XPO5 cDNA ORF clone, Ailuropoda melanoleuca(giant panda)

The following XPO5 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the XPO5 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
OAc25237 XM_011218735.2
Latest version!
Ailuropoda melanoleuca exportin 5 (XPO5), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAc25238 XM_011218736.2
Latest version!
Ailuropoda melanoleuca exportin 5 (XPO5), transcript variant X2, 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 OAc25237
    Clone ID Related Accession (Same CDS sequence) XM_011218735.2
    Accession Version XM_011218735.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3603bp)
    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 exportin-5 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003217341.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 28, 2016 this sequence version replaced XM_011218735.1. ##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
    3541
    3601
    ATGGCGATGG ATCAAGTGAA CGCGTTGTGT GAGCAGCTGG TGAAAGCGGT GACGGTCATG 
    ATGGACCCCA GCTCCACCCA GCGCTACCGG CTGGAAGCCC TCAAGTTTTG TGAAGAGTTT
    AAAGAAAAAT GCCCTATCTG TGTCCCCTGT GGCTTGAGGT TGGCTGAGAA GACGCAAATT
    GCCATTGTCA GACATTTTGG CCTTCAGATC CTGGAACACG TTGTCAAGTT TCGGTGGAAC
    AGCATGTCTC GATTGGAGAA GGTCTATCTG AAGAACAGTG TCATGGAGCT GATTGCAAAT
    GGAACACTGG ATATTTTGGA AGAGGAGAAC CATATTAAAG ATGTTTTGTC TCGAATTGTA
    GTAGAAATGA TCAAGCGGGA GTGGCCACAG CACTGGCCTG ATATGCTAAT AGAACTGGAT
    ACCCTTTCCA AACAAGGGGA AACACAGACA GAATTAGTGA TGTTTATCCT TTTACGACTG
    GCAGAGGATG TAGTGACCTT TCAGACACTA CCCCCTCAAA GAAGAAGGGA TATCCAGCAA
    ACATTAACCC AGAACATGGA AAAGATCTTC AGTTTTCTAC TTAACACGCT TCAAGAAAAT
    GTAAACAAGT ACCGACAAGC GAAGACAGAT AATTCTCAGG AGTCAAAGGC CCAAGCAAAC
    TGTCGAGTCG GAGTCGCGGC ACTGAATACT CTAGCAGGCT ACATTGACTG GGTGTCCATG
    AATCATATCA CTGCTGAAAA CTGTAAGCTC TTAGAGATGC TCTGCCTGCT TCTGAATGAA
    CAGGAACTTC AGTTGGGAGC TGCTGAATGT CTTCTCATTG CAGTCAGCAG AAAAGGCAAG
    TTGGAAGACC GGAAGCCCCT GATGGTCTTG TTTGGGGATG TTGCCATGCA TTATATACTC
    TCTGCTGCAC AGACTGCTGA TGGAGGAGGC TTGGTAGAAA AACATTATGT CTTCCTGAAG
    AGACTTTGTC AGGTGTTGTG TGCTCTGGGC AATCAGCTGT GTGCATTACT GGGTGTGGAT
    TCTGATGTAG AAACACCAGC AAACTTTGGA AAATACCTGG AATCTTTTCT TGCTTTCACA
    ACCCATCCAA GTCAGTTTCT ACGCTCTTCA ACTCAGATGA CTTGGGGGGC CCTTTTCCGG
    CATGAGATCC TATCCCGTGA CCCTTTGCTA TTAGCAATAA TACCAAAATA TCTTCGTGCT
