NUP133 cDNA ORF clone, Saccharomyces cerevisiae S288C

The following NUP133 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the NUP133 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
OSi03134 NM_001179872.3
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Saccharomyces cerevisiae S288C Nup133p (NUP133), partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 20 $629.30
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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 OSi03134
    Clone ID Related Accession (Same CDS sequence) NM_001179872.3
    Accession Version NM_001179872.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3474bp)
    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 2019-10-31
    Organism Saccharomyces cerevisiae S288C
    Product Nup133p
    Comment Comment: REVIEWED REFSEQ: This record has been curated by SGD. This record is derived from an annotated genomic sequence (NC_001143). On Jul 30, 2012 this sequence version replaced NM_001179872.2. ##Genome-Annotation-Data-START## Annotation Provider :: SGD Annotation Status :: Full Annotation Annotation Version :: R64-2-1 URL :: http://www.yeastgenome.org/ ##Genome-Annotation-Data-END## COMPLETENESS: incomplete on both ends.

    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
    ATGAGTGAAA AAAAAGTACA TCTTCGTTTG CGGAAGGAAC TTAGCGTACC CATTGCGGTG 
    GTTGAAAACG AATCCCTGGC GCAGTTGTCT TATGAAGAGG AAAGCCAGGC CTCTCTAATG
    GACATTTCCA TGGAGCAGCA ACAGTTAAGG TTACATTCGC ACTTTGATAA TTCCAAGGTT
    TTCACAGAAA ATAACAGATA CATAGTAAAA ACCCTTCAAA CAGACTACAG TAGCGGATTC
    AGTAACGATG ACGAATTGAA TGGATATATC GATATGCAAA TTGGATATGG ACTAGTCAAT
    GACCACAAGA AGGTTTACAT CTGGAATATT CACTCCACTC AAAAGGATAC GCCCTATATA
    ACTGTACCAT TTCGTTCTGA TGATAATGAT GAAATAGCAG TCGCGCCCAG GTGCATACTA
    ACTTTCCCTG CTACAATGGA TGAGTCTCCA TTAGCACTGA ATCCTAATGA TCAGGACGAA
    ACCGGAGGGC TTATCATTAT CAAAGGTAGC AAAGCGATAT ATTATGAGGA TATCAACTCC
    ATAAATAATT TGAACTTTAA GTTATCTGAA AAATTCTCTC ACGAGTTAGA ATTACCCATC
    AACTCTTCGG GCGGAGAGAA GTGTGACCTA ATGTTAAACT GCGAACCTGC TGGTATAGTG
    CTTTCTACAA ATATGGGCAG AATATTTTTT ATAACCATTA GAAATTCCAT GGGTAAACCT
    CAACTGAAGT TAGGCAAACT ATTAAATAAA CCTTTCAAAT TGGGTATCTG GTCCAAAATT
    TTCAATACAA ACAGTTCAGT TGTCTCATTA CGAAATGGAC CTATCCTCGG TAAGGGGACA
    AGGTTAGTAT ATATTACTAC TAACAAAGGA ATTTTTCAAA CATGGCAGTT GTCTGCCACG
    AATTCCCATC CAACAAAATT GATTGATGTA AACATTTACG AAGCCATTTT AGAGTCGCTC
    CAGGATTTGT ATCCATTTGC TCATGGTACG TTGAAGATTT GGGACTCTCA TCCATTACAA
    GATGAAAGTT CACAACTTTT CCTGTCATCT ATTTACGACA GTTCATGCAA TGAAACATAT
    TATATTCTTT CCACGATTAT CTTCGATTCT TCTTCTAATA GTTTTACTAT TTTTTCCACT
    TATAGATTGA ACACTTTTAT GGAGTCAATA ACCGACACAA AGTTTAAGCC TAAGATATTT
