NUP155 cDNA ORF clone, Monodelphis domestica(gray short-tailed opossum)

The following NUP155 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the NUP155 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
OMc15942 XM_007487440.2
Latest version!
Monodelphis domestica nucleoporin 155kDa (NUP155), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
OMc15943 XM_001372459.4
Latest version!
Monodelphis domestica nucleoporin 155kDa (NUP155), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** 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 OMc15942
    Clone ID Related Accession (Same CDS sequence) XM_007487440.2
    Accession Version XM_007487440.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4191bp)
    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 1461600000000
    Organism Monodelphis domestica(gray short-tailed opossum)
    Product nuclear pore complex protein Nup155 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_008803.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Apr 27, 2016 this sequence version replaced XM_007487440.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Monodelphis domestica Annotation Release 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.0 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
    ATGCCATCCT CGCATGTGTC CCCGGCGCCC GCAGCGATCA CGCCTGCTGC AGTCGCGGCC 
    ATGCAGGAGG CTCTGGAGAA CGCTGGGAGG CTCATCGACC GCCAAGTGCA GGACGACCGC
    CTTTATCCCG ACCTGTCGGA GCTCCTCATG GTGCCAGCCC CAAATAACCC TACAGTTTCT
    GGCATATCAG ACATGGATTA TCCACTACAG GGACCTGGTT TACTCTCAGT ACCCAGTCTT
    CCAGAGATCA GCTCCATTCG ACGAGTTCCT CTTCCTCCTG AGCTTGTTGA ACAGTTTGGC
    CATATGCAGT GTAACTGCAT GATGGGGGTC TTCCCTGAAA TTGGGAGGGC ATGGCTTACT
    ATTGATAGTG ACATATTTAT GTGGAACTAT GAAGATGGTG GGGACCTTGC CTACTTTGAT
    GGACTTAGTG AAACTATTCT TGCTGTGGGT CTTGTGAAGC CAAAGGCTGG TATTTTTCAG
    CCTCATGTAA GACACCTCCT GGTTCTGGCT ACCCCTGTAG ATATAGTGAT TCTAGGACTC
    AGCTATGCTA ATTTTCAGCC AGGTGTTGGA GTCCTTAATG ACAGCATGTC TGGTGGAATG
    CAGTTACTTC CAGATCCTCT GTATTCACTA CCCACTGACA ATACTTATCT TTTGACAATA
    ACTTCCACGG ATAATGGTAG AATTTTCTTG GCTGGAAAGG ATGGCTGTTT ATATGAAGTA
    GCATACCAAG CAGAATCCGG CTGGTTTAGC CAGAGGTGCA GAAAGATAAA CCACTCAAAG
    AGTTCACTTT CTTTCCTTGT TCCATCATTG CTTCAATTCA CGTTCTCAGA AGATGATCCC
    ATTGTACAGA TTGCAATCGA CAATTCCAGG AACATCTTAT ACACCCGCTC AGAGAAAGGA
    GTGATACAGG TTTATGATTT GGGCCAAGAT GGAAAAGGAA TAAGCAGAGT TGCTTCCGTT
    TCACAGAATG CTATTGTTTC TGCTGCTGGA AACATTGCAA GGACCATAGA CCGTTCTGTT