    TCTATGACTA ACTTGGTCAA GATGGGCTTT CCTTCTAAAA CAGACAGCCC TAGCTGTGAA
    TACTCTCGAT TTGATTTTGA TAGTGATGAG GACTTCAATG CTTTCTTCAA CTCCTCCCGG
    GCCCAACAAG GAGAGGTAAT GAGGTTAGCA TGTCGTTTGG ATCCTAAGAC TAGCTTCCAG
    ATGGCTGGGG AGTGGCTAAA GTATCAGCTG TCAACTTCTG TTGATACTGG ATCCATGAAC
    TCTGGAACTG GAGAAGGTGC CCTCTGCTCC ATCTTCTCAT CTTCATTCGT GCAGTGGGAA
    GCCATGACTT TTTTTTTGGA AAGTGTGGTC AACCAGATGT TTCGGACACT AGATAAAGAA
    GCAGTTCCTG TTAATGATGG AATAGAGCTG TTGCAGATGG TCCTGAACTT TGACACCAAG
    GATCCTCTCA TCCTGTCCTG TGTCCTCACT AATGTCTCAG CACTCTTTCC ATTTGTCACC
    TACAGACCAG AGTTCCTGCC CCAAGTCTTC TCTAAGCTGT TTTCATCTGT CACTTTTGAA
    ACTGTTGAAG AAAGTAAGGC CCCCAGAACC CGGGCGGTGA GGAATGTGAG GAGACATGCT
    TGTTCCTCCA TCATCAAGAC ATGTCGTGAC TACCCCCAGC TCGTACTGCC CAATTTTGAC
    ATGCTTTATA ACCATGTGAA GCAACTCCTC TCCAATGAGT TACTCTTGAC ACAAATGGAG
    AAGTGTGCCC TCATGGAAGC CCTGGTTCTC ATTAGCAACC AATTCAAGAG CTACGAGCGT
    CAGAAGGTGT TCCTAGAGGA GCTGATGGCA CCAGTGGCCA GCATCTGGCT TTCTGAAGAC
    ATGCACAGAG TGCTGTCAGA TGTTGATGCT TTTATTGCCT ATGTGGGCGC TGATCGGAAG
    AGCTGTGACC CAGGCCCGGA GGATCCCTGT GGTCTGAACC GCGCACGAAT GAGCTTTTGT
    GTATATAGCA TTCTGGGTGT TGTGAAACGA ACTTGCTGGC CCACTGACCT AGAAGAGGCC
    AAAGCTGGGG GATTTGTGGT GGGTTATACG CCCAGTGGAA ATCCAATCTT CCGTAACCCC
    TGCACGGAAC AGATTCTGAA ACTTCTTGAC AATTTGCTTG CCCTTATAAG AACTCACAAT
    ACTTTATATG CACCAGAAAT GCTGGCCAAG ATGTCAGAGC CTTTCACAAA GGCTCTGGAT
    ATGCTTGAAG CGGAGAAATC TGCGATTTTA GGCTTACCTC AGCCCCTCTT GGAACTGAAC
    GACTCTCCTG TCTACAAAAC GGTCTTGGAA AGAATGCAGC GTTTCTTCTG CACCCTCTAT
    GAAAACTGTT TCCACATCCT CGGGAAGGCG GGTCCTTCCA TGCAGCAGGA TTTCTACAGC
    GTGGAGCACC TTGCTGCGCA GCTCCTCAGC TCGGCCTTCG TCAACCTGAA CAACATCCCC
    GACTACCGAC TCAGACCCAT GCTTCGGGTC TTTGTGAAGC CTCTGGTGCT CTTCTGTCCC
    CCGGAGCACT ACGGAGCCCT GGTGTCTCCA GTCCTTGGAC CTCTTTTCAC CTACCTCCAC
    ATGAGGCTTT CCCAGAAATG GCAAGTCATC AACCAGCGGA GCCTGCTGTG TGGGGAAGAT
    GACACCGCAG ATGACAGTCC AGAGTCTCAA GAGATGTTAG AGGAACAGCT GGTGAGGATG
    TTAACCCGAG AAGTCATGGA CCTAATCACG GTGTGCTGTG TTTCAAAGAA AAGTGCTGAC
    CACGGTACTG CTCCCCCTGC AGATGGAGAC GATGAAGAGA TGATGGCCAC AGAGGTGGCC
    CCCTCCACCA TGACAGAGCT TACAGACCTG GGCAGATGTC TGATGAATCA TGAGGACGTT
    TGTACGGCGC TATTAATTAC AGCCTTCAAT TCCCTTGCCT GGAAGGATAC CCTGTCCTGC
    CAGAGGACGA CCACCCAGCT CTGCTGGCCT CTGCTCAAAC AAGTGCTGTC AGGGACACTG
    CTTGCAGATG CCGTCACGTG GCTTTTCACC AGCGTGCTGA AGGGCTTACA GACACACGGG
