NUP153 cDNA ORF clone, Pseudopodoces humilis(Tibetan ground-tit)

The following NUP153 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the NUP153 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
OPs16689 XM_014254532.1
Latest version!
Pseudopodoces humilis nucleoporin 153kDa (NUP153), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
OPs16690 XM_005525276.2
Latest version!
Pseudopodoces humilis nucleoporin 153kDa (NUP153), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00

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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 OPs16689
    Clone ID Related Accession (Same CDS sequence) XM_014254532.1
    Accession Version XM_014254532.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4362bp)
    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 2015-09-20
    Organism Pseudopodoces humilis(Tibetan ground-tit)
    Product nuclear pore complex protein Nup153 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_005087577.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Pseudopodoces humilis Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    ATGGCCTCGG GTGGCAGCGG CGGCGGCGGC GGCAAGATCC GGACCCGACG GCACCACCTG 
    GGAGCCGCGA AGCCGCCCTA CGCGAGGGGC AAGCAGCAGC TGGGGCTCCT TAGCAGAGTG
    ACTGAATCAG TGAAAAACAT TGTACCAGGA TGGTTGCAGA AGTATTTCAA TAAAAGGGAA
    GATAAATGTG TAGATATGAA TGAATCTGCA AGCGAGGAAG AGAATCCAGT AAACTATCAC
    CATGATTATG CAAATGAAGA TGCCATGGTA ATTGATGGGA GAGTCACGCC TGAATCAGCA
    AGAATTAATT TAGAAGAGCC ATCCACGAGC AGGTCTGCGC TGAACTTCTC GGATGTGTTA
    ACAAGGCCCT CCCTTCACCG GAGCCATTTG AACTGCACCG TGTTGGATTC CACAGTCCCA
    CACTGTCAGC CCTCCACATC TTCCACACTT GGCATTGGCA GTCCTGGGCT GTCCCTCGTA
    AAGGAAATAA AAGATTCTAC CTCTCAGCAT GATGACGATA ACATCTCAAC AACCAGTGGC
    TTCTCCTCTA GAGCATCTGA TAAAGATATC ACAGTTTCAA AAAATACTTC AGCACCACTG
    CTCTGGTCCC CAGAGGCTGA AAGATCTCAT TCCCTCTCAC AACATCCTGC ATCTAGCTCT
    AAAAAACCTG CATTCAATTT ATCTGCTTTT GGATCTCCCT CTCCTTCACT TGGAAACACT
    TCTGTCTTTA AGACAAGACA GCTTGGGGAT TCTCCATTTT ACCCTGGAAA GACCTCTTAC
    GGTGGTGCAG CTGCAGCAGC AAGGCAGACA AAAGTACAGA TTTCTGCTTA CCAGCCACCG
    GTAAAAAGAC AAATGAAAGC TAAACAAGCA AATGTGCAAT CCTATGGTGT GACAAGTTCC
    ACTGCGCGGC GCATCTTGCA GACATTGGAG AAGATGTCAA GCCCTTTGGC AGATGCTAAA
    AGGATTCCAT CTTCTGTTTC TAGTCCACTG TCTTCTCCTG TGGACAGGAG TGTGCTGAAT
    GTGACTGGCT TCCAATCCAG ACAAAACCAG ATGGATTCGC AACATCCACC TGTGCAGAAA
    CTTGTGACAC CAAAGCCAAT CTCCCTGACA GGGAGTCGGA TTACGTATTT TAAACCATCT
    CTGAAATCAG CTACTAATTC CAGAAAAATT CACCAAAGGG TAGATACAGA CCATCAAGAC
    ATAATAGACG AGAGTTTTCC TGCAGAAAAG CCTGTAAAAT CATCTGAAAG CAATTTGAGC
    TACCCCAAAC TTGATACTCC CGCATCCAAC GGTCTGTCTT CAGGAGGAAG GATGGATAGT
    GCCTGCGGCA AGATGAGAAG GGAAAGGGAG CGATACTGTG CATCAAGACC TGGACAAAAA
    CAACAACTGG AGATGGAGCA GGAAGAGCTA CCTGAGGTAC CCCTGCCCAT CAGTACTGCA
    TCGCTGCCGA CGTTCAGCTT CAGTTTCCCC GCCAGTAGTG CTGTGTCCTC ATCACCCAGC
    ATTGTTTCAA AAGCAGTGAT GAACAAGGTA CAACCAGCAA GTAATGTTGG CAGTCCTACA
    TTTGTATTTT CATCTCCAAT TGTGAAATCT ACCGAGGTGG AAGTGCTACC TCCATTATCT
    CAGATTAAGT TTACATTTAG TGTTCCTGTC GTGAAGTCGT CAGAGCTTTC TGGATCCACT
