGGGGCATGT CAAATGAGCT CAACAACATC ATCTCTCGGA CCACAGATGG CGTCTACGAG
    GGCGTGGCCA TCGGCGGGGA CAGGTACCCT GGCTCAACAT TTATGGATCA CGTGTTACGT
    TATCAGGATA CTCCAGGAGT AAAAATGATT GTGGTTCTTG GAGAGATAGG GGGCACTGAG
    GAATACAAGA TCTGCCGGGG CATCCAAGAG GGCCGCCTCA CCAAGCCCGT GGTCTGCTGG
    TGCATTGGGA CATGTGCCAC CATGTTCTCC TCTGAGGTAC AGTTCGGCCA TGCTGGAGCT
    TGTGCCAACC AGGCTTCCGA AACTGCAGTA GCCAAGAACC AGGCTTTGAA GGAGGCAGGA
    GTGTTTGTGC CCCCGAGCTT TGATGAACTT GGAGAAATCA TCCAGTCTGT GTATGAAGAT
    CTTGTGGCCA GAGGAGTCAT TGTCCCTGCT CAGGAGGTGC CGCCTCCAAC CGTGCCCATG
    GACTACTCCT GGGCCAGGGA GCTGGGCTTG ATCCGCAAAC CTGCCTCATT CATGACCAGC
    ATCTGTGACG AGCGAGGACA GGAGCTCATC TATGCGGGCA TGCCCATCAC CGAGGTCTTC
    AAGGAGGAGA TGGGCATTGG TGGGGTCCTT GGCCTCCTGT GGTTCCAGAG AAGGTTGCCC
    AAGTATGCCT GCCAGTTCAT TGAGATGTGC CTGATGGTGA CGGCAGATCA CGGGCCAGCT
    GTGTCTGGGG CTCACAACAC CATCATCTGC GCTCGGGCTG GGAAGGACCT GGTTTCCAGC
    CTCACCTCGG GGCTGCTCAC TATTGGGGAC CGGTTTGGGG GTGCCCTGGA TGCTGCTGCC
    AAGATGTTCA GCAAAGCCTT TGACAGTGGT ATTATCCCCA TGGAGTTTGT GAACAAGATG
    AAGAAGGAAG GAAAGCTGAT CATGGGCATC GGTCACCGAG TGAAATCGAT AAACAACCCA
    GACATGCGAG TGCAGATCCT CAAAGATTAC GTCAAACAGC ACTTCCCCGC CACCCCTCTG
    CTTGACTATG CGCTGGAGGT CGAGAAGATT ACCACCTCGA AGAAACCAAA TCTGATCCTG
    AACGTCGACG GTTTCATTGG AGTTGCGTTT GTAGACATGC TTAGAAACTG TGGGTCCTTT
    ACCCGGGAGG AAGCTGATGA ATATATTGAC ATTGGAGCCC TCAATGGCAT CTTTGTGCTG
    GGAAGGAGTA TGGGCTTCAT TGGACACTAT CTCGATCAGA AGAGGCTGAA GCAGGGGCTG
    TATCGTCACC CGTGGGATGA TATTTCATAT GTTCTTCCGG AACACATGAG CATGTAA

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

    RefSeq XP_011226910.1
    CDS11..3487
    Translation

    Target ORF information:

    RefSeq Version XM_011228608.2
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca ATP citrate lyase (ACLY), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011228608.2