    TTTAAGCCAA TTGTCCAAAT AGCAGTAATT GAAAACTCAG AATCCATAGA CTGTCAGTTA
    CTGGCTATCA CACATGCAGG TGTAAGATTA TATTTCAGCT CATGCCCATT TAGACAGCCA
    TTTGCAAGGC CCAATTCTCT GATACTAGTT CATGTCCGGT TACCTCCTGG ATTTTCAGCT
    TCTTCAACTG TGGAAAAGCC ATCAAAGGTG CATAGAGCTC TTTATAGCAA AGGTGTTCTA
    CTCATGGCAG CATCAGAAAA TGAAGATAAT GATATTTTGT GGTGTGTTAA TCATGACACT
    TTTCCATTCC AAAAGCCAAT GATGGAAACA CAGATGACAA CACGTGTTGA TGGTCATTCT
    TGGGCTCTCT CTGCAATAGA TGAGTTGAAA ATGGATAAGA TCATAACACC TTTAAATAAG
    GACCATATTC CAATAACAGA TTCACCAGTT GTTGTGCAAC AACATATGTT ACCCCCAAAG
    AAATTTGTCT TGCTTTCTGC TCAGGGAAGT CTTATGTTTC ACAAACTTAG ACCTGTGGAC
    CAACTGAGAC ATCTCCTAGT TAGTAATTTG GGGGGAGATG GAGAAGAGAT TGAAAGATTC
    TTCAAACTGC ATCAGGAGGA CCAGGCTTGT GCAACTTGCC TTATCCTGGC TTGCTCCACT
    GCTGCCTGTG ATAGAGAGGT ATCTGCTTGG GCAACTCGTG CGTTCTTCAG ATATGGTGGA
    GAGGCACAAA TGCGATTTCC AACAGCAATT CCTCCTCCAA GTAATGTTGG ACCCATTTTG
    GGGTCTCCCG TCTATCCTAG CTCCCCTGTG CCTGTTGGTA GTCCATATCC TAATCCATCC
    TTCTTGGGAA CACCACCTCC AGGATTGCAA TCTCCTGCCA TGTCAACACC AATGTATCTT
    ACTGGAAGCC AGTTGCCGCA GTCTGCCGCA AATATTACTT GTATGACTGG GCCAGAGATG
    GTGTATTCTG GCAAACACAA TGGTATCTGC ATCTATTTCT CTCGAATCAT GGGAAATATT
    TGGGATGCAA GTCTAGTTGT AGAGAGGGTA TTCAGGAGTG GCAGCAGGGA GATTATTACA
    ATTGAAAGTA GCGTACCACC TCAGCTGTTA GAGTCAGTGA TACAGGAACT AAAAGGTTTA
    CAAGAATTTC TGGACAGAAA TTCACAGTTT GCAGGAGGAC CCATTGGGAA TCCACATACT
    ACTGCTGCCA GAGTGCAACA AAGGCTGATT GGATTCATGC GTCCTGAAAA TGGAAGTTCT
    CAACAAATGC AACAGGAATT ACAGAGAAAG TTCCATGCAG AGGCTCAAGT GAGTGAAAAA
    ATTTCACTTC AGGGGATCCA ACAGTTGGTT CGCAAATCCT ACCAAGCTTT GGCTTTATGG
    AAACTCCTCT GTGAACATCA ATTCACTGTC ATTGTGGGAG AGCTTCAGAA GGAACTTCAA
    GAGCAATTGA AGATCACTAC TTTCAAAGAC CTGGTCATTA GAGACAAAGA ACTGACTGGA
    GCATTGATTG CCTCTCTTAT CAACTGTTAT ATCAGAGATA ATGCTGCAGT TGATGGTATC
    AGTTCACATT TACAAGACAT TTGCCCTCTT CTATACAGCA CAGATGATGC AATTTGTTCC
    AAGGCAAATG AGCTTCTTCA GCGCTCCCGG CAAGTTCAAA GCAAACCTGA AAAGGAAAGA
    ATGTTAAGGG AATCATTGAA GGAGTATCAG AAAATTAGTA ATCAAGTGGA CCTTTGCAAT
    GTTTGTGCTC AGTATAGACA AGTACGTTTT TATGAGGGTA TTGTGGAACT CTCTCTCACG
    GCTGCTGAGA AAAAAGATCC TCAAGGTCTT GGTCTCCATT TCTACAAACA TGGAGAGCCT
    GAAGATGATA CTGTGGGACT GCAGGCTTTC CAAGAAAGGT TGACTAGCTA TAAGTGCATC
    ACAGATACAC TTCAGGAACT TGTCAATCAG AGTAAAGCTG CTCCTCAGTC TCCAAGTGTG
    CCTAAAAAGC CAGGGCCTCC AGTTTTGTCA TCTGACCCCA ATATGTTGAG TAATGAAGAA
    GCAGGACATC ATTTTGAACA GATGCTAAAA TTGGCTCAGC GGTCTAAAGA TGAACTCTTT