    CAGCACGACG GCTGCATGGC TTCCCTGGTG CACCTGGCCT TCCAAATCTA CGAGGCGCTG
    CGTCCCAGGT ACCTGGAGAT AAGAGCTGTG ATGGAGCAGA TCCCGGACAT ACAGAAGGAC
    TCTCTGGACC AGTTCGACTG CAAGCTGTTG AACCCCTCTC TGCAGAAAGT GGCTGACAAG
    CGCCGCAAGG ACCAGTTCAA ACGCCTCATT GCCGGCTGCA TCGGGAAACC CTTGGGAGAG
    CAGTTCCGAA AAGAAGTTCA CATTAAGAAT CTTCCCTCAC TTTTCAAAAA AACAAAGCCA
    ATGCTGGAGA CGGAGGTGCT GGACAGCGAG GAGGGTGGCC TGGCCACCAT CTTTGAACCC
    TGA

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

    RefSeq XP_011217037.1
    CDS181..3783
    Translation

    Target ORF information:

    RefSeq Version XM_011218735.2
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca exportin 5 (XPO5), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011218735.2

    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
    3541
    3601
    ATGGCGATGG ATCAAGTGAA CGCGTTGTGT GAGCAGCTGG TGAAAGCGGT GACGGTCATG 
    ATGGACCCCA GCTCCACCCA GCGCTACCGG CTGGAAGCCC TCAAGTTTTG TGAAGAGTTT
    AAAGAAAAAT GCCCTATCTG TGTCCCCTGT GGCTTGAGGT TGGCTGAGAA GACGCAAATT
    GCCATTGTCA GACATTTTGG CCTTCAGATC CTGGAACACG TTGTCAAGTT TCGGTGGAAC
    AGCATGTCTC GATTGGAGAA GGTCTATCTG AAGAACAGTG TCATGGAGCT GATTGCAAAT
    GGAACACTGG ATATTTTGGA AGAGGAGAAC CATATTAAAG ATGTTTTGTC TCGAATTGTA
    GTAGAAATGA TCAAGCGGGA GTGGCCACAG CACTGGCCTG ATATGCTAAT AGAACTGGAT
    ACCCTTTCCA AACAAGGGGA AACACAGACA GAATTAGTGA TGTTTATCCT TTTACGACTG
    GCAGAGGATG TAGTGACCTT TCAGACACTA CCCCCTCAAA GAAGAAGGGA TATCCAGCAA
    ACATTAACCC AGAACATGGA AAAGATCTTC AGTTTTCTAC TTAACACGCT TCAAGAAAAT
    GTAAACAAGT ACCGACAAGC GAAGACAGAT AATTCTCAGG AGTCAAAGGC CCAAGCAAAC
    TGTCGAGTCG GAGTCGCGGC ACTGAATACT CTAGCAGGCT ACATTGACTG GGTGTCCATG
    AATCATATCA CTGCTGAAAA CTGTAAGCTC TTAGAGATGC TCTGCCTGCT TCTGAATGAA
    CAGGAACTTC AGTTGGGAGC TGCTGAATGT CTTCTCATTG CAGTCAGCAG AAAAGGCAAG
    TTGGAAGACC GGAAGCCCCT GATGGTCTTG TTTGGGGATG TTGCCATGCA TTATATACTC
    TCTGCTGCAC AGACTGCTGA TGGAGGAGGC TTGGTAGAAA AACATTATGT CTTCCTGAAG
    AGACTTTGTC AGGTGTTGTG TGCTCTGGGC AATCAGCTGT GTGCATTACT GGGTGTGGAT
    TCTGATGTAG AAACACCAGC AAACTTTGGA AAATACCTGG AATCTTTTCT TGCTTTCACA
    ACCCATCCAA GTCAGTTTCT ACGCTCTTCA ACTCAGATGA CTTGGGGGGC CCTTTTCCGG
    CATGAGATCC TATCCCGTGA CCCTTTGCTA TTAGCAATAA TACCAAAATA TCTTCGTGCT
    TCTATGACTA ACTTGGTCAA GATGGGCTTT CCTTCTAAAA CAGACAGCCC TAGCTGTGAA
    TACTCTCGAT TTGATTTTGA TAGTGATGAG GACTTCAATG CTTTCTTCAA CTCCTCCCGG
    GCCCAACAAG GAGAGGTAAT GAGGTTAGCA TGTCGTTTGG ATCCTAAGAC TAGCTTCCAG