    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
    ATGGGGGCGG GGAGAAGCCC GCAGGGGCCC GGACAAAAGC CGGATCCCGG GCGGCTGCTT 
    GAGGCTGGAG TGCTCGGGGC ATTGGGCAGT AAGGCGGGTT TCTGGGAAAA GCGGAGGGAG
    CGAGCGGGGC GCTCAGCCTT GGCGGGCCAC GCGGGCATTC CCTCAGCAGC TATGTCGGCC
    AAGGCGATTT CGGAGCAGAC CGGCAAAGAA CTCCTTTACA AATACATCTG CACCACCTCG
    GCCATCCAGA ACCGGTTCAA GTATGCCCGG GTCACCCCTG ACACAGACTG GGCCCGCCTG
    CTGCAGGACC ACCCTTGGCT GCTCAGCCAG AGCTTGGTGG TCAAGCCAGA CCAGCTGATC
    AAACGGCGTG GAAAGCTAGG CCTCGTGGGA GTCAACCTCA CTCTGGAAGG CGTTAAGTCC
    TGGCTGAAAC CACGGCTGGG ACAGGAGGCC ACTGTGGGCA AGGCCAGAGG CTTCCTCAAG
    AATTTTCTGA TTGAACCCTT CGTCCCCCAC AGTCAGGCGG AGGAGTTCTA TGTCTGCATC
    TATGCTACCC GAGAAGGGGA CTATGTCCTG TTCCACCATG AAGGTGGGGT GGATGTGGGC
    GACGTGGACG CCAAAGCCCA GAAACTGCTT GTTGGCGTGG ACAAGAAACT GAATCCTGAG
    GACATCAAGA AACACCTGTT GGTCCACGCT CCTGGAGACA AGAAAGAGAT TCTGGCCAGT
    TTTATCTCCG GCCTCTTCGA TTTCTATGAG GATCTGTACT TCACCTACCT CGAGATCAAC
    CCCCTTGTTG TGACCAAAGA TGGCGTCTAT GTCCTTGACT TGGCGGCCAA GATAGATGCC
    ACAGCCGACT ACATCTGCAA AGTGAAGTGG GGTGATATAG AGTTCCCTCC TCCCTTCGGA
    CGGGAGGCTT ACCCAGAGGA AGCTTACATT GCAGACCTGG ATGCCAAAAG TGGGGCGAGC
    CTGAAGCTGA CCTTGCTGAA CCCCAAGGGG AGGATCTGGA CCATGGTGGC CGGAGGTGGT
    GCCTCGGTTG TGTACAGTGA CACCATCTGT GACTTAGGGG GTGTCAACGA ACTGGCAAAC
    TATGGGGAGT ACTCGGGCGC CCCCAGCGAG CAGCAGACCT ATGACTACGC CAAGACGATC
    CTCTCCCTCA TGACCCGGGA GAAGCACCCA GATGGCAAGA TCCTCATCAT CGGAGGCAGC
    ATCGCAAATT TCACCAATGT GGCCGCCACG TTCAAGGGCA TCGTGAGAGC AATTCGAGAT
    TACCAGGGCC CCCTGAAGGA GCATGAGGTC ACCATCTTTG TCCGAAGAGG TGGCCCCAAC
    TATCAGGAGG GCTTGCGGGT GATGGGAGAA GTCGGGAAGA CCACTGGGAT CCCCATCCAT
    GTCTTTGGCA CTGAGACTCA CATGACGGCC ATTGTGGGCA TGGCTCTGGG CCACCGGCCC
    ATCCCCAACC AGCCACCCAC AGCCGCTCAC ACTGCAAACT TCCTCCTCAA TGCCAGCGGG
    AGTACATCGA CTCCAGCCCC CAGCAGGACG GCGTCTTTTT CTGAGTCCAG GGCTGATGAG
    GTGGCACCCG CAAAGAAGGC CAAGCCTGCC ATGCCCCAAG ATTCAGTCCC AAGTCCAAGA
    TCCCTGCAAG GAAAGAGTGC CACCCTCTTC AGCCGCCACA CCAAGGCCAT TGTGTGGGGC
    ATGCAGACCC GGGCCGTACA GGGCATGCTG GACTTCGACT ACGTCTGTTC CCGAGATGAG