    AGCATTGCTC TTTACAACTG GTTAATACAA GCAGACCTCG CAGACAAGCT GCTGCAAATT
    GCTTCCCCAT TTCTGGAGCC ACATCTGGTC CGTATGGCCA AGATTGATCA AAACAAAGTC
    CGTTATATGG ATTTACTCTG GAGATACTTT GAGAAGAATA GGAGTTTTAG TAATGCTGCT
    CGAGTATTGG CTAAACTAGC TGATATGCAT AGCACTGAAA TTTCACTTCA GCAGCGTCTG
    GAATATATTG CTCGTGCCAT TCTTAGTGCT AAAAGTTCCA CGGCCATTTC ATCAATAGCT
    GCAGATGGTG AATTCCTTCA TGAACTTGAA GAAAAGATGG AAGTTGCTAG GATCCAACTT
    CAGATACAAG ATACATTACA AAGGCAGTAT TCCCATCATC CTTCTGTACA AGATGCAATT
    TCACAGCTAG ATTCTGAGCT AATGGACATA ACTAAGCTTT ATGGAGAATT TGCTGACCCA
    TTCAAACTTG CAGAATGTAA ACTTGCAATC ATTCATTGTG CTGGTTATTC AGATCCTATC
    TTGGTACAGA CACTTTGGCA AGATATAATA GAGAAGGAGT TGAATGACAG TGTGGCAATG
    AGCCCCTCAG ATAGAATGCA TGCTCTGAGT CTTAAAATTG TCCTGCTTGG CAAAATTTAT
    GCTGGCACAC CTCGATTTTT TCCTTTAGAT TTTATCGTAC AGTTCTTAGA ACAGCAAGTA
    TGTAACTTGA ACTGGGATGT AGGATTTGTG ATACAGACAA TGAATGAAAT AGGAGTGCCA
    CTGCCTAGAC TATTAGATGT ATATGATCAC TTGTTCAAAT CAAGGGATCC ATTCTGGACT
    AGGATAAAGA AGCCCTTACA CCTTTTGGAT TGCATACATG TATTATTGTC CAGATATGTT
    GAGAATCCCA ATCAAGTACC TCATTATGAG AGACGACGAT TCACAAATCT CTGCATGGAT
    GCTGTTTGTG GTTATCTTGT TGAACTCCAA TCTATGAGTT CAACACTAGC ATTACAAGCC
    AGTACGGGGA ATTTTAAATC TCTTCAGGCT AAATTAGAAC GACTTCACTG A

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

    RefSeq XP_007487502.1
    CDS666..4856
    Translation

    Target ORF information:

    RefSeq Version XM_007487440.2
    Organism Monodelphis domestica(gray short-tailed opossum)
    Definition Monodelphis domestica nucleoporin 155kDa (NUP155), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007487440.2

    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
    ATGCCATCCT CGCATGTGTC CCCGGCGCCC GCAGCGATCA CGCCTGCTGC AGTCGCGGCC 
    ATGCAGGAGG CTCTGGAGAA CGCTGGGAGG CTCATCGACC GCCAAGTGCA GGACGACCGC
    CTTTATCCCG ACCTGTCGGA GCTCCTCATG GTGCCAGCCC CAAATAACCC TACAGTTTCT
    GGCATATCAG ACATGGATTA TCCACTACAG GGACCTGGTT TACTCTCAGT ACCCAGTCTT
    CCAGAGATCA GCTCCATTCG ACGAGTTCCT CTTCCTCCTG AGCTTGTTGA ACAGTTTGGC
    CATATGCAGT GTAACTGCAT GATGGGGGTC TTCCCTGAAA TTGGGAGGGC ATGGCTTACT
    ATTGATAGTG ACATATTTAT GTGGAACTAT GAAGATGGTG GGGACCTTGC CTACTTTGAT
    GGACTTAGTG AAACTATTCT TGCTGTGGGT CTTGTGAAGC CAAAGGCTGG TATTTTTCAG
    CCTCATGTAA GACACCTCCT GGTTCTGGCT ACCCCTGTAG ATATAGTGAT TCTAGGACTC
    AGCTATGCTA ATTTTCAGCC AGGTGTTGGA GTCCTTAATG ACAGCATGTC TGGTGGAATG
    CAGTTACTTC CAGATCCTCT GTATTCACTA CCCACTGACA ATACTTATCT TTTGACAATA