    ATGGCTGGGG AGTGGCTAAA GTATCAGCTG TCAACTTCTG TTGATACTGG ATCCATGAAC
    TCTGGAACTG GAGAAGGTGC CCTCTGCTCC ATCTTCTCAT CTTCATTCGT GCAGTGGGAA
    GCCATGACTT TTTTTTTGGA AAGTGTGGTC AACCAGATGT TTCGGACACT AGATAAAGAA
    GCAGTTCCTG TTAATGATGG AATAGAGCTG TTGCAGATGG TCCTGAACTT TGACACCAAG
    GATCCTCTCA TCCTGTCCTG TGTCCTCACT AATGTCTCAG CACTCTTTCC ATTTGTCACC
    TACAGACCAG AGTTCCTGCC CCAAGTCTTC TCTAAGCTGT TTTCATCTGT CACTTTTGAA
    ACTGTTGAAG AAAGTAAGGC CCCCAGAACC CGGGCGGTGA GGAATGTGAG GAGACATGCT
    TGTTCCTCCA TCATCAAGAC ATGTCGTGAC TACCCCCAGC TCGTACTGCC CAATTTTGAC
    ATGCTTTATA ACCATGTGAA GCAACTCCTC TCCAATGAGT TACTCTTGAC ACAAATGGAG
    AAGTGTGCCC TCATGGAAGC CCTGGTTCTC ATTAGCAACC AATTCAAGAG CTACGAGCGT
    CAGAAGGTGT TCCTAGAGGA GCTGATGGCA CCAGTGGCCA GCATCTGGCT TTCTGAAGAC
    ATGCACAGAG TGCTGTCAGA TGTTGATGCT TTTATTGCCT ATGTGGGCGC TGATCGGAAG
    AGCTGTGACC CAGGCCCGGA GGATCCCTGT GGTCTGAACC GCGCACGAAT GAGCTTTTGT
    GTATATAGCA TTCTGGGTGT TGTGAAACGA ACTTGCTGGC CCACTGACCT AGAAGAGGCC
    AAAGCTGGGG GATTTGTGGT GGGTTATACG CCCAGTGGAA ATCCAATCTT CCGTAACCCC
    TGCACGGAAC AGATTCTGAA ACTTCTTGAC AATTTGCTTG CCCTTATAAG AACTCACAAT
    ACTTTATATG CACCAGAAAT GCTGGCCAAG ATGTCAGAGC CTTTCACAAA GGCTCTGGAT
    ATGCTTGAAG CGGAGAAATC TGCGATTTTA GGCTTACCTC AGCCCCTCTT GGAACTGAAC
    GACTCTCCTG TCTACAAAAC GGTCTTGGAA AGAATGCAGC GTTTCTTCTG CACCCTCTAT
    GAAAACTGTT TCCACATCCT CGGGAAGGCG GGTCCTTCCA TGCAGCAGGA TTTCTACAGC
    GTGGAGCACC TTGCTGCGCA GCTCCTCAGC TCGGCCTTCG TCAACCTGAA CAACATCCCC
    GACTACCGAC TCAGACCCAT GCTTCGGGTC TTTGTGAAGC CTCTGGTGCT CTTCTGTCCC
    CCGGAGCACT ACGGAGCCCT GGTGTCTCCA GTCCTTGGAC CTCTTTTCAC CTACCTCCAC
    ATGAGGCTTT CCCAGAAATG GCAAGTCATC AACCAGCGGA GCCTGCTGTG TGGGGAAGAT
    GACACCGCAG ATGACAGTCC AGAGTCTCAA GAGATGTTAG AGGAACAGCT GGTGAGGATG
    TTAACCCGAG AAGTCATGGA CCTAATCACG GTGTGCTGTG TTTCAAAGAA AAGTGCTGAC
    CACGGTACTG CTCCCCCTGC AGATGGAGAC GATGAAGAGA TGATGGCCAC AGAGGTGGCC
    CCCTCCACCA TGACAGAGCT TACAGACCTG GGCAGATGTC TGATGAATCA TGAGGACGTT
    TGTACGGCGC TATTAATTAC AGCCTTCAAT TCCCTTGCCT GGAAGGATAC CCTGTCCTGC
    CAGAGGACGA CCACCCAGCT CTGCTGGCCT CTGCTCAAAC AAGTGCTGTC AGGGACACTG
    CTTGCAGATG CCGTCACGTG GCTTTTCACC AGCGTGCTGA AGGGCTTACA GACACACGGG
    CAGCACGACG GCTGCATGGC TTCCCTGGTG CACCTGGCCT TCCAAATCTA CGAGGCGCTG
    CGTCCCAGGT ACCTGGAGAT AAGAGCTGTG ATGGAGCAGA TCCCGGACAT ACAGAAGGAC
    TCTCTGGACC AGTTCGACTG CAAGCTGTTG AACCCCTCTC TGCAGAAAGT GGCTGACAAG