    GATACACCAG TGACATCCAT CCTTAGTCCA GGTAGTGCCA CTGTAAACAG CACCAGCAAT
    AAGAAGGAAG AGGAAGAAGA ATATGATGGG TTCTGCAAAC CTGCTAAATT CTTAAAGCAA
    GGAAGTGTGT TAGACATTCT AAAAAGCCCC GGCTTTATGT CTGGGAAATC ACCCTCCTGT
    TCATCTGCAC AGCCTGTTAC GAGCACAGTG GTCTATACAA GGCCTGCAAT AAGTAGTTTT
    TCTGCAGGTA AAGACACCTC TAAACAAACA TCCTCGTTCT GGCAGTCTGA CACACATGAC
    CCGTGTCTGC AGAACAAAAC CACAGATGGC AACTGTGTAA CATGTGAAGC TGCTAAAGTG
    TCCACTGTTG AGAGTACGAA GCAGACGGTC AGTGTGAGTC CGTGTGTCTC CTCCAAGACA
    GCAGTCCCTA CAGCAGGGAC ACTGGGCTTT GAAGACAAAT TTAAACCGGC ACCCAACACT
    TGGGATTGTG ATACCTGTCT GGTCCAGAAC AAACCTGAAG CTACAAAATG TATAGCATGT
    GATACACCAA AGCCTGGAAC AGGAGTGATG CCTGCTCTGA CAATGCCGAT GGTCACGGAC
    AACTCGGTGA CAGTAACATC CACCACCAGC AGCACGGGCA CAACAGTCAC TCTGGGGTTT
    GGAGACAAAT TTAAACAGCC AAAAGGCTCT TGGAACTGTT CAATGTGCCT TGTACAAAAT
    AAGGCAGAAG ACAGCAAATG TGTAGCTTGT CAGTCTGAGA AACCAGGGAG CTCAGTGCCT
    GTGAGCAGTA GCAGTGTTTC TGCATTTTCT GCTTCTTCTG GAGGTTTTCT GGATTTAGAC
    AAATTCAAGA AGCCTGAAGG AAGTTGGGAA TGTGAGGTCT GCTTGGTCCA AAACAAAGCA
    GAAGCCACAA AATGCATAGC CTGTCAAAAT GCAAAGCCAG GCACCAAAGC AGAGCTCAAA
    GGTTTTGGTA CTGCTACTGT GTCTACAAAT GCTGCAGCGC CATCATTTAC ATTCGGTGTC
    CCCTCATCAT CCTCTGAATC TTCTCAAACA TTAGGTAGCA CAGGAAATTT TAAATTTGGA
    GAACAGAGTA GCTTTAAGTT CGGCATTGCA TCCGAATCTG CATCGTCCAG CACTGTGACT
    GGAGGATTTA AGTTTCCTAC TGCTTCAGGG AACTTCAAAT TTGGAGTTTC TTCCTCAGAC
    TCTAAATCAG AAGACAGCAA AAAAGAAAGT AAAAGTAACA GTTTTACTTT TGGACTTCCA
    TCTACAAGCA GTCAGGCTCC TTCAACATTT CAGTTTGGAA CAACGAGTCT GGGACAGCAG
    GAAAAGAAAG AGGAACCAGT TTTGGGAGGT TTTGGTTTTG CTACAAGTTC TACTTCTTCC
    ATAGCTACTA ATGAGACTAA AACTGGAGTC GGTGGCTTCA CTTTTGGAAC TATGGCAGAA
    AAGGATGCAG CATCACCTGC TTTGCCATTT AAGAAGTCAG ATGAGAAAAA GGATGAAACT
    GTTTCAACGA AGGGAGGCTT CTCTTTCAGC AGCGTGGAGT CTGCCCCTGC CTCGCAGTTT
    GTTTTGGGAA GGACAGAAGA GAAGCAGGAC TCTGTCACTT CTGCTGGTCC ATTAGCATTT
    GGAAAGAAAG CTGACAATGA AGAGTTAAAG GCACAGCCTA TCTTTTCATC TGGGACAGCT
    GAGCATACCA AAGAGGAGAG CACAGCAAAA CCTGTATTCA ATTTTAGTTT CGGTAAACCA
    TCGGAAAAGG AAAGTGATCA GTCAAAGGCA CCTTTTGCAT TCGGGGCGCC AACCAGTACT
    TGCGATCAAG GAGCATCCTT CAGCTTCTTG AGCTCCAGTT CCTCCAGCAC AGTGGTACCC
    ACCACTTCAG CCAACAGCAG TGGTGTGTTT GGCAGCACCC TCTCTTCCTC AAACCCTCAG
    CCAGTTCCCA CTCCCTTTGT GTTTGGACAA CCCAGCAACA CTGTGACCAG CTCTGTTTTT
    GGCAATCCAG CAGAATCTGC AACATCTCAG TCATTCGGCT TCTCTCAAGA AAACAAGCCA
    GCAACCACAT CTTCCAGCGC TGGCTCAACT CTGACTCCGT TTCTCTTTGC TTCAGGAGAG
    AGCAGTACCA ATGCAGCAAA TTCAGGATTT ACTTTTGGAG CCACAACTAC ATCAGGTTCA
    ACAGGGTCAT CGTCTTCGTT TCTGTTTGGC TCTGGGCCTC CAGCGCCTGC TGCTGGCCCA
    GCCTTTGGCG CCAGTCAGCC ACCAGCATTT GGCCCAAGCC CAGGCTCTGG CCAGCAAAGC
    GCTCCAAGCT TTGGATCGCT GTCGACAACG TTGTTTTCTC CTGGCTCTCA CCCTGCTCCT
    TCTGCCTTCG GCTCGGTGAC AAGCAGCACT CAGCCCTCTG TGTTCGGACA ACAGGCAGCC
    AATCAGCCAA CTTTTGGCTC TGGTACCCCC AGTGCTGGTT CTGTATTCCG GTTTGGAAGT
    AGTACTACTA ATTTCAGCTT TCCAAATAAC CCAGGAGTAT TCACTTTTGG TGCAAATCCT
    CCTGCACCAG CAGCTCCTGC ACCGCCTTCT GCCACTTCAG GATTTTCATT CAACCAGCCT
    CCAGCATTTA CAGTGGGGAC TAATGGGAAA AATGTTTTCT CTGCCTCTGG ATCTTCAGTT
    GCTGGTCGGA AGATAAAGAC TGCAGTTAGA CGTAGAAAGT AA