    CCTTCGGTGG CCGCCATGGT GTACCCTTTC ACCGGGGACC ACAAGCAGAA GTTTTACTGG
    GGCCACAAAG AGATCCTGAT CCCTGTCTTC AAGAACATGG CTGACGCCAT GAAGAAACAC
    CCAGAAGTAG ACGTGCTGAT CAACTTTGCC TCTCTCCGCT CAGCCTACGA CAGTACCATT
    GAGACAATGA ATTACGCGCA GATCCGGACC ATTGCCATCA TAGCTGAAGG CATCCCTGAG
    GCCCTCACAA GGAAGCTGAT CAAGAAGGCG GACCAGAAGG GAGTGACCAT CATTGGACCT
    GCCACTGTTG GAGGCATCAA GCCCGGGTGC TTTAAGATCG GGAATACAGG CGGGATGCTG
    GACAACATCC TGGCCTCCAA GTTGTACCGC CCTGGCAGCG TGGCCTACGT CTCGCGCTCA
    GGGGGCATGT CAAATGAGCT CAACAACATC ATCTCTCGGA CCACAGATGG CGTCTACGAG
    GGCGTGGCCA TCGGCGGGGA CAGGTACCCT GGCTCAACAT TTATGGATCA CGTGTTACGT
    TATCAGGATA CTCCAGGAGT AAAAATGATT GTGGTTCTTG GAGAGATAGG GGGCACTGAG
    GAATACAAGA TCTGCCGGGG CATCCAAGAG GGCCGCCTCA CCAAGCCCGT GGTCTGCTGG
    TGCATTGGGA CATGTGCCAC CATGTTCTCC TCTGAGGTAC AGTTCGGCCA TGCTGGAGCT
    TGTGCCAACC AGGCTTCCGA AACTGCAGTA GCCAAGAACC AGGCTTTGAA GGAGGCAGGA
    GTGTTTGTGC CCCCGAGCTT TGATGAACTT GGAGAAATCA TCCAGTCTGT GTATGAAGAT
    CTTGTGGCCA GAGGAGTCAT TGTCCCTGCT CAGGAGGTGC CGCCTCCAAC CGTGCCCATG
    GACTACTCCT GGGCCAGGGA GCTGGGCTTG ATCCGCAAAC CTGCCTCATT CATGACCAGC
    ATCTGTGACG AGCGAGGACA GGAGCTCATC TATGCGGGCA TGCCCATCAC CGAGGTCTTC
    AAGGAGGAGA TGGGCATTGG TGGGGTCCTT GGCCTCCTGT GGTTCCAGAG AAGGTTGCCC
    AAGTATGCCT GCCAGTTCAT TGAGATGTGC CTGATGGTGA CGGCAGATCA CGGGCCAGCT
    GTGTCTGGGG CTCACAACAC CATCATCTGC GCTCGGGCTG GGAAGGACCT GGTTTCCAGC
    CTCACCTCGG GGCTGCTCAC TATTGGGGAC CGGTTTGGGG GTGCCCTGGA TGCTGCTGCC
    AAGATGTTCA GCAAAGCCTT TGACAGTGGT ATTATCCCCA TGGAGTTTGT GAACAAGATG
    AAGAAGGAAG GAAAGCTGAT CATGGGCATC GGTCACCGAG TGAAATCGAT AAACAACCCA
    GACATGCGAG TGCAGATCCT CAAAGATTAC GTCAAACAGC ACTTCCCCGC CACCCCTCTG
    CTTGACTATG CGCTGGAGGT CGAGAAGATT ACCACCTCGA AGAAACCAAA TCTGATCCTG
    AACGTCGACG GTTTCATTGG AGTTGCGTTT GTAGACATGC TTAGAAACTG TGGGTCCTTT
    ACCCGGGAGG AAGCTGATGA ATATATTGAC ATTGGAGCCC TCAATGGCAT CTTTGTGCTG
    GGAAGGAGTA TGGGCTTCAT TGGACACTAT CTCGATCAGA AGAGGCTGAA GCAGGGGCTG
    TATCGTCACC CGTGGGATGA TATTTCATAT GTTCTTCCGG AACACATGAG CATGTAA