    CGCCGCAAGG ACCAGTTCAA ACGCCTCATT GCCGGCTGCA TCGGGAAACC CTTGGGAGAG
    CAGTTCCGAA AAGAAGTTCA CATTAAGAAT CTTCCCTCAC TTTTCAAAAA AACAAAGCCA
    ATGCTGGAGA CGGAGGTGCT GGACAGCGAG GAGGGTGGCC TGGCCACCAT CTTTGAACCC
    TGA

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

    CloneID OAc25238
    Clone ID Related Accession (Same CDS sequence) XM_011218736.2
    Accession Version XM_011218736.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3576bp)
    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 exportin-5 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003217341.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 28, 2016 this sequence version replaced XM_011218736.1. ##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
    3541
    ATGGCGATGG ATCAAGTGAA CGCGTTGTGT GAGCAGCTGG TGAAAGCGGT GACGGTCATG 
    ATGGACCCCA GCTCCACCCA GCGCTACCGG CTGGAAGCCC TCAAGTTTTG TGAAGAGTTT
    AAAGAAAAAT GCCCTATCTG TGTCCCCTGT GGCTTGAGGT TGGCTGAGAA GACGCAAATT
    GCCATTGTCA GACATTTTGG CCTTCAGATC CTGGAACACG TTGTCAAGTT TCGGTGGAAC
    AGCATGTCTC GATTGGAGAA GGTCTATCTG AAGAACAGTG TCATGGAGCT GATTGCAAAT
    GGAACACTGG ATATTTTGGA AGAGGAGAAC CATATTAAAG ATGTTTTGTC TCGAATTGTA
    GTAGAAATGA TCAAGCGGGA GTGGCCACAG CACTGGCCTG ATATGCTAAT AGAACTGGAT
    ACCCTTTCCA AACAAGGGGA AACACAGACA GAATTAGTGA TGTTTATCCT TTTACGACTG
    GCAGAGGATG TAGTGACCTT TCAGACACTA CCCCCTCAAA GAAGAAGGGA TATCCAGCAA
    ACATTAACCC AGAACATGGA AAAGATCTTC AGTTTTCTAC TTAACACGCT TCAAGAAAAT
    GTAAACAAGT ACCGACAAGC GGCCCAAGCA AACTGTCGAG TCGGAGTCGC GGCACTGAAT
    ACTCTAGCAG GCTACATTGA CTGGGTGTCC ATGAATCATA TCACTGCTGA AAACTGTAAG
    CTCTTAGAGA TGCTCTGCCT GCTTCTGAAT GAACAGGAAC TTCAGTTGGG AGCTGCTGAA
    TGTCTTCTCA TTGCAGTCAG CAGAAAAGGC AAGTTGGAAG ACCGGAAGCC CCTGATGGTC
    TTGTTTGGGG ATGTTGCCAT GCATTATATA CTCTCTGCTG CACAGACTGC TGATGGAGGA
    GGCTTGGTAG AAAAACATTA TGTCTTCCTG AAGAGACTTT GTCAGGTGTT GTGTGCTCTG
    GGCAATCAGC TGTGTGCATT ACTGGGTGTG GATTCTGATG TAGAAACACC AGCAAACTTT
    GGAAAATACC TGGAATCTTT TCTTGCTTTC ACAACCCATC CAAGTCAGTT TCTACGCTCT
    TCAACTCAGA TGACTTGGGG GGCCCTTTTC CGGCATGAGA TCCTATCCCG TGACCCTTTG
    CTATTAGCAA TAATACCAAA ATATCTTCGT GCTTCTATGA CTAACTTGGT CAAGATGGGC
    TTTCCTTCTA AAACAGACAG CCCTAGCTGT GAATACTCTC GATTTGATTT TGATAGTGAT
    GAGGACTTCA ATGCTTTCTT CAACTCCTCC CGGGCCCAAC AAGGAGAGGT AATGAGGTTA
    GCATGTCGTT TGGATCCTAA GACTAGCTTC CAGATGGCTG GGGAGTGGCT AAAGTATCAG