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

    RefSeq XP_014110007.1
    CDS22..4383
    Translation

    Target ORF information:

    RefSeq Version XM_014254532.1
    Organism Pseudopodoces humilis(Tibetan ground-tit)
    Definition Pseudopodoces humilis nucleoporin 153kDa (NUP153), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014254532.1

    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
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    ATGGCCTCGG GTGGCAGCGG CGGCGGCGGC GGCAAGATCC GGACCCGACG GCACCACCTG 
    GGAGCCGCGA AGCCGCCCTA CGCGAGGGGC AAGCAGCAGC TGGGGCTCCT TAGCAGAGTG
    ACTGAATCAG TGAAAAACAT TGTACCAGGA TGGTTGCAGA AGTATTTCAA TAAAAGGGAA
    GATAAATGTG TAGATATGAA TGAATCTGCA AGCGAGGAAG AGAATCCAGT AAACTATCAC
    CATGATTATG CAAATGAAGA TGCCATGGTA ATTGATGGGA GAGTCACGCC TGAATCAGCA
    AGAATTAATT TAGAAGAGCC ATCCACGAGC AGGTCTGCGC TGAACTTCTC GGATGTGTTA
    ACAAGGCCCT CCCTTCACCG GAGCCATTTG AACTGCACCG TGTTGGATTC CACAGTCCCA
    CACTGTCAGC CCTCCACATC TTCCACACTT GGCATTGGCA GTCCTGGGCT GTCCCTCGTA
    AAGGAAATAA AAGATTCTAC CTCTCAGCAT GATGACGATA ACATCTCAAC AACCAGTGGC
    TTCTCCTCTA GAGCATCTGA TAAAGATATC ACAGTTTCAA AAAATACTTC AGCACCACTG
    CTCTGGTCCC CAGAGGCTGA AAGATCTCAT TCCCTCTCAC AACATCCTGC ATCTAGCTCT
    AAAAAACCTG CATTCAATTT ATCTGCTTTT GGATCTCCCT CTCCTTCACT TGGAAACACT
    TCTGTCTTTA AGACAAGACA GCTTGGGGAT TCTCCATTTT ACCCTGGAAA GACCTCTTAC
    GGTGGTGCAG CTGCAGCAGC AAGGCAGACA AAAGTACAGA TTTCTGCTTA CCAGCCACCG
    GTAAAAAGAC AAATGAAAGC TAAACAAGCA AATGTGCAAT CCTATGGTGT GACAAGTTCC
    ACTGCGCGGC GCATCTTGCA GACATTGGAG AAGATGTCAA GCCCTTTGGC AGATGCTAAA
    AGGATTCCAT CTTCTGTTTC TAGTCCACTG TCTTCTCCTG TGGACAGGAG TGTGCTGAAT
    GTGACTGGCT TCCAATCCAG ACAAAACCAG ATGGATTCGC AACATCCACC TGTGCAGAAA
    CTTGTGACAC CAAAGCCAAT CTCCCTGACA GGGAGTCGGA TTACGTATTT TAAACCATCT
    CTGAAATCAG CTACTAATTC CAGAAAAATT CACCAAAGGG TAGATACAGA CCATCAAGAC
    ATAATAGACG AGAGTTTTCC TGCAGAAAAG CCTGTAAAAT CATCTGAAAG CAATTTGAGC
    TACCCCAAAC TTGATACTCC CGCATCCAAC GGTCTGTCTT CAGGAGGAAG GATGGATAGT
    GCCTGCGGCA AGATGAGAAG GGAAAGGGAG CGATACTGTG CATCAAGACC TGGACAAAAA
    CAACAACTGG AGATGGAGCA GGAAGAGCTA CCTGAGGTAC CCCTGCCCAT CAGTACTGCA
    TCGCTGCCGA CGTTCAGCTT CAGTTTCCCC GCCAGTAGTG CTGTGTCCTC ATCACCCAGC
    ATTGTTTCAA AAGCAGTGAT GAACAAGGTA CAACCAGCAA GTAATGTTGG CAGTCCTACA
    TTTGTATTTT CATCTCCAAT TGTGAAATCT ACCGAGGTGG AAGTGCTACC TCCATTATCT
    CAGATTAAGT TTACATTTAG TGTTCCTGTC GTGAAGTCGT CAGAGCTTTC TGGATCCACT
    GATACACCAG TGACATCCAT CCTTAGTCCA GGTAGTGCCA CTGTAAACAG CACCAGCAAT
    AAGAAGGAAG AGGAAGAAGA ATATGATGGG TTCTGCAAAC CTGCTAAATT CTTAAAGCAA
    GGAAGTGTGT TAGACATTCT AAAAAGCCCC GGCTTTATGT CTGGGAAATC ACCCTCCTGT
    TCATCTGCAC AGCCTGTTAC GAGCACAGTG GTCTATACAA GGCCTGCAAT AAGTAGTTTT
    TCTGCAGGTA AAGACACCTC TAAACAAACA TCCTCGTTCT GGCAGTCTGA CACACATGAC