    ACTTCCACGG ATAATGGTAG AATTTTCTTG GCTGGAAAGG ATGGCTGTTT ATATGAAGTA
    GCATACCAAG CAGAATCCGG CTGGTTTAGC CAGAGGTGCA GAAAGATAAA CCACTCAAAG
    AGTTCACTTT CTTTCCTTGT TCCATCATTG CTTCAATTCA CGTTCTCAGA AGATGATCCC
    ATTGTACAGA TTGCAATCGA CAATTCCAGG AACATCTTAT ACACCCGCTC AGAGAAAGGA
    GTGATACAGG TTTATGATTT GGGCCAAGAT GGAAAAGGAA TAAGCAGAGT TGCTTCCGTT
    TCACAGAATG CTATTGTTTC TGCTGCTGGA AACATTGCAA GGACCATAGA CCGTTCTGTT
    TTTAAGCCAA TTGTCCAAAT AGCAGTAATT GAAAACTCAG AATCCATAGA CTGTCAGTTA
    CTGGCTATCA CACATGCAGG TGTAAGATTA TATTTCAGCT CATGCCCATT TAGACAGCCA
    TTTGCAAGGC CCAATTCTCT GATACTAGTT CATGTCCGGT TACCTCCTGG ATTTTCAGCT
    TCTTCAACTG TGGAAAAGCC ATCAAAGGTG CATAGAGCTC TTTATAGCAA AGGTGTTCTA
    CTCATGGCAG CATCAGAAAA TGAAGATAAT GATATTTTGT GGTGTGTTAA TCATGACACT
    TTTCCATTCC AAAAGCCAAT GATGGAAACA CAGATGACAA CACGTGTTGA TGGTCATTCT
    TGGGCTCTCT CTGCAATAGA TGAGTTGAAA ATGGATAAGA TCATAACACC TTTAAATAAG
    GACCATATTC CAATAACAGA TTCACCAGTT GTTGTGCAAC AACATATGTT ACCCCCAAAG
    AAATTTGTCT TGCTTTCTGC TCAGGGAAGT CTTATGTTTC ACAAACTTAG ACCTGTGGAC
    CAACTGAGAC ATCTCCTAGT TAGTAATTTG GGGGGAGATG GAGAAGAGAT TGAAAGATTC
    TTCAAACTGC ATCAGGAGGA CCAGGCTTGT GCAACTTGCC TTATCCTGGC TTGCTCCACT
    GCTGCCTGTG ATAGAGAGGT ATCTGCTTGG GCAACTCGTG CGTTCTTCAG ATATGGTGGA
    GAGGCACAAA TGCGATTTCC AACAGCAATT CCTCCTCCAA GTAATGTTGG ACCCATTTTG
    GGGTCTCCCG TCTATCCTAG CTCCCCTGTG CCTGTTGGTA GTCCATATCC TAATCCATCC
    TTCTTGGGAA CACCACCTCC AGGATTGCAA TCTCCTGCCA TGTCAACACC AATGTATCTT
    ACTGGAAGCC AGTTGCCGCA GTCTGCCGCA AATATTACTT GTATGACTGG GCCAGAGATG
    GTGTATTCTG GCAAACACAA TGGTATCTGC ATCTATTTCT CTCGAATCAT GGGAAATATT
    TGGGATGCAA GTCTAGTTGT AGAGAGGGTA TTCAGGAGTG GCAGCAGGGA GATTATTACA
    ATTGAAAGTA GCGTACCACC TCAGCTGTTA GAGTCAGTGA TACAGGAACT AAAAGGTTTA
    CAAGAATTTC TGGACAGAAA TTCACAGTTT GCAGGAGGAC CCATTGGGAA TCCACATACT
    ACTGCTGCCA GAGTGCAACA AAGGCTGATT GGATTCATGC GTCCTGAAAA TGGAAGTTCT
    CAACAAATGC AACAGGAATT ACAGAGAAAG TTCCATGCAG AGGCTCAAGT GAGTGAAAAA
    ATTTCACTTC AGGGGATCCA ACAGTTGGTT CGCAAATCCT ACCAAGCTTT GGCTTTATGG
    AAACTCCTCT GTGAACATCA ATTCACTGTC ATTGTGGGAG AGCTTCAGAA GGAACTTCAA
    GAGCAATTGA AGATCACTAC TTTCAAAGAC CTGGTCATTA GAGACAAAGA ACTGACTGGA
    GCATTGATTG CCTCTCTTAT CAACTGTTAT ATCAGAGATA ATGCTGCAGT TGATGGTATC
    AGTTCACATT TACAAGACAT TTGCCCTCTT CTATACAGCA CAGATGATGC AATTTGTTCC
    AAGGCAAATG AGCTTCTTCA GCGCTCCCGG CAAGTTCAAA GCAAACCTGA AAAGGAAAGA
    ATGTTAAGGG AATCATTGAA GGAGTATCAG AAAATTAGTA ATCAAGTGGA CCTTTGCAAT
    GTTTGTGCTC AGTATAGACA AGTACGTTTT TATGAGGGTA TTGTGGAACT CTCTCTCACG