    ATACCTCAGA TGGAGAATGC TAACGATACC AATGAGGTAA CTTCCATTTT GGTAATGTTC
    CCCAATGCTG TTGTCATTAC TCAGGTGAAC TCAAAATTGG ACTCTAGCTA TTCAATGAGA
    AGAAAGTGGG AAGATATTGT TAGCCTTAGA AATGACATTG ATATAATTGG TTCTGGTTAC
    GACTCAAAAT CTTTGTATGT TTTAACGAAA CAAATGGGGG TGCTACAGTT TTTTGTGAAA
    GAGAATGAGG AAACAAATTC TAAACCGGAA GTTGGGTTTG TCAAATCTCA TGTTGATCAA
    GCTGTTTATT TCTCCAAAAT AAATGCAAAT CCCATAGATT TCAATTTACC TCCAGAAATT
    TCACTAGATC AAGAATCTAT AGAGCATGAT TTAAAATTAA CCAGCGAGGA GATTTTTCAT
    TCCAACGGCA AGTACATACC CCCTATGCTA AATACGTTGG GGCAACATCT CTCTGTCCGT
    AAAGAATTTT TTCAAAATTT CCTGACATTT GTTGCTAAGA ACTTCAACTA TAAAATATCA
    CCCGAACTGA AATTGGATCT GATCGAAAAA TTTGAGATCT TGAATTGCTG TATTAAGTTC
    AATAGTATCA TCAGACAATC TGATGTATTG AACGATATAT GGGAGAAGAC TTTATCAAAC
    TATAATCTGA CACAAAATGA ACACTTAACT ACTAAAACAG TTGTAATCAA CAGTCCCGAC
    GTATTTCCAG TAATCTTTAA ACAATTTTTA AACCATGTTG TGTTTGTTTT GTTCCCATCA
    CAAAATCAAA ATTTCAAACT AAATGTTACC AATTTAATCA ACTTATGCTT TTATGATGGA
    ATTCTTGAAG AAGGTGAAAA AACTATAAGG TATGAACTTT TGGAGTTAGA CCCGATGGAG
    GTTGATACAT CCAAGCTACC ATGGTTCATA AACTTTGATT ACTTAAACTG TATCAATCAA
    TGTTTTTTTG ATTTTACATT TGCGTGTGAG GAGGAAGGAA GTCTGGATTC TTATAAAGAG
    GGCTTGTTAA AGATTGTGAA AATTTTATAT TATCAGTTCA ACCAATTTAA AATATGGATC
    AACACGCAAC CCGTTAAATC TGTGAACGCC AATGATAATT TTATAAATAT CAACAATCTT
    TATGATGATA ACCACCTGGA TTGGAACCAC GTCCTTTGTA AGGTAAATCT AAAAGAACAG
    TGTATTCAAA TAGCAGAATT TTACAAAGAT TTATCTGGAT TGGTGCAAAC ATTACAAACT
    TTAGATCAAA ATGACTCAAC AACCGTATCG CTATACGAAA CATTCTTCAA CGAATTCCCT
    AAAGAGTTTA GCTTTACATT ATTTGAATAT TTAATCAAGC ATAAAAAATT GAACGACCTC
    ATCTTCAGGT TCCCACAACA ACACGATGTT TTAATACAGT TTTTCCAAGA GTCCGCTCCA
    AAGTACGGTC ATGTAGCATG GATCCAACAG ATTCTGGATG GGTCGTACGC AGATGCCATG
    AATACTTTAA AAAACATTAC TGTTGATGAT TCAAAGAAGG GCGAAAGCTT GAGCGAATGT
    GAATTGCACT TGAATGTTGC AAAATTAAGC TCGTTGCTAG TTGAAAAGGA TAATTTGGAC
    ATTAATACTT TGAGAAAGAT CCAATATAAT TTAGATACAA TTGATGCTGA GAAAAATATT
    TCAAACAAAT TGAAAAAGGG CGAAGTTCAG ATATGTAAAC GCTTCAAGAA TGGCTCTATC
    AGGGAAGTTT TCAACATATT AGTGGAAGAG CTTAAATCAA CAACAGTAGT CAATCTATCG
    GATCTCGTTG AGTTGTATTC TATGCTCGAC GATGAAGAGA GCTTATTCAT ACCGCTAAGG
    CTTCTTTCTG TTGATGGAAA CTTACTGAAT TTTGAAGTTA AAAAGTTCTT GAATGCTTTG
    GTATGGAGAA GAATCGTTCT ACTAAATGCT AGTAATGAAG GAGATAAACT GCTTCAGCAT
    ATAGTCAAAC GTGTTTTTGA TGAAGAACTA CCCAAAAATA ATGATTTCCC CTTGCCCAGT
    GTGGATCTTT TATGTGACAA ATCGTTACTG ACGCCAGAAT ACATAAGCGA AACATATGGC
    AGGTTTCCTA TTGATCAGAA TGCCATACGT GAAGAGATAT ATGAAGAAAT ATCTCAAGTG
    GAAACGTTGA ACTCAGACAA CTCACTCGAG ATAAAGTTGC ACTCGACTAT TGGTTCTGTA
    GCGAAAGAAA AAAACTATAC CATCAACTAT GAAACCAACA CTGTAGAATA CTAA