    CCGTGTCTGC AGAACAAAAC CACAGATGGC AACTGTGTAA CATGTGAAGC TGCTAAAGTG
    TCCACTGTTG AGAGTACGAA GCAGACGGTC AGTGTGAGTC CGTGTGTCTC CTCCAAGACA
    GCAGTCCCTA CAGCAGGGAC ACTGGGCTTT GAAGACAAAT TTAAACCGGC ACCCAACACT
    TGGGATTGTG ATACCTGTCT GGTCCAGAAC AAACCTGAAG CTACAAAATG TATAGCATGT
    GATACACCAA AGCCTGGAAC AGGAGTGATG CCTGCTCTGA CAATGCCGAT GGTCACGGAC
    AACTCGGTGA CAGTAACATC CACCACCAGC AGCACGGGCA CAACAGTCAC TCTGGGGTTT
    GGAGACAAAT TTAAACAGCC AAAAGGCTCT TGGAACTGTT CAATGTGCCT TGTACAAAAT
    AAGGCAGAAG ACAGCAAATG TGTAGCTTGT CAGTCTGAGA AACCAGGGAG CTCAGTGCCT
    GTGAGCAGTA GCAGTGTTTC TGCATTTTCT GCTTCTTCTG GAGGTTTTCT GGATTTAGAC
    AAATTCAAGA AGCCTGAAGG AAGTTGGGAA TGTGAGGTCT GCTTGGTCCA AAACAAAGCA
    GAAGCCACAA AATGCATAGC CTGTCAAAAT GCAAAGCCAG GCACCAAAGC AGAGCTCAAA
    GGTTTTGGTA CTGCTACTGT GTCTACAAAT GCTGCAGCGC CATCATTTAC ATTCGGTGTC
    CCCTCATCAT CCTCTGAATC TTCTCAAACA TTAGGTAGCA CAGGAAATTT TAAATTTGGA
    GAACAGAGTA GCTTTAAGTT CGGCATTGCA TCCGAATCTG CATCGTCCAG CACTGTGACT
    GGAGGATTTA AGTTTCCTAC TGCTTCAGGG AACTTCAAAT TTGGAGTTTC TTCCTCAGAC
    TCTAAATCAG AAGACAGCAA AAAAGAAAGT AAAAGTAACA GTTTTACTTT TGGACTTCCA
    TCTACAAGCA GTCAGGCTCC TTCAACATTT CAGTTTGGAA CAACGAGTCT GGGACAGCAG
    GAAAAGAAAG AGGAACCAGT TTTGGGAGGT TTTGGTTTTG CTACAAGTTC TACTTCTTCC
    ATAGCTACTA ATGAGACTAA AACTGGAGTC GGTGGCTTCA CTTTTGGAAC TATGGCAGAA
    AAGGATGCAG CATCACCTGC TTTGCCATTT AAGAAGTCAG ATGAGAAAAA GGATGAAACT
    GTTTCAACGA AGGGAGGCTT CTCTTTCAGC AGCGTGGAGT CTGCCCCTGC CTCGCAGTTT
    GTTTTGGGAA GGACAGAAGA GAAGCAGGAC TCTGTCACTT CTGCTGGTCC ATTAGCATTT
    GGAAAGAAAG CTGACAATGA AGAGTTAAAG GCACAGCCTA TCTTTTCATC TGGGACAGCT
    GAGCATACCA AAGAGGAGAG CACAGCAAAA CCTGTATTCA ATTTTAGTTT CGGTAAACCA
    TCGGAAAAGG AAAGTGATCA GTCAAAGGCA CCTTTTGCAT TCGGGGCGCC AACCAGTACT
    TGCGATCAAG GAGCATCCTT CAGCTTCTTG AGCTCCAGTT CCTCCAGCAC AGTGGTACCC
    ACCACTTCAG CCAACAGCAG TGGTGTGTTT GGCAGCACCC TCTCTTCCTC AAACCCTCAG
    CCAGTTCCCA CTCCCTTTGT GTTTGGACAA CCCAGCAACA CTGTGACCAG CTCTGTTTTT
    GGCAATCCAG CAGAATCTGC AACATCTCAG TCATTCGGCT TCTCTCAAGA AAACAAGCCA
    GCAACCACAT CTTCCAGCGC TGGCTCAACT CTGACTCCGT TTCTCTTTGC TTCAGGAGAG
    AGCAGTACCA ATGCAGCAAA TTCAGGATTT ACTTTTGGAG CCACAACTAC ATCAGGTTCA
    ACAGGGTCAT CGTCTTCGTT TCTGTTTGGC TCTGGGCCTC CAGCGCCTGC TGCTGGCCCA
    GCCTTTGGCG CCAGTCAGCC ACCAGCATTT GGCCCAAGCC CAGGCTCTGG CCAGCAAAGC
    GCTCCAAGCT TTGGATCGCT GTCGACAACG TTGTTTTCTC CTGGCTCTCA CCCTGCTCCT
    TCTGCCTTCG GCTCGGTGAC AAGCAGCACT CAGCCCTCTG TGTTCGGACA ACAGGCAGCC
    AATCAGCCAA CTTTTGGCTC TGGTACCCCC AGTGCTGGTT CTGTATTCCG GTTTGGAAGT
    AGTACTACTA ATTTCAGCTT TCCAAATAAC CCAGGAGTAT TCACTTTTGG TGCAAATCCT
    CCTGCACCAG CAGCTCCTGC ACCGCCTTCT GCCACTTCAG GATTTTCATT CAACCAGCCT
    CCAGCATTTA CAGTGGGGAC TAATGGGAAA AATGTTTTCT CTGCCTCTGG ATCTTCAGTT
    GCTGGTCGGA AGATAAAGAC TGCAGTTAGA CGTAGAAAGT AA