    GCTGCTGAGA AAAAAGATCC TCAAGGTCTT GGTCTCCATT TCTACAAACA TGGAGAGCCT
    GAAGATGATA CTGTGGGACT GCAGGCTTTC CAAGAAAGGT TGACTAGCTA TAAGTGCATC
    ACAGATACAC TTCAGGAACT TGTCAATCAG AGTAAAGCTG CTCCTCAGTC TCCAAGTGTG
    CCTAAAAAGC CAGGGCCTCC AGTTTTGTCA TCTGACCCCA ATATGTTGAG TAATGAAGAA
    GCAGGACATC ATTTTGAACA GATGCTAAAA TTGGCTCAGC GGTCTAAAGA TGAACTCTTT
    AGCATTGCTC TTTACAACTG GTTAATACAA GCAGACCTCG CAGACAAGCT GCTGCAAATT
    GCTTCCCCAT TTCTGGAGCC ACATCTGGTC CGTATGGCCA AGATTGATCA AAACAAAGTC
    CGTTATATGG ATTTACTCTG GAGATACTTT GAGAAGAATA GGAGTTTTAG TAATGCTGCT
    CGAGTATTGG CTAAACTAGC TGATATGCAT AGCACTGAAA TTTCACTTCA GCAGCGTCTG
    GAATATATTG CTCGTGCCAT TCTTAGTGCT AAAAGTTCCA CGGCCATTTC ATCAATAGCT
    GCAGATGGTG AATTCCTTCA TGAACTTGAA GAAAAGATGG AAGTTGCTAG GATCCAACTT
    CAGATACAAG ATACATTACA AAGGCAGTAT TCCCATCATC CTTCTGTACA AGATGCAATT
    TCACAGCTAG ATTCTGAGCT AATGGACATA ACTAAGCTTT ATGGAGAATT TGCTGACCCA
    TTCAAACTTG CAGAATGTAA ACTTGCAATC ATTCATTGTG CTGGTTATTC AGATCCTATC
    TTGGTACAGA CACTTTGGCA AGATATAATA GAGAAGGAGT TGAATGACAG TGTGGCAATG
    AGCCCCTCAG ATAGAATGCA TGCTCTGAGT CTTAAAATTG TCCTGCTTGG CAAAATTTAT
    GCTGGCACAC CTCGATTTTT TCCTTTAGAT TTTATCGTAC AGTTCTTAGA ACAGCAAGTA
    TGTAACTTGA ACTGGGATGT AGGATTTGTG ATACAGACAA TGAATGAAAT AGGAGTGCCA
    CTGCCTAGAC TATTAGATGT ATATGATCAC TTGTTCAAAT CAAGGGATCC ATTCTGGACT
    AGGATAAAGA AGCCCTTACA CCTTTTGGAT TGCATACATG TATTATTGTC CAGATATGTT
    GAGAATCCCA ATCAAGTACC TCATTATGAG AGACGACGAT TCACAAATCT CTGCATGGAT
    GCTGTTTGTG GTTATCTTGT TGAACTCCAA TCTATGAGTT CAACACTAGC ATTACAAGCC
    AGTACGGGGA ATTTTAAATC TCTTCAGGCT AAATTAGAAC GACTTCACTG A

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

    CloneID OMc15943
    Clone ID Related Accession (Same CDS sequence) XM_001372459.4
    Accession Version XM_001372459.4 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4188bp)
    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 1461600000000
    Organism Monodelphis domestica(gray short-tailed opossum)
    Product nuclear pore complex protein Nup155 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_008803.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Apr 27, 2016 this sequence version replaced XM_001372459.3. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Monodelphis domestica Annotation Release 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.0 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
    ATGCCATCCT CGCATGTGTC CCCGGCGCCC GCAGCGATCA CGCCTGCTGC AGTCGCGGCC 