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

    RefSeq NP_013008.3
    CDS1..3474
    Translation

    Target ORF information:

    RefSeq Version NM_001179872.3
    Organism Saccharomyces cerevisiae S288C
    Definition Saccharomyces cerevisiae S288C Nup133p (NUP133), partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001179872.3

    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
    3361
    3421
    ATGAGTGAAA AAAAAGTACA TCTTCGTTTG CGGAAGGAAC TTAGCGTACC CATTGCGGTG 
    GTTGAAAACG AATCCCTGGC GCAGTTGTCT TATGAAGAGG AAAGCCAGGC CTCTCTAATG
    GACATTTCCA TGGAGCAGCA ACAGTTAAGG TTACATTCGC ACTTTGATAA TTCCAAGGTT
    TTCACAGAAA ATAACAGATA CATAGTAAAA ACCCTTCAAA CAGACTACAG TAGCGGATTC
    AGTAACGATG ACGAATTGAA TGGATATATC GATATGCAAA TTGGATATGG ACTAGTCAAT
    GACCACAAGA AGGTTTACAT CTGGAATATT CACTCCACTC AAAAGGATAC GCCCTATATA
    ACTGTACCAT TTCGTTCTGA TGATAATGAT GAAATAGCAG TCGCGCCCAG GTGCATACTA
    ACTTTCCCTG CTACAATGGA TGAGTCTCCA TTAGCACTGA ATCCTAATGA TCAGGACGAA
    ACCGGAGGGC TTATCATTAT CAAAGGTAGC AAAGCGATAT ATTATGAGGA TATCAACTCC
    ATAAATAATT TGAACTTTAA GTTATCTGAA AAATTCTCTC ACGAGTTAGA ATTACCCATC
    AACTCTTCGG GCGGAGAGAA GTGTGACCTA ATGTTAAACT GCGAACCTGC TGGTATAGTG
    CTTTCTACAA ATATGGGCAG AATATTTTTT ATAACCATTA GAAATTCCAT GGGTAAACCT
    CAACTGAAGT TAGGCAAACT ATTAAATAAA CCTTTCAAAT TGGGTATCTG GTCCAAAATT
    TTCAATACAA ACAGTTCAGT TGTCTCATTA CGAAATGGAC CTATCCTCGG TAAGGGGACA
    AGGTTAGTAT ATATTACTAC TAACAAAGGA ATTTTTCAAA CATGGCAGTT GTCTGCCACG
    AATTCCCATC CAACAAAATT GATTGATGTA AACATTTACG AAGCCATTTT AGAGTCGCTC
    CAGGATTTGT ATCCATTTGC TCATGGTACG TTGAAGATTT GGGACTCTCA TCCATTACAA
    GATGAAAGTT CACAACTTTT CCTGTCATCT ATTTACGACA GTTCATGCAA TGAAACATAT
    TATATTCTTT CCACGATTAT CTTCGATTCT TCTTCTAATA GTTTTACTAT TTTTTCCACT
    TATAGATTGA ACACTTTTAT GGAGTCAATA ACCGACACAA AGTTTAAGCC TAAGATATTT
    ATACCTCAGA TGGAGAATGC TAACGATACC AATGAGGTAA CTTCCATTTT GGTAATGTTC
    CCCAATGCTG TTGTCATTAC TCAGGTGAAC TCAAAATTGG ACTCTAGCTA TTCAATGAGA
    AGAAAGTGGG AAGATATTGT TAGCCTTAGA AATGACATTG ATATAATTGG TTCTGGTTAC
    GACTCAAAAT CTTTGTATGT TTTAACGAAA CAAATGGGGG TGCTACAGTT TTTTGTGAAA
    GAGAATGAGG AAACAAATTC TAAACCGGAA GTTGGGTTTG TCAAATCTCA TGTTGATCAA
    GCTGTTTATT TCTCCAAAAT AAATGCAAAT CCCATAGATT TCAATTTACC TCCAGAAATT