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

    CloneID OPs16690
    Clone ID Related Accession (Same CDS sequence) XM_005525276.2
    Accession Version XM_005525276.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4359bp)
    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 2015-09-20
    Organism Pseudopodoces humilis(Tibetan ground-tit)
    Product nuclear pore complex protein Nup153 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_005087577.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Sep 21, 2015 this sequence version replaced XM_005525276.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Pseudopodoces humilis Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    ATGGCCTCGG GTGGCAGCGG CGGCGGCGGC GGCAAGATCC GGACCCGACG GCACCACCTG 
    GGAGCCGCGA AGCCGCCCTA CGCGAGGGGC AAGCAGCAGC TGGGGCTCCT TAGCAGAGTG
    ACTGAATCAG TGAAAAACAT TGTACCAGGA TGGTTGCAGA AGTATTTCAA TAAAAGGGAA
    GATAAATGTG TAGATATGAA TGAATCTGCA AGCGAGGAAG AGAATCCAGT AAACTATCAC
    CATGATTATG CAAATGAAGA TGCCATGGTA ATTGATGGGA GAGTCACGCC TGAATCAGCA
    AGAATTAATT TAGAAGAGCC ATCCACGAGC AGGTCTGCGC TGAACTTCTC GGATGTGTTA
    ACAAGGCCCT CCCTTCACCG GAGCCATTTG AACTGCACCG TGTTGGATTC CACAGTCCCA
    CACTGTCAGC CCTCCACATC TTCCACACTT GGCATTGGCA GTCCTGGGCT GTCCCTCGTA
    AAGGAAATAA AAGATTCTAC CTCTCAGCAT GATGACGATA ACATCTCAAC AACCAGTGGC
    TTCTCCTCTA GAGCATCTGA TAAAGATATC ACAGTTTCAA AAAATACTTC AGCACCACTG
    CTCTGGTCCC CAGAGGCTGA AAGATCTCAT TCCCTCTCAC AACATCCTGC ATCTAGCTCT
    AAAAAACCTG CATTCAATTT ATCTGCTTTT GGATCTCCCT CTCCTTCACT TGGAAACACT
    TCTGTCTTTA AGACAAGACA GCTTGGGGAT TCTCCATTTT ACCCTGGAAA GACCTCTTAC
    GGTGGTGCAG CTGCAGCAGC AAGGCAGACA AAAGTACAGA TTTCTGCTTA CCAGCCACCG
    GTAAAAAGAC AAATGAAAGC TAAACAAGCA AATGTGCAAT CCTATGGTGT GACAAGTTCC
    ACTGCGCGGC GCATCTTGCA GACATTGGAG AAGATGTCAA GCCCTTTGGC AGATGCTAAA
    AGGATTCCAT CTTCTGTTTC TAGTCCACTG TCTTCTCCTG TGGACAGGAG TGTGCTGAAT
    GTGACTGGCT TCCAATCCAG ACAAAACCAG ATGGATTCGC AACATCCACC TGTGCAGAAA
    CTTGTGACAC CAAAGCCAAT CTCCCTGACA GGGAGTCGGA TTACGTATTT TAAACCATCT
    CTGAAATCAG CTACTAATTC CAGAAAAATT CACCAAAGGG TAGATACAGA CCATCAAGAC
    ATAATAGACG AGAGTTTTCC TGCAGAAAAG CCTGTAAAAT CATCTGAAAG CAATTTGAGC
    TACCCCAAAC TTGATACTCC CGCATCCAAC GGTCTGTCTT CAGGAGGAAG GATGGATAGT
    GCCTGCGGCA AGATGAGAAG GGAAAGGGAG CGATACTGTG CATCAAGACC TGGACAAAAA
    CAACAACTGG AGATGGAGCA GGAAGAGCTA CCTGAGGTAC CCCTGCCCAT CAGTACTGCA
    TCGCTGCCGA CGTTCAGCTT CAGTTTCCCC GCCAGTAGTG CTGTGTCCTC ATCACCCAGC
    ATTGTTTCAA AAGCAGTGAT GAACAAGGTA CAACCAGCAA GTAATGTTGG CAGTCCTACA
    TTTGTATTTT CATCTCCAAT TGTGAAATCT ACCGAGGTGG AAGTGCTACC TCCATTATCT
    ATTAAGTTTA CATTTAGTGT TCCTGTCGTG AAGTCGTCAG AGCTTTCTGG ATCCACTGAT
    ACACCAGTGA CATCCATCCT TAGTCCAGGT AGTGCCACTG TAAACAGCAC CAGCAATAAG
    AAGGAAGAGG AAGAAGAATA TGATGGGTTC TGCAAACCTG CTAAATTCTT AAAGCAAGGA
    AGTGTGTTAG ACATTCTAAA AAGCCCCGGC TTTATGTCTG GGAAATCACC CTCCTGTTCA