    ATGCAGGAGG CTCTGGAGAA CGCTGGGAGG CTCATCGACC GCCAAGTGCA GGACGACCGC
    CTTTATCCCG ACCTGTCGGA GCTCCTCATG GTGCCAGCCC CAAATAACCC TACAGTTTCT
    GGCATATCAG ACATGGATTA TCCACTACAG GGACCTGGTT TACTCTCAGT ACCCAGTCTT
    CCAGAGATCA GCTCCATTCG ACGAGTTCCT CTTCCTCCTG AGCTTGTTGA ACAGTTTGGC
    CATATGCAGT GTAACTGCAT GATGGGGGTC TTCCCTGAAA TTGGGAGGGC ATGGCTTACT
    ATTGATAGTG ACATATTTAT GTGGAACTAT GAAGATGGTG GGGACCTTGC CTACTTTGAT
    GGACTTAGTG AAACTATTCT TGCTGTGGGT CTTGTGAAGC CAAAGGCTGG TATTTTTCAG
    CCTCATGTAA GACACCTCCT GGTTCTGGCT ACCCCTGTAG ATATAGTGAT TCTAGGACTC
    AGCTATGCTA ATTTTCAGCC AGGTGTTGGA GTCCTTAATG ACAGCATGTC TGGTGGAATG
    CAGTTACTTC CAGATCCTCT GTATTCACTA CCCACTGACA ATACTTATCT TTTGACAATA
    ACTTCCACGG ATAATGGTAG AATTTTCTTG GCTGGAAAGG ATGGCTGTTT ATATGAAGTA
    GCATACCAAG CAGAATCCGG CTGGTTTAGC CAGAGGTGCA GAAAGATAAA CCACTCAAAG
    AGTTCACTTT CTTTCCTTGT TCCATCATTG CTTCAATTCA CGTTCTCAGA AGATGATCCC
    ATTGTACAGA TTGCAATCGA CAATTCCAGG AACATCTTAT ACACCCGCTC AGAGAAAGGA
    GTGATACAGG TTTATGATTT GGGCCAAGAT GGAAAAGGAA TAAGCAGAGT TGCTTCCGTT
    TCACAGAATG CTATTGTTTC TGCTGCTGGA AACATTGCAA GGACCATAGA CCGTTCTGTT
    TTTAAGCCAA TTGTCCAAAT AGCAGTAATT GAAAACTCAG AATCCATAGA CTGTCAGTTA
    CTGGCTATCA CACATGCAGG TGTAAGATTA TATTTCAGCT CATGCCCATT TAGACAGCCA
    TTTGCAAGGC CCAATTCTCT GATACTAGTT CATGTCCGGT TACCTCCTGG ATTTTCAGCT
    TCTTCAACTG TGGAAAAGCC ATCAAAGGTG CATAGAGCTC TTTATAGCAA AGGTGTTCTA
    CTCATGGCAG CATCAGAAAA TGAAGATAAT GATATTTTGT GGTGTGTTAA TCATGACACT
    TTTCCATTCC AAAAGCCAAT GATGGAAACA CAGATGACAA CACGTGTTGA TGGTCATTCT
    TGGGCTCTCT CTGCAATAGA TGAGTTGAAA ATGGATAAGA TCATAACACC TTTAAATAAG
    GACCATATTC CAATAACAGA TTCACCAGTT GTTGTGCAAC AACATATGTT ACCCCCAAAG
    AAATTTGTCT TGCTTTCTGC TCAGGGAAGT CTTATGTTTC ACAAACTTAG ACCTGTGGAC
    CAACTGAGAC ATCTCCTAGT TAGTAATTTG GGGGGAGATG GAGAAGAGAT TGAAAGATTC
    TTCAAACTGC ATCAGGAGGA CCAGGCTTGT GCAACTTGCC TTATCCTGGC TTGCTCCACT
    GCTGCCTGTG ATAGAGAGGT ATCTGCTTGG GCAACTCGTG CGTTCTTCAG ATATGGTGGA
    GAGGCACAAA TGCGATTTCC AACAGCAATT CCTCCTCCAA GTAATGTTGG ACCCATTTTG
    GGGTCTCCCG TCTATCCTAG CTCCCCTGTG CCTGTTGGTA GTCCATATCC TAATCCATCC
    TTCTTGGGAA CACCACCTCC AGGATTGCAA TCTCCTGCCA TGTCAACACC AATGTATCTT
    ACTGGAAGCC AGTTGCCGCA GTCTGCCGCA AATATTACTT GTATGACTGG GCCAGAGATG
    GTGTATTCTG GCAAACACAA TGGTATCTGC ATCTATTTCT CTCGAATCAT GGGAAATATT
    TGGGATGCAA GTCTAGTTGT AGAGAGGGTA TTCAGGAGTG GCAGCAGGGA GATTATTACA
    ATTGAAAGTA GCGTACCACC TCAGCTGTTA GAGTCAGTGA TACAGGAACT AAAAGGTTTA