    TCACTAGATC AAGAATCTAT AGAGCATGAT TTAAAATTAA CCAGCGAGGA GATTTTTCAT
    TCCAACGGCA AGTACATACC CCCTATGCTA AATACGTTGG GGCAACATCT CTCTGTCCGT
    AAAGAATTTT TTCAAAATTT CCTGACATTT GTTGCTAAGA ACTTCAACTA TAAAATATCA
    CCCGAACTGA AATTGGATCT GATCGAAAAA TTTGAGATCT TGAATTGCTG TATTAAGTTC
    AATAGTATCA TCAGACAATC TGATGTATTG AACGATATAT GGGAGAAGAC TTTATCAAAC
    TATAATCTGA CACAAAATGA ACACTTAACT ACTAAAACAG TTGTAATCAA CAGTCCCGAC
    GTATTTCCAG TAATCTTTAA ACAATTTTTA AACCATGTTG TGTTTGTTTT GTTCCCATCA
    CAAAATCAAA ATTTCAAACT AAATGTTACC AATTTAATCA ACTTATGCTT TTATGATGGA
    ATTCTTGAAG AAGGTGAAAA AACTATAAGG TATGAACTTT TGGAGTTAGA CCCGATGGAG
    GTTGATACAT CCAAGCTACC ATGGTTCATA AACTTTGATT ACTTAAACTG TATCAATCAA
    TGTTTTTTTG ATTTTACATT TGCGTGTGAG GAGGAAGGAA GTCTGGATTC TTATAAAGAG
    GGCTTGTTAA AGATTGTGAA AATTTTATAT TATCAGTTCA ACCAATTTAA AATATGGATC
    AACACGCAAC CCGTTAAATC TGTGAACGCC AATGATAATT TTATAAATAT CAACAATCTT
    TATGATGATA ACCACCTGGA TTGGAACCAC GTCCTTTGTA AGGTAAATCT AAAAGAACAG
    TGTATTCAAA TAGCAGAATT TTACAAAGAT TTATCTGGAT TGGTGCAAAC ATTACAAACT
    TTAGATCAAA ATGACTCAAC AACCGTATCG CTATACGAAA CATTCTTCAA CGAATTCCCT
    AAAGAGTTTA GCTTTACATT ATTTGAATAT TTAATCAAGC ATAAAAAATT GAACGACCTC
    ATCTTCAGGT TCCCACAACA ACACGATGTT TTAATACAGT TTTTCCAAGA GTCCGCTCCA
    AAGTACGGTC ATGTAGCATG GATCCAACAG ATTCTGGATG GGTCGTACGC AGATGCCATG
    AATACTTTAA AAAACATTAC TGTTGATGAT TCAAAGAAGG GCGAAAGCTT GAGCGAATGT
    GAATTGCACT TGAATGTTGC AAAATTAAGC TCGTTGCTAG TTGAAAAGGA TAATTTGGAC
    ATTAATACTT TGAGAAAGAT CCAATATAAT TTAGATACAA TTGATGCTGA GAAAAATATT
    TCAAACAAAT TGAAAAAGGG CGAAGTTCAG ATATGTAAAC GCTTCAAGAA TGGCTCTATC
    AGGGAAGTTT TCAACATATT AGTGGAAGAG CTTAAATCAA CAACAGTAGT CAATCTATCG
    GATCTCGTTG AGTTGTATTC TATGCTCGAC GATGAAGAGA GCTTATTCAT ACCGCTAAGG
    CTTCTTTCTG TTGATGGAAA CTTACTGAAT TTTGAAGTTA AAAAGTTCTT GAATGCTTTG
    GTATGGAGAA GAATCGTTCT ACTAAATGCT AGTAATGAAG GAGATAAACT GCTTCAGCAT
    ATAGTCAAAC GTGTTTTTGA TGAAGAACTA CCCAAAAATA ATGATTTCCC CTTGCCCAGT
    GTGGATCTTT TATGTGACAA ATCGTTACTG ACGCCAGAAT ACATAAGCGA AACATATGGC
    AGGTTTCCTA TTGATCAGAA TGCCATACGT GAAGAGATAT ATGAAGAAAT ATCTCAAGTG
    GAAACGTTGA ACTCAGACAA CTCACTCGAG ATAAAGTTGC ACTCGACTAT TGGTTCTGTA
    GCGAAAGAAA AAAACTATAC CATCAACTAT GAAACCAACA CTGTAGAATA CTAA