    TCTGCACAGC CTGTTACGAG CACAGTGGTC TATACAAGGC CTGCAATAAG TAGTTTTTCT
    GCAGGTAAAG ACACCTCTAA ACAAACATCC TCGTTCTGGC AGTCTGACAC ACATGACCCG
    TGTCTGCAGA ACAAAACCAC AGATGGCAAC TGTGTAACAT GTGAAGCTGC TAAAGTGTCC
    ACTGTTGAGA GTACGAAGCA GACGGTCAGT GTGAGTCCGT GTGTCTCCTC CAAGACAGCA
    GTCCCTACAG CAGGGACACT GGGCTTTGAA GACAAATTTA AACCGGCACC CAACACTTGG
    GATTGTGATA CCTGTCTGGT CCAGAACAAA CCTGAAGCTA CAAAATGTAT AGCATGTGAT
    ACACCAAAGC CTGGAACAGG AGTGATGCCT GCTCTGACAA TGCCGATGGT CACGGACAAC
    TCGGTGACAG TAACATCCAC CACCAGCAGC ACGGGCACAA CAGTCACTCT GGGGTTTGGA
    GACAAATTTA AACAGCCAAA AGGCTCTTGG AACTGTTCAA TGTGCCTTGT ACAAAATAAG
    GCAGAAGACA GCAAATGTGT AGCTTGTCAG TCTGAGAAAC CAGGGAGCTC AGTGCCTGTG
    AGCAGTAGCA GTGTTTCTGC ATTTTCTGCT TCTTCTGGAG GTTTTCTGGA TTTAGACAAA
    TTCAAGAAGC CTGAAGGAAG TTGGGAATGT GAGGTCTGCT TGGTCCAAAA CAAAGCAGAA
    GCCACAAAAT GCATAGCCTG TCAAAATGCA AAGCCAGGCA CCAAAGCAGA GCTCAAAGGT
    TTTGGTACTG CTACTGTGTC TACAAATGCT GCAGCGCCAT CATTTACATT CGGTGTCCCC
    TCATCATCCT CTGAATCTTC TCAAACATTA GGTAGCACAG GAAATTTTAA ATTTGGAGAA
    CAGAGTAGCT TTAAGTTCGG CATTGCATCC GAATCTGCAT CGTCCAGCAC TGTGACTGGA
    GGATTTAAGT TTCCTACTGC TTCAGGGAAC TTCAAATTTG GAGTTTCTTC CTCAGACTCT
    AAATCAGAAG ACAGCAAAAA AGAAAGTAAA AGTAACAGTT TTACTTTTGG ACTTCCATCT
    ACAAGCAGTC AGGCTCCTTC AACATTTCAG TTTGGAACAA CGAGTCTGGG ACAGCAGGAA
    AAGAAAGAGG AACCAGTTTT GGGAGGTTTT GGTTTTGCTA CAAGTTCTAC TTCTTCCATA
    GCTACTAATG AGACTAAAAC TGGAGTCGGT GGCTTCACTT TTGGAACTAT GGCAGAAAAG
    GATGCAGCAT CACCTGCTTT GCCATTTAAG AAGTCAGATG AGAAAAAGGA TGAAACTGTT
    TCAACGAAGG GAGGCTTCTC TTTCAGCAGC GTGGAGTCTG CCCCTGCCTC GCAGTTTGTT
    TTGGGAAGGA CAGAAGAGAA GCAGGACTCT GTCACTTCTG CTGGTCCATT AGCATTTGGA
    AAGAAAGCTG ACAATGAAGA GTTAAAGGCA CAGCCTATCT TTTCATCTGG GACAGCTGAG
    CATACCAAAG AGGAGAGCAC AGCAAAACCT GTATTCAATT TTAGTTTCGG TAAACCATCG
    GAAAAGGAAA GTGATCAGTC AAAGGCACCT TTTGCATTCG GGGCGCCAAC CAGTACTTGC
    GATCAAGGAG CATCCTTCAG CTTCTTGAGC TCCAGTTCCT CCAGCACAGT GGTACCCACC
    ACTTCAGCCA ACAGCAGTGG TGTGTTTGGC AGCACCCTCT CTTCCTCAAA CCCTCAGCCA
    GTTCCCACTC CCTTTGTGTT TGGACAACCC AGCAACACTG TGACCAGCTC TGTTTTTGGC
    AATCCAGCAG AATCTGCAAC ATCTCAGTCA TTCGGCTTCT CTCAAGAAAA CAAGCCAGCA
    ACCACATCTT CCAGCGCTGG CTCAACTCTG ACTCCGTTTC TCTTTGCTTC AGGAGAGAGC
    AGTACCAATG CAGCAAATTC AGGATTTACT TTTGGAGCCA CAACTACATC AGGTTCAACA
    GGGTCATCGT CTTCGTTTCT GTTTGGCTCT GGGCCTCCAG CGCCTGCTGC TGGCCCAGCC
    TTTGGCGCCA GTCAGCCACC AGCATTTGGC CCAAGCCCAG GCTCTGGCCA GCAAAGCGCT
    CCAAGCTTTG GATCGCTGTC GACAACGTTG TTTTCTCCTG GCTCTCACCC TGCTCCTTCT
    GCCTTCGGCT CGGTGACAAG CAGCACTCAG CCCTCTGTGT TCGGACAACA GGCAGCCAAT
    CAGCCAACTT TTGGCTCTGG TACCCCCAGT GCTGGTTCTG TATTCCGGTT TGGAAGTAGT
    ACTACTAATT TCAGCTTTCC AAATAACCCA GGAGTATTCA CTTTTGGTGC AAATCCTCCT
    GCACCAGCAG CTCCTGCACC GCCTTCTGCC ACTTCAGGAT TTTCATTCAA CCAGCCTCCA
    GCATTTACAG TGGGGACTAA TGGGAAAAAT GTTTTCTCTG CCTCTGGATC TTCAGTTGCT
    GGTCGGAAGA TAAAGACTGC AGTTAGACGT AGAAAGTAA