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

    CloneID OAc20877
    Clone ID Related Accession (Same CDS sequence) XM_011228609.2
    Accession Version XM_011228609.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3447bp)
    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 ATP-citrate synthase isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003217842.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 28, 2016 this sequence version replaced XM_011228609.1. ##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
    ATGGGGGCGG GGAGAAGCCC GCAGGGGCCC GGACAAAAGC CGGATCCCGG GCGGCTGCTT 
    GAGGCTGGAG TGCTCGGGGC ATTGGGCAGT AAGGCGGGTT TCTGGGAAAA GCGGAGGGAG
    CGAGCGGGGC GCTCAGCCTT GGCGGGCCAC GCGGGCATTC CCTCAGCAGC TATGTCGGCC
    AAGGCGATTT CGGAGCAGAC CGGCAAAGAA CTCCTTTACA AATACATCTG CACCACCTCG
    GCCATCCAGA ACCGGTTCAA GTATGCCCGG GTCACCCCTG ACACAGACTG GGCCCGCCTG
    CTGCAGGACC ACCCTTGGCT GCTCAGCCAG AGCTTGGTGG TCAAGCCAGA CCAGCTGATC
    AAACGGCGTG GAAAGCTAGG CCTCGTGGGA GTCAACCTCA CTCTGGAAGG CGTTAAGTCC
    TGGCTGAAAC CACGGCTGGG ACAGGAGGCC ACTGTGGGCA AGGCCAGAGG CTTCCTCAAG
    AATTTTCTGA TTGAACCCTT CGTCCCCCAC AGTCAGGCGG AGGAGTTCTA TGTCTGCATC
    TATGCTACCC GAGAAGGGGA CTATGTCCTG TTCCACCATG AAGGTGGGGT GGATGTGGGC
    GACGTGGACG CCAAAGCCCA GAAACTGCTT GTTGGCGTGG ACAAGAAACT GAATCCTGAG
    GACATCAAGA AACACCTGTT GGTCCACGCT CCTGGAGACA AGAAAGAGAT TCTGGCCAGT
    TTTATCTCCG GCCTCTTCGA TTTCTATGAG GATCTGTACT TCACCTACCT CGAGATCAAC
    CCCCTTGTTG TGACCAAAGA TGGCGTCTAT GTCCTTGACT TGGCGGCCAA GATAGATGCC
    ACAGCCGACT ACATCTGCAA AGTGAAGTGG GGTGATATAG AGTTCCCTCC TCCCTTCGGA
    CGGGAGGCTT ACCCAGAGGA AGCTTACATT GCAGACCTGG ATGCCAAAAG TGGGGCGAGC
    CTGAAGCTGA CCTTGCTGAA CCCCAAGGGG AGGATCTGGA CCATGGTGGC CGGAGGTGGT
    GCCTCGGTTG TGTACAGTGA CACCATCTGT GACTTAGGGG GTGTCAACGA ACTGGCAAAC
    TATGGGGAGT ACTCGGGCGC CCCCAGCGAG CAGCAGACCT ATGACTACGC CAAGACGATC
    CTCTCCCTCA TGACCCGGGA GAAGCACCCA GATGGCAAGA TCCTCATCAT CGGAGGCAGC
    ATCGCAAATT TCACCAATGT GGCCGCCACG TTCAAGGGCA TCGTGAGAGC AATTCGAGAT
    TACCAGGGCC CCCTGAAGGA GCATGAGGTC ACCATCTTTG TCCGAAGAGG TGGCCCCAAC
    TATCAGGAGG GCTTGCGGGT GATGGGAGAA GTCGGGAAGA CCACTGGGAT CCCCATCCAT
    GTCTTTGGCA CTGAGACTCA CATGACGGCC ATTGTGGGCA TGGCTCTGGG CCACCGGCCC
    ATCCCCAACC AGCCACCCAC AGCCGCTCAC ACTGCAAACT TCCTCCTCAA TGCCAGCGGG