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

  • PubMed

    Life with 6000 genes.
    Science (New York, N.Y.)274(5287)546, 563-7(1996 Oct)
    Goffeau A,Barrell BG,Bussey H,Davis RW,Dujon B,Feldmann H,Galibert F,Hoheisel JD,Jacq C,Johnston M,Louis EJ,Mewes HW,Murakami Y,Philippsen P,Tettelin H,Oliver SG


    Complete DNA sequence of yeast chromosome XI.
    Nature369(6479)371-8(1994 Jun)
    Dujon B,Alexandraki D,Andr? B,Ansorge W,Baladron V,Ballesta JP,Banrevi A,Bolle PA,Bolotin-Fukuhara M,Bossier P,Bou G,Boyer J,Bultrago MJ,Cheret G,Colleaux L,Dalgnan-Fornler B,del Rey F,Dlon C,Domdey H,D?sterhoft A,D?sterhus S,Entlan KD,Erfle H,Esteban PF,Feldmann H,Fernandes L,Robo GM,Fritz C,Fukuhara H,Gabel C,Gaillon L,Carcia-Cantalejo JM,Garcia-Ramirez JJ,Gent NE,Ghazvini M,Goffeau A,Gonzal?z A,Grothues D,Guerreiro P,Hegemann J,Hewitt N,Hilger F,Hollenberg CP,Horaitis O,Indge KJ,Jacquier A,James CM,Jauniaux C,Jimenez A,Keuchel H,Kirchrath L,Kleine K,K?tter P,Legrain P,Liebl S,Louis EJ,Maia e Silva A,Marck C,Monnier AL,M?stl D,M?ller S,Obermaier B,Oliver SG,Pallier C,Pascolo S,Pfeiffer F,Philippsen P,Planta RJ,Pohl FM,Pohl TM,P?hlmann R,Portetelle D,Purnelle B,Puzos V,Ramezani Rad M,Rasmussen SW,Remacha M,Revuelta JL,Richard GF,Rieger M,Rodrigues-Pousada C,Rose M,Rupp T,Santos MA,Schwager C,Sensen C,Skala J,Soares H,Sor F,Stegemann J,Tettelin H,Thierry A,Tzermia M,Urrestarazu LA,van Dyck L,Van Vliet-Reedijk JC,Valens M,Vandenbo M,Vilela C,Vissers S,von Wettstein D,Voss H,Wiemann S,Xu G,Zimmermann J,Haasemann M,Becker I,Mewes HW