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

    RefSeq XP_005525333.1
    CDS22..4380
    Translation

    Target ORF information:

    RefSeq Version XM_005525276.2
    Organism Pseudopodoces humilis(Tibetan ground-tit)
    Definition Pseudopodoces humilis nucleoporin 153kDa (NUP153), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005525276.2

    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
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    ATGGCCTCGG GTGGCAGCGG CGGCGGCGGC GGCAAGATCC GGACCCGACG GCACCACCTG 
    GGAGCCGCGA AGCCGCCCTA CGCGAGGGGC AAGCAGCAGC TGGGGCTCCT TAGCAGAGTG
    ACTGAATCAG TGAAAAACAT TGTACCAGGA TGGTTGCAGA AGTATTTCAA TAAAAGGGAA
    GATAAATGTG TAGATATGAA TGAATCTGCA AGCGAGGAAG AGAATCCAGT AAACTATCAC
    CATGATTATG CAAATGAAGA TGCCATGGTA ATTGATGGGA GAGTCACGCC TGAATCAGCA
    AGAATTAATT TAGAAGAGCC ATCCACGAGC AGGTCTGCGC TGAACTTCTC GGATGTGTTA
    ACAAGGCCCT CCCTTCACCG GAGCCATTTG AACTGCACCG TGTTGGATTC CACAGTCCCA
    CACTGTCAGC CCTCCACATC TTCCACACTT GGCATTGGCA GTCCTGGGCT GTCCCTCGTA
    AAGGAAATAA AAGATTCTAC CTCTCAGCAT GATGACGATA ACATCTCAAC AACCAGTGGC
    TTCTCCTCTA GAGCATCTGA TAAAGATATC ACAGTTTCAA AAAATACTTC AGCACCACTG
    CTCTGGTCCC CAGAGGCTGA AAGATCTCAT TCCCTCTCAC AACATCCTGC ATCTAGCTCT
    AAAAAACCTG CATTCAATTT ATCTGCTTTT GGATCTCCCT CTCCTTCACT TGGAAACACT
    TCTGTCTTTA AGACAAGACA GCTTGGGGAT TCTCCATTTT ACCCTGGAAA GACCTCTTAC
    GGTGGTGCAG CTGCAGCAGC AAGGCAGACA AAAGTACAGA TTTCTGCTTA CCAGCCACCG
    GTAAAAAGAC AAATGAAAGC TAAACAAGCA AATGTGCAAT CCTATGGTGT GACAAGTTCC
    ACTGCGCGGC GCATCTTGCA GACATTGGAG AAGATGTCAA GCCCTTTGGC AGATGCTAAA
    AGGATTCCAT CTTCTGTTTC TAGTCCACTG TCTTCTCCTG TGGACAGGAG TGTGCTGAAT
    GTGACTGGCT TCCAATCCAG ACAAAACCAG ATGGATTCGC AACATCCACC TGTGCAGAAA
    CTTGTGACAC CAAAGCCAAT CTCCCTGACA GGGAGTCGGA TTACGTATTT TAAACCATCT
    CTGAAATCAG CTACTAATTC CAGAAAAATT CACCAAAGGG TAGATACAGA CCATCAAGAC
    ATAATAGACG AGAGTTTTCC TGCAGAAAAG CCTGTAAAAT CATCTGAAAG CAATTTGAGC
    TACCCCAAAC TTGATACTCC CGCATCCAAC GGTCTGTCTT CAGGAGGAAG GATGGATAGT
    GCCTGCGGCA AGATGAGAAG GGAAAGGGAG CGATACTGTG CATCAAGACC TGGACAAAAA
    CAACAACTGG AGATGGAGCA GGAAGAGCTA CCTGAGGTAC CCCTGCCCAT CAGTACTGCA
    TCGCTGCCGA CGTTCAGCTT CAGTTTCCCC GCCAGTAGTG CTGTGTCCTC ATCACCCAGC
    ATTGTTTCAA AAGCAGTGAT GAACAAGGTA CAACCAGCAA GTAATGTTGG CAGTCCTACA
    TTTGTATTTT CATCTCCAAT TGTGAAATCT ACCGAGGTGG AAGTGCTACC TCCATTATCT
    ATTAAGTTTA CATTTAGTGT TCCTGTCGTG AAGTCGTCAG AGCTTTCTGG ATCCACTGAT
    ACACCAGTGA CATCCATCCT TAGTCCAGGT AGTGCCACTG TAAACAGCAC CAGCAATAAG
    AAGGAAGAGG AAGAAGAATA TGATGGGTTC TGCAAACCTG CTAAATTCTT AAAGCAAGGA
    AGTGTGTTAG ACATTCTAAA AAGCCCCGGC TTTATGTCTG GGAAATCACC CTCCTGTTCA
    TCTGCACAGC CTGTTACGAG CACAGTGGTC TATACAAGGC CTGCAATAAG TAGTTTTTCT
    GCAGGTAAAG ACACCTCTAA ACAAACATCC TCGTTCTGGC AGTCTGACAC ACATGACCCG