    CTGTCAACTT CTGTTGATAC TGGATCCATG AACTCTGGAA CTGGAGAAGG TGCCCTCTGC
    TCCATCTTCT CATCTTCATT CGTGCAGTGG GAAGCCATGA CTTTTTTTTT GGAAAGTGTG
    GTCAACCAGA TGTTTCGGAC ACTAGATAAA GAAGCAGTTC CTGTTAATGA TGGAATAGAG
    CTGTTGCAGA TGGTCCTGAA CTTTGACACC AAGGATCCTC TCATCCTGTC CTGTGTCCTC
    ACTAATGTCT CAGCACTCTT TCCATTTGTC ACCTACAGAC CAGAGTTCCT GCCCCAAGTC
    TTCTCTAAGC TGTTTTCATC TGTCACTTTT GAAACTGTTG AAGAAAGTAA GGCCCCCAGA
    ACCCGGGCGG TGAGGAATGT GAGGAGACAT GCTTGTTCCT CCATCATCAA GACATGTCGT
    GACTACCCCC AGCTCGTACT GCCCAATTTT GACATGCTTT ATAACCATGT GAAGCAACTC
    CTCTCCAATG AGTTACTCTT GACACAAATG GAGAAGTGTG CCCTCATGGA AGCCCTGGTT
    CTCATTAGCA ACCAATTCAA GAGCTACGAG CGTCAGAAGG TGTTCCTAGA GGAGCTGATG
    GCACCAGTGG CCAGCATCTG GCTTTCTGAA GACATGCACA GAGTGCTGTC AGATGTTGAT
    GCTTTTATTG CCTATGTGGG CGCTGATCGG AAGAGCTGTG ACCCAGGCCC GGAGGATCCC
    TGTGGTCTGA ACCGCGCACG AATGAGCTTT TGTGTATATA GCATTCTGGG TGTTGTGAAA
    CGAACTTGCT GGCCCACTGA CCTAGAAGAG GCCAAAGCTG GGGGATTTGT GGTGGGTTAT
    ACGCCCAGTG GAAATCCAAT CTTCCGTAAC CCCTGCACGG AACAGATTCT GAAACTTCTT
    GACAATTTGC TTGCCCTTAT AAGAACTCAC AATACTTTAT ATGCACCAGA AATGCTGGCC
    AAGATGTCAG AGCCTTTCAC AAAGGCTCTG GATATGCTTG AAGCGGAGAA ATCTGCGATT
    TTAGGCTTAC CTCAGCCCCT CTTGGAACTG AACGACTCTC CTGTCTACAA AACGGTCTTG
    GAAAGAATGC AGCGTTTCTT CTGCACCCTC TATGAAAACT GTTTCCACAT CCTCGGGAAG
    GCGGGTCCTT CCATGCAGCA GGATTTCTAC AGCGTGGAGC ACCTTGCTGC GCAGCTCCTC
    AGCTCGGCCT TCGTCAACCT GAACAACATC CCCGACTACC GACTCAGACC CATGCTTCGG
    GTCTTTGTGA AGCCTCTGGT GCTCTTCTGT CCCCCGGAGC ACTACGGAGC CCTGGTGTCT
    CCAGTCCTTG GACCTCTTTT CACCTACCTC CACATGAGGC TTTCCCAGAA ATGGCAAGTC
    ATCAACCAGC GGAGCCTGCT GTGTGGGGAA GATGACACCG CAGATGACAG TCCAGAGTCT
    CAAGAGATGT TAGAGGAACA GCTGGTGAGG ATGTTAACCC GAGAAGTCAT GGACCTAATC
    ACGGTGTGCT GTGTTTCAAA GAAAAGTGCT GACCACGGTA CTGCTCCCCC TGCAGATGGA
    GACGATGAAG AGATGATGGC CACAGAGGTG GCCCCCTCCA CCATGACAGA GCTTACAGAC
    CTGGGCAGAT GTCTGATGAA TCATGAGGAC GTTTGTACGG CGCTATTAAT TACAGCCTTC
    AATTCCCTTG CCTGGAAGGA TACCCTGTCC TGCCAGAGGA CGACCACCCA GCTCTGCTGG
    CCTCTGCTCA AACAAGTGCT GTCAGGGACA CTGCTTGCAG ATGCCGTCAC GTGGCTTTTC
    ACCAGCGTGC TGAAGGGCTT ACAGACACAC GGGCAGCACG ACGGCTGCAT GGCTTCCCTG
    GTGCACCTGG CCTTCCAAAT CTACGAGGCG CTGCGTCCCA GGTACCTGGA GATAAGAGCT
    GTGATGGAGC AGATCCCGGA CATACAGAAG GACTCTCTGG ACCAGTTCGA CTGCAAGCTG
    TTGAACCCCT CTCTGCAGAA AGTGGCTGAC AAGCGCCGCA AGGACCAGTT CAAACGCCTC
    ATTGCCGGCT GCATCGGGAA ACCCTTGGGA GAGCAGTTCC GAAAAGAAGT TCACATTAAG