    AGTACATCGA CTCCAGCCCC CAGCAGGACG GCGTCTTTTT CTGAGTCCAG GGCTGATGAG
    GTGGCACCCG CAAAGAAGGC CAAGCCTGCC ATGCCCCAAG GAAAGAGTGC CACCCTCTTC
    AGCCGCCACA CCAAGGCCAT TGTGTGGGGC ATGCAGACCC GGGCCGTACA GGGCATGCTG
    GACTTCGACT ACGTCTGTTC CCGAGATGAG CCTTCGGTGG CCGCCATGGT GTACCCTTTC
    ACCGGGGACC ACAAGCAGAA GTTTTACTGG GGCCACAAAG AGATCCTGAT CCCTGTCTTC
    AAGAACATGG CTGACGCCAT GAAGAAACAC CCAGAAGTAG ACGTGCTGAT CAACTTTGCC
    TCTCTCCGCT CAGCCTACGA CAGTACCATT GAGACAATGA ATTACGCGCA GATCCGGACC
    ATTGCCATCA TAGCTGAAGG CATCCCTGAG GCCCTCACAA GGAAGCTGAT CAAGAAGGCG
    GACCAGAAGG GAGTGACCAT CATTGGACCT GCCACTGTTG GAGGCATCAA GCCCGGGTGC
    TTTAAGATCG GGAATACAGG CGGGATGCTG GACAACATCC TGGCCTCCAA GTTGTACCGC
    CCTGGCAGCG TGGCCTACGT CTCGCGCTCA GGGGGCATGT CAAATGAGCT CAACAACATC
    ATCTCTCGGA CCACAGATGG CGTCTACGAG GGCGTGGCCA TCGGCGGGGA CAGGTACCCT
    GGCTCAACAT TTATGGATCA CGTGTTACGT TATCAGGATA CTCCAGGAGT AAAAATGATT
    GTGGTTCTTG GAGAGATAGG GGGCACTGAG GAATACAAGA TCTGCCGGGG CATCCAAGAG
    GGCCGCCTCA CCAAGCCCGT GGTCTGCTGG TGCATTGGGA CATGTGCCAC CATGTTCTCC
    TCTGAGGTAC AGTTCGGCCA TGCTGGAGCT TGTGCCAACC AGGCTTCCGA AACTGCAGTA
    GCCAAGAACC AGGCTTTGAA GGAGGCAGGA GTGTTTGTGC CCCCGAGCTT TGATGAACTT
    GGAGAAATCA TCCAGTCTGT GTATGAAGAT CTTGTGGCCA GAGGAGTCAT TGTCCCTGCT
    CAGGAGGTGC CGCCTCCAAC CGTGCCCATG GACTACTCCT GGGCCAGGGA GCTGGGCTTG
    ATCCGCAAAC CTGCCTCATT CATGACCAGC ATCTGTGACG AGCGAGGACA GGAGCTCATC
    TATGCGGGCA TGCCCATCAC CGAGGTCTTC AAGGAGGAGA TGGGCATTGG TGGGGTCCTT
    GGCCTCCTGT GGTTCCAGAG AAGGTTGCCC AAGTATGCCT GCCAGTTCAT TGAGATGTGC
    CTGATGGTGA CGGCAGATCA CGGGCCAGCT GTGTCTGGGG CTCACAACAC CATCATCTGC
    GCTCGGGCTG GGAAGGACCT GGTTTCCAGC CTCACCTCGG GGCTGCTCAC TATTGGGGAC
    CGGTTTGGGG GTGCCCTGGA TGCTGCTGCC AAGATGTTCA GCAAAGCCTT TGACAGTGGT
    ATTATCCCCA TGGAGTTTGT GAACAAGATG AAGAAGGAAG GAAAGCTGAT CATGGGCATC
    GGTCACCGAG TGAAATCGAT AAACAACCCA GACATGCGAG TGCAGATCCT CAAAGATTAC
    GTCAAACAGC ACTTCCCCGC CACCCCTCTG CTTGACTATG CGCTGGAGGT CGAGAAGATT
    ACCACCTCGA AGAAACCAAA TCTGATCCTG AACGTCGACG GTTTCATTGG AGTTGCGTTT
    GTAGACATGC TTAGAAACTG TGGGTCCTTT ACCCGGGAGG AAGCTGATGA ATATATTGAC
    ATTGGAGCCC TCAATGGCAT CTTTGTGCTG GGAAGGAGTA TGGGCTTCAT TGGACACTAT
    CTCGATCAGA AGAGGCTGAA GCAGGGGCTG TATCGTCACC CGTGGGATGA TATTTCATAT
    GTTCTTCCGG AACACATGAG CATGTAA