    TGTCTGCAGA ACAAAACCAC AGATGGCAAC TGTGTAACAT GTGAAGCTGC TAAAGTGTCC
    ACTGTTGAGA GTACGAAGCA GACGGTCAGT GTGAGTCCGT GTGTCTCCTC CAAGACAGCA
    GTCCCTACAG CAGGGACACT GGGCTTTGAA GACAAATTTA AACCGGCACC CAACACTTGG
    GATTGTGATA CCTGTCTGGT CCAGAACAAA CCTGAAGCTA CAAAATGTAT AGCATGTGAT
    ACACCAAAGC CTGGAACAGG AGTGATGCCT GCTCTGACAA TGCCGATGGT CACGGACAAC
    TCGGTGACAG TAACATCCAC CACCAGCAGC ACGGGCACAA CAGTCACTCT GGGGTTTGGA
    GACAAATTTA AACAGCCAAA AGGCTCTTGG AACTGTTCAA TGTGCCTTGT ACAAAATAAG
    GCAGAAGACA GCAAATGTGT AGCTTGTCAG TCTGAGAAAC CAGGGAGCTC AGTGCCTGTG
    AGCAGTAGCA GTGTTTCTGC ATTTTCTGCT TCTTCTGGAG GTTTTCTGGA TTTAGACAAA
    TTCAAGAAGC CTGAAGGAAG TTGGGAATGT GAGGTCTGCT TGGTCCAAAA CAAAGCAGAA
    GCCACAAAAT GCATAGCCTG TCAAAATGCA AAGCCAGGCA CCAAAGCAGA GCTCAAAGGT
    TTTGGTACTG CTACTGTGTC TACAAATGCT GCAGCGCCAT CATTTACATT CGGTGTCCCC
    TCATCATCCT CTGAATCTTC TCAAACATTA GGTAGCACAG GAAATTTTAA ATTTGGAGAA
    CAGAGTAGCT TTAAGTTCGG CATTGCATCC GAATCTGCAT CGTCCAGCAC TGTGACTGGA
    GGATTTAAGT TTCCTACTGC TTCAGGGAAC TTCAAATTTG GAGTTTCTTC CTCAGACTCT
    AAATCAGAAG ACAGCAAAAA AGAAAGTAAA AGTAACAGTT TTACTTTTGG ACTTCCATCT
    ACAAGCAGTC AGGCTCCTTC AACATTTCAG TTTGGAACAA CGAGTCTGGG ACAGCAGGAA
    AAGAAAGAGG AACCAGTTTT GGGAGGTTTT GGTTTTGCTA CAAGTTCTAC TTCTTCCATA
    GCTACTAATG AGACTAAAAC TGGAGTCGGT GGCTTCACTT TTGGAACTAT GGCAGAAAAG
    GATGCAGCAT CACCTGCTTT GCCATTTAAG AAGTCAGATG AGAAAAAGGA TGAAACTGTT
    TCAACGAAGG GAGGCTTCTC TTTCAGCAGC GTGGAGTCTG CCCCTGCCTC GCAGTTTGTT
    TTGGGAAGGA CAGAAGAGAA GCAGGACTCT GTCACTTCTG CTGGTCCATT AGCATTTGGA
    AAGAAAGCTG ACAATGAAGA GTTAAAGGCA CAGCCTATCT TTTCATCTGG GACAGCTGAG
    CATACCAAAG AGGAGAGCAC AGCAAAACCT GTATTCAATT TTAGTTTCGG TAAACCATCG
    GAAAAGGAAA GTGATCAGTC AAAGGCACCT TTTGCATTCG GGGCGCCAAC CAGTACTTGC
    GATCAAGGAG CATCCTTCAG CTTCTTGAGC TCCAGTTCCT CCAGCACAGT GGTACCCACC
    ACTTCAGCCA ACAGCAGTGG TGTGTTTGGC AGCACCCTCT CTTCCTCAAA CCCTCAGCCA
    GTTCCCACTC CCTTTGTGTT TGGACAACCC AGCAACACTG TGACCAGCTC TGTTTTTGGC
    AATCCAGCAG AATCTGCAAC ATCTCAGTCA TTCGGCTTCT CTCAAGAAAA CAAGCCAGCA
    ACCACATCTT CCAGCGCTGG CTCAACTCTG ACTCCGTTTC TCTTTGCTTC AGGAGAGAGC
    AGTACCAATG CAGCAAATTC AGGATTTACT TTTGGAGCCA CAACTACATC AGGTTCAACA
    GGGTCATCGT CTTCGTTTCT GTTTGGCTCT GGGCCTCCAG CGCCTGCTGC TGGCCCAGCC
    TTTGGCGCCA GTCAGCCACC AGCATTTGGC CCAAGCCCAG GCTCTGGCCA GCAAAGCGCT
    CCAAGCTTTG GATCGCTGTC GACAACGTTG TTTTCTCCTG GCTCTCACCC TGCTCCTTCT
    GCCTTCGGCT CGGTGACAAG CAGCACTCAG CCCTCTGTGT TCGGACAACA GGCAGCCAAT
    CAGCCAACTT TTGGCTCTGG TACCCCCAGT GCTGGTTCTG TATTCCGGTT TGGAAGTAGT
    ACTACTAATT TCAGCTTTCC AAATAACCCA GGAGTATTCA CTTTTGGTGC AAATCCTCCT
    GCACCAGCAG CTCCTGCACC GCCTTCTGCC ACTTCAGGAT TTTCATTCAA CCAGCCTCCA
    GCATTTACAG TGGGGACTAA TGGGAAAAAT GTTTTCTCTG CCTCTGGATC TTCAGTTGCT
    GGTCGGAAGA TAAAGACTGC AGTTAGACGT AGAAAGTAA

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