    AATCTTCCCT CACTTTTCAA AAAAACAAAG CCAATGCTGG AGACGGAGGT GCTGGACAGC
    GAGGAGGGTG GCCTGGCCAC CATCTTTGAA CCCTGA

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

    RefSeq XP_011217038.1
    CDS181..3756
    Translation

    Target ORF information:

    RefSeq Version XM_011218736.2
    Organism Ailuropoda melanoleuca(giant panda)
    Definition Ailuropoda melanoleuca exportin 5 (XPO5), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011218736.2

    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
    3541
    ATGGCGATGG ATCAAGTGAA CGCGTTGTGT GAGCAGCTGG TGAAAGCGGT GACGGTCATG 
    ATGGACCCCA GCTCCACCCA GCGCTACCGG CTGGAAGCCC TCAAGTTTTG TGAAGAGTTT
    AAAGAAAAAT GCCCTATCTG TGTCCCCTGT GGCTTGAGGT TGGCTGAGAA GACGCAAATT
    GCCATTGTCA GACATTTTGG CCTTCAGATC CTGGAACACG TTGTCAAGTT TCGGTGGAAC
    AGCATGTCTC GATTGGAGAA GGTCTATCTG AAGAACAGTG TCATGGAGCT GATTGCAAAT
    GGAACACTGG ATATTTTGGA AGAGGAGAAC CATATTAAAG ATGTTTTGTC TCGAATTGTA
    GTAGAAATGA TCAAGCGGGA GTGGCCACAG CACTGGCCTG ATATGCTAAT AGAACTGGAT
    ACCCTTTCCA AACAAGGGGA AACACAGACA GAATTAGTGA TGTTTATCCT TTTACGACTG
    GCAGAGGATG TAGTGACCTT TCAGACACTA CCCCCTCAAA GAAGAAGGGA TATCCAGCAA
    ACATTAACCC AGAACATGGA AAAGATCTTC AGTTTTCTAC TTAACACGCT TCAAGAAAAT
    GTAAACAAGT ACCGACAAGC GGCCCAAGCA AACTGTCGAG TCGGAGTCGC GGCACTGAAT
    ACTCTAGCAG GCTACATTGA CTGGGTGTCC ATGAATCATA TCACTGCTGA AAACTGTAAG
    CTCTTAGAGA TGCTCTGCCT GCTTCTGAAT GAACAGGAAC TTCAGTTGGG AGCTGCTGAA
    TGTCTTCTCA TTGCAGTCAG CAGAAAAGGC AAGTTGGAAG ACCGGAAGCC CCTGATGGTC
    TTGTTTGGGG ATGTTGCCAT GCATTATATA CTCTCTGCTG CACAGACTGC TGATGGAGGA
    GGCTTGGTAG AAAAACATTA TGTCTTCCTG AAGAGACTTT GTCAGGTGTT GTGTGCTCTG
    GGCAATCAGC TGTGTGCATT ACTGGGTGTG GATTCTGATG TAGAAACACC AGCAAACTTT
    GGAAAATACC TGGAATCTTT TCTTGCTTTC ACAACCCATC CAAGTCAGTT TCTACGCTCT
    TCAACTCAGA TGACTTGGGG GGCCCTTTTC CGGCATGAGA TCCTATCCCG TGACCCTTTG
    CTATTAGCAA TAATACCAAA ATATCTTCGT GCTTCTATGA CTAACTTGGT CAAGATGGGC
    TTTCCTTCTA AAACAGACAG CCCTAGCTGT GAATACTCTC GATTTGATTT TGATAGTGAT
    GAGGACTTCA ATGCTTTCTT CAACTCCTCC CGGGCCCAAC AAGGAGAGGT AATGAGGTTA
    GCATGTCGTT TGGATCCTAA GACTAGCTTC CAGATGGCTG GGGAGTGGCT AAAGTATCAG
    CTGTCAACTT CTGTTGATAC TGGATCCATG AACTCTGGAA CTGGAGAAGG TGCCCTCTGC
    TCCATCTTCT CATCTTCATT CGTGCAGTGG GAAGCCATGA CTTTTTTTTT GGAAAGTGTG
    GTCAACCAGA TGTTTCGGAC ACTAGATAAA GAAGCAGTTC CTGTTAATGA TGGAATAGAG