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

    RefSeq XP_011226911.1
    CDS11..3457
    Translation

    Target ORF information:

    RefSeq Version XM_011228609.2
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca ATP citrate lyase (ACLY), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011228609.2

    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
    ATGGGGGCGG GGAGAAGCCC GCAGGGGCCC GGACAAAAGC CGGATCCCGG GCGGCTGCTT 
    GAGGCTGGAG TGCTCGGGGC ATTGGGCAGT AAGGCGGGTT TCTGGGAAAA GCGGAGGGAG
    CGAGCGGGGC GCTCAGCCTT GGCGGGCCAC GCGGGCATTC CCTCAGCAGC TATGTCGGCC
    AAGGCGATTT CGGAGCAGAC CGGCAAAGAA CTCCTTTACA AATACATCTG CACCACCTCG
    GCCATCCAGA ACCGGTTCAA GTATGCCCGG GTCACCCCTG ACACAGACTG GGCCCGCCTG
    CTGCAGGACC ACCCTTGGCT GCTCAGCCAG AGCTTGGTGG TCAAGCCAGA CCAGCTGATC
    AAACGGCGTG GAAAGCTAGG CCTCGTGGGA GTCAACCTCA CTCTGGAAGG CGTTAAGTCC
    TGGCTGAAAC CACGGCTGGG ACAGGAGGCC ACTGTGGGCA AGGCCAGAGG CTTCCTCAAG
    AATTTTCTGA TTGAACCCTT CGTCCCCCAC AGTCAGGCGG AGGAGTTCTA TGTCTGCATC
    TATGCTACCC GAGAAGGGGA CTATGTCCTG TTCCACCATG AAGGTGGGGT GGATGTGGGC
    GACGTGGACG CCAAAGCCCA GAAACTGCTT GTTGGCGTGG ACAAGAAACT GAATCCTGAG
    GACATCAAGA AACACCTGTT GGTCCACGCT CCTGGAGACA AGAAAGAGAT TCTGGCCAGT
    TTTATCTCCG GCCTCTTCGA TTTCTATGAG GATCTGTACT TCACCTACCT CGAGATCAAC
    CCCCTTGTTG TGACCAAAGA TGGCGTCTAT GTCCTTGACT TGGCGGCCAA GATAGATGCC
    ACAGCCGACT ACATCTGCAA AGTGAAGTGG GGTGATATAG AGTTCCCTCC TCCCTTCGGA
    CGGGAGGCTT ACCCAGAGGA AGCTTACATT GCAGACCTGG ATGCCAAAAG TGGGGCGAGC
    CTGAAGCTGA CCTTGCTGAA CCCCAAGGGG AGGATCTGGA CCATGGTGGC CGGAGGTGGT
    GCCTCGGTTG TGTACAGTGA CACCATCTGT GACTTAGGGG GTGTCAACGA ACTGGCAAAC
    TATGGGGAGT ACTCGGGCGC CCCCAGCGAG CAGCAGACCT ATGACTACGC CAAGACGATC
    CTCTCCCTCA TGACCCGGGA GAAGCACCCA GATGGCAAGA TCCTCATCAT CGGAGGCAGC
    ATCGCAAATT TCACCAATGT GGCCGCCACG TTCAAGGGCA TCGTGAGAGC AATTCGAGAT
    TACCAGGGCC CCCTGAAGGA GCATGAGGTC ACCATCTTTG TCCGAAGAGG TGGCCCCAAC
    TATCAGGAGG GCTTGCGGGT GATGGGAGAA GTCGGGAAGA CCACTGGGAT CCCCATCCAT
    GTCTTTGGCA CTGAGACTCA CATGACGGCC ATTGTGGGCA TGGCTCTGGG CCACCGGCCC
    ATCCCCAACC AGCCACCCAC AGCCGCTCAC ACTGCAAACT TCCTCCTCAA TGCCAGCGGG
    AGTACATCGA CTCCAGCCCC CAGCAGGACG GCGTCTTTTT CTGAGTCCAG GGCTGATGAG