    CAAGAATTTC TGGACAGAAA TTCACAGTTT GCAGGAGGAC CCATTGGGAA TCCACATACT
    ACTGCTGCCA GAGTGCAACA AAGGCTGATT GGATTCATGC GTCCTGAAAA TGGAAGTTCT
    CAACAAATGC AACAGGAATT ACAGAGAAAG TTCCATGAGG CTCAAGTGAG TGAAAAAATT
    TCACTTCAGG GGATCCAACA GTTGGTTCGC AAATCCTACC AAGCTTTGGC TTTATGGAAA
    CTCCTCTGTG AACATCAATT CACTGTCATT GTGGGAGAGC TTCAGAAGGA ACTTCAAGAG
    CAATTGAAGA TCACTACTTT CAAAGACCTG GTCATTAGAG ACAAAGAACT GACTGGAGCA
    TTGATTGCCT CTCTTATCAA CTGTTATATC AGAGATAATG CTGCAGTTGA TGGTATCAGT
    TCACATTTAC AAGACATTTG CCCTCTTCTA TACAGCACAG ATGATGCAAT TTGTTCCAAG
    GCAAATGAGC TTCTTCAGCG CTCCCGGCAA GTTCAAAGCA AACCTGAAAA GGAAAGAATG
    TTAAGGGAAT CATTGAAGGA GTATCAGAAA ATTAGTAATC AAGTGGACCT TTGCAATGTT
    TGTGCTCAGT ATAGACAAGT ACGTTTTTAT GAGGGTATTG TGGAACTCTC TCTCACGGCT
    GCTGAGAAAA AAGATCCTCA AGGTCTTGGT CTCCATTTCT ACAAACATGG AGAGCCTGAA
    GATGATACTG TGGGACTGCA GGCTTTCCAA GAAAGGTTGA CTAGCTATAA GTGCATCACA
    GATACACTTC AGGAACTTGT CAATCAGAGT AAAGCTGCTC CTCAGTCTCC AAGTGTGCCT
    AAAAAGCCAG GGCCTCCAGT TTTGTCATCT GACCCCAATA TGTTGAGTAA TGAAGAAGCA
    GGACATCATT TTGAACAGAT GCTAAAATTG GCTCAGCGGT CTAAAGATGA ACTCTTTAGC
    ATTGCTCTTT ACAACTGGTT AATACAAGCA GACCTCGCAG ACAAGCTGCT GCAAATTGCT
    TCCCCATTTC TGGAGCCACA TCTGGTCCGT ATGGCCAAGA TTGATCAAAA CAAAGTCCGT
    TATATGGATT TACTCTGGAG ATACTTTGAG AAGAATAGGA GTTTTAGTAA TGCTGCTCGA
    GTATTGGCTA AACTAGCTGA TATGCATAGC ACTGAAATTT CACTTCAGCA GCGTCTGGAA
    TATATTGCTC GTGCCATTCT TAGTGCTAAA AGTTCCACGG CCATTTCATC AATAGCTGCA
    GATGGTGAAT TCCTTCATGA ACTTGAAGAA AAGATGGAAG TTGCTAGGAT CCAACTTCAG
    ATACAAGATA CATTACAAAG GCAGTATTCC CATCATCCTT CTGTACAAGA TGCAATTTCA
    CAGCTAGATT CTGAGCTAAT GGACATAACT AAGCTTTATG GAGAATTTGC TGACCCATTC
    AAACTTGCAG AATGTAAACT TGCAATCATT CATTGTGCTG GTTATTCAGA TCCTATCTTG
    GTACAGACAC TTTGGCAAGA TATAATAGAG AAGGAGTTGA ATGACAGTGT GGCAATGAGC
    CCCTCAGATA GAATGCATGC TCTGAGTCTT AAAATTGTCC TGCTTGGCAA AATTTATGCT
    GGCACACCTC GATTTTTTCC TTTAGATTTT ATCGTACAGT TCTTAGAACA GCAAGTATGT
    AACTTGAACT GGGATGTAGG ATTTGTGATA CAGACAATGA ATGAAATAGG AGTGCCACTG
    CCTAGACTAT TAGATGTATA TGATCACTTG TTCAAATCAA GGGATCCATT CTGGACTAGG
    ATAAAGAAGC CCTTACACCT TTTGGATTGC ATACATGTAT TATTGTCCAG ATATGTTGAG
    AATCCCAATC AAGTACCTCA TTATGAGAGA CGACGATTCA CAAATCTCTG CATGGATGCT
    GTTTGTGGTT ATCTTGTTGA ACTCCAATCT ATGAGTTCAA CACTAGCATT ACAAGCCAGT
    ACGGGGAATT TTAAATCTCT TCAGGCTAAA TTAGAACGAC TTCACTGA

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

    RefSeq XP_001372496.2
    CDS666..4853