    CTGTTGCAGA TGGTCCTGAA CTTTGACACC AAGGATCCTC TCATCCTGTC CTGTGTCCTC
    ACTAATGTCT CAGCACTCTT TCCATTTGTC ACCTACAGAC CAGAGTTCCT GCCCCAAGTC
    TTCTCTAAGC TGTTTTCATC TGTCACTTTT GAAACTGTTG AAGAAAGTAA GGCCCCCAGA
    ACCCGGGCGG TGAGGAATGT GAGGAGACAT GCTTGTTCCT CCATCATCAA GACATGTCGT
    GACTACCCCC AGCTCGTACT GCCCAATTTT GACATGCTTT ATAACCATGT GAAGCAACTC
    CTCTCCAATG AGTTACTCTT GACACAAATG GAGAAGTGTG CCCTCATGGA AGCCCTGGTT
    CTCATTAGCA ACCAATTCAA GAGCTACGAG CGTCAGAAGG TGTTCCTAGA GGAGCTGATG
    GCACCAGTGG CCAGCATCTG GCTTTCTGAA GACATGCACA GAGTGCTGTC AGATGTTGAT
    GCTTTTATTG CCTATGTGGG CGCTGATCGG AAGAGCTGTG ACCCAGGCCC GGAGGATCCC
    TGTGGTCTGA ACCGCGCACG AATGAGCTTT TGTGTATATA GCATTCTGGG TGTTGTGAAA
    CGAACTTGCT GGCCCACTGA CCTAGAAGAG GCCAAAGCTG GGGGATTTGT GGTGGGTTAT
    ACGCCCAGTG GAAATCCAAT CTTCCGTAAC CCCTGCACGG AACAGATTCT GAAACTTCTT
    GACAATTTGC TTGCCCTTAT AAGAACTCAC AATACTTTAT ATGCACCAGA AATGCTGGCC
    AAGATGTCAG AGCCTTTCAC AAAGGCTCTG GATATGCTTG AAGCGGAGAA ATCTGCGATT
    TTAGGCTTAC CTCAGCCCCT CTTGGAACTG AACGACTCTC CTGTCTACAA AACGGTCTTG
    GAAAGAATGC AGCGTTTCTT CTGCACCCTC TATGAAAACT GTTTCCACAT CCTCGGGAAG
    GCGGGTCCTT CCATGCAGCA GGATTTCTAC AGCGTGGAGC ACCTTGCTGC GCAGCTCCTC
    AGCTCGGCCT TCGTCAACCT GAACAACATC CCCGACTACC GACTCAGACC CATGCTTCGG
    GTCTTTGTGA AGCCTCTGGT GCTCTTCTGT CCCCCGGAGC ACTACGGAGC CCTGGTGTCT
    CCAGTCCTTG GACCTCTTTT CACCTACCTC CACATGAGGC TTTCCCAGAA ATGGCAAGTC
    ATCAACCAGC GGAGCCTGCT GTGTGGGGAA GATGACACCG CAGATGACAG TCCAGAGTCT
    CAAGAGATGT TAGAGGAACA GCTGGTGAGG ATGTTAACCC GAGAAGTCAT GGACCTAATC
    ACGGTGTGCT GTGTTTCAAA GAAAAGTGCT GACCACGGTA CTGCTCCCCC TGCAGATGGA
    GACGATGAAG AGATGATGGC CACAGAGGTG GCCCCCTCCA CCATGACAGA GCTTACAGAC
    CTGGGCAGAT GTCTGATGAA TCATGAGGAC GTTTGTACGG CGCTATTAAT TACAGCCTTC
    AATTCCCTTG CCTGGAAGGA TACCCTGTCC TGCCAGAGGA CGACCACCCA GCTCTGCTGG
    CCTCTGCTCA AACAAGTGCT GTCAGGGACA CTGCTTGCAG ATGCCGTCAC GTGGCTTTTC
    ACCAGCGTGC TGAAGGGCTT ACAGACACAC GGGCAGCACG ACGGCTGCAT GGCTTCCCTG
    GTGCACCTGG CCTTCCAAAT CTACGAGGCG CTGCGTCCCA GGTACCTGGA GATAAGAGCT
    GTGATGGAGC AGATCCCGGA CATACAGAAG GACTCTCTGG ACCAGTTCGA CTGCAAGCTG
    TTGAACCCCT CTCTGCAGAA AGTGGCTGAC AAGCGCCGCA AGGACCAGTT CAAACGCCTC
    ATTGCCGGCT GCATCGGGAA ACCCTTGGGA GAGCAGTTCC GAAAAGAAGT TCACATTAAG
    AATCTTCCCT CACTTTTCAA AAAAACAAAG CCAATGCTGG AGACGGAGGT GCTGGACAGC
    GAGGAGGGTG GCCTGGCCAC CATCTTTGAA CCCTGA

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