    GTGGCACCCG CAAAGAAGGC CAAGCCTGCC ATGCCCCAAG GAAAGAGTGC CACCCTCTTC
    AGCCGCCACA CCAAGGCCAT TGTGTGGGGC ATGCAGACCC GGGCCGTACA GGGCATGCTG
    GACTTCGACT ACGTCTGTTC CCGAGATGAG CCTTCGGTGG CCGCCATGGT GTACCCTTTC
    ACCGGGGACC ACAAGCAGAA GTTTTACTGG GGCCACAAAG AGATCCTGAT CCCTGTCTTC
    AAGAACATGG CTGACGCCAT GAAGAAACAC CCAGAAGTAG ACGTGCTGAT CAACTTTGCC
    TCTCTCCGCT CAGCCTACGA CAGTACCATT GAGACAATGA ATTACGCGCA GATCCGGACC
    ATTGCCATCA TAGCTGAAGG CATCCCTGAG GCCCTCACAA GGAAGCTGAT CAAGAAGGCG
    GACCAGAAGG GAGTGACCAT CATTGGACCT GCCACTGTTG GAGGCATCAA GCCCGGGTGC
    TTTAAGATCG GGAATACAGG CGGGATGCTG GACAACATCC TGGCCTCCAA GTTGTACCGC
    CCTGGCAGCG TGGCCTACGT CTCGCGCTCA GGGGGCATGT CAAATGAGCT CAACAACATC
    ATCTCTCGGA CCACAGATGG CGTCTACGAG GGCGTGGCCA TCGGCGGGGA CAGGTACCCT
    GGCTCAACAT TTATGGATCA CGTGTTACGT TATCAGGATA CTCCAGGAGT AAAAATGATT
    GTGGTTCTTG GAGAGATAGG GGGCACTGAG GAATACAAGA TCTGCCGGGG CATCCAAGAG
    GGCCGCCTCA CCAAGCCCGT GGTCTGCTGG TGCATTGGGA CATGTGCCAC CATGTTCTCC
    TCTGAGGTAC AGTTCGGCCA TGCTGGAGCT TGTGCCAACC AGGCTTCCGA AACTGCAGTA
    GCCAAGAACC AGGCTTTGAA GGAGGCAGGA GTGTTTGTGC CCCCGAGCTT TGATGAACTT
    GGAGAAATCA TCCAGTCTGT GTATGAAGAT CTTGTGGCCA GAGGAGTCAT TGTCCCTGCT
    CAGGAGGTGC CGCCTCCAAC CGTGCCCATG GACTACTCCT GGGCCAGGGA GCTGGGCTTG
    ATCCGCAAAC CTGCCTCATT CATGACCAGC ATCTGTGACG AGCGAGGACA GGAGCTCATC
    TATGCGGGCA TGCCCATCAC CGAGGTCTTC AAGGAGGAGA TGGGCATTGG TGGGGTCCTT
    GGCCTCCTGT GGTTCCAGAG AAGGTTGCCC AAGTATGCCT GCCAGTTCAT TGAGATGTGC
    CTGATGGTGA CGGCAGATCA CGGGCCAGCT GTGTCTGGGG CTCACAACAC CATCATCTGC
    GCTCGGGCTG GGAAGGACCT GGTTTCCAGC CTCACCTCGG GGCTGCTCAC TATTGGGGAC
    CGGTTTGGGG GTGCCCTGGA TGCTGCTGCC AAGATGTTCA GCAAAGCCTT TGACAGTGGT
    ATTATCCCCA TGGAGTTTGT GAACAAGATG AAGAAGGAAG GAAAGCTGAT CATGGGCATC
    GGTCACCGAG TGAAATCGAT AAACAACCCA GACATGCGAG TGCAGATCCT CAAAGATTAC
    GTCAAACAGC ACTTCCCCGC CACCCCTCTG CTTGACTATG CGCTGGAGGT CGAGAAGATT
    ACCACCTCGA AGAAACCAAA TCTGATCCTG AACGTCGACG GTTTCATTGG AGTTGCGTTT
    GTAGACATGC TTAGAAACTG TGGGTCCTTT ACCCGGGAGG AAGCTGATGA ATATATTGAC
    ATTGGAGCCC TCAATGGCAT CTTTGTGCTG GGAAGGAGTA TGGGCTTCAT TGGACACTAT
    CTCGATCAGA AGAGGCTGAA GCAGGGGCTG TATCGTCACC CGTGGGATGA TATTTCATAT
    GTTCTTCCGG AACACATGAG CATGTAA

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