    Translation

    Target ORF information:

    RefSeq Version XM_001372459.4
    Organism Monodelphis domestica(gray short-tailed opossum)
    Definition Monodelphis domestica nucleoporin 155kDa (NUP155), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001372459.4

    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
    ATGCCATCCT CGCATGTGTC CCCGGCGCCC GCAGCGATCA CGCCTGCTGC AGTCGCGGCC 
    ATGCAGGAGG CTCTGGAGAA CGCTGGGAGG CTCATCGACC GCCAAGTGCA GGACGACCGC
    CTTTATCCCG ACCTGTCGGA GCTCCTCATG GTGCCAGCCC CAAATAACCC TACAGTTTCT
    GGCATATCAG ACATGGATTA TCCACTACAG GGACCTGGTT TACTCTCAGT ACCCAGTCTT
    CCAGAGATCA GCTCCATTCG ACGAGTTCCT CTTCCTCCTG AGCTTGTTGA ACAGTTTGGC
    CATATGCAGT GTAACTGCAT GATGGGGGTC TTCCCTGAAA TTGGGAGGGC ATGGCTTACT
    ATTGATAGTG ACATATTTAT GTGGAACTAT GAAGATGGTG GGGACCTTGC CTACTTTGAT
    GGACTTAGTG AAACTATTCT TGCTGTGGGT CTTGTGAAGC CAAAGGCTGG TATTTTTCAG
    CCTCATGTAA GACACCTCCT GGTTCTGGCT ACCCCTGTAG ATATAGTGAT TCTAGGACTC
    AGCTATGCTA ATTTTCAGCC AGGTGTTGGA GTCCTTAATG ACAGCATGTC TGGTGGAATG
    CAGTTACTTC CAGATCCTCT GTATTCACTA CCCACTGACA ATACTTATCT TTTGACAATA
    ACTTCCACGG ATAATGGTAG AATTTTCTTG GCTGGAAAGG ATGGCTGTTT ATATGAAGTA
    GCATACCAAG CAGAATCCGG CTGGTTTAGC CAGAGGTGCA GAAAGATAAA CCACTCAAAG
    AGTTCACTTT CTTTCCTTGT TCCATCATTG CTTCAATTCA CGTTCTCAGA AGATGATCCC
    ATTGTACAGA TTGCAATCGA CAATTCCAGG AACATCTTAT ACACCCGCTC AGAGAAAGGA
    GTGATACAGG TTTATGATTT GGGCCAAGAT GGAAAAGGAA TAAGCAGAGT TGCTTCCGTT
    TCACAGAATG CTATTGTTTC TGCTGCTGGA AACATTGCAA GGACCATAGA CCGTTCTGTT
    TTTAAGCCAA TTGTCCAAAT AGCAGTAATT GAAAACTCAG AATCCATAGA CTGTCAGTTA
    CTGGCTATCA CACATGCAGG TGTAAGATTA TATTTCAGCT CATGCCCATT TAGACAGCCA
    TTTGCAAGGC CCAATTCTCT GATACTAGTT CATGTCCGGT TACCTCCTGG ATTTTCAGCT
    TCTTCAACTG TGGAAAAGCC ATCAAAGGTG CATAGAGCTC TTTATAGCAA AGGTGTTCTA
    CTCATGGCAG CATCAGAAAA TGAAGATAAT GATATTTTGT GGTGTGTTAA TCATGACACT
    TTTCCATTCC AAAAGCCAAT GATGGAAACA CAGATGACAA CACGTGTTGA TGGTCATTCT
    TGGGCTCTCT CTGCAATAGA TGAGTTGAAA ATGGATAAGA TCATAACACC TTTAAATAAG
    GACCATATTC CAATAACAGA TTCACCAGTT GTTGTGCAAC AACATATGTT ACCCCCAAAG
    AAATTTGTCT TGCTTTCTGC TCAGGGAAGT CTTATGTTTC ACAAACTTAG ACCTGTGGAC
    CAACTGAGAC ATCTCCTAGT TAGTAATTTG GGGGGAGATG GAGAAGAGAT TGAAAGATTC
    TTCAAACTGC ATCAGGAGGA CCAGGCTTGT GCAACTTGCC TTATCCTGGC TTGCTCCACT
    GCTGCCTGTG ATAGAGAGGT ATCTGCTTGG GCAACTCGTG CGTTCTTCAG ATATGGTGGA
    GAGGCACAAA TGCGATTTCC AACAGCAATT CCTCCTCCAA GTAATGTTGG ACCCATTTTG
    GGGTCTCCCG TCTATCCTAG CTCCCCTGTG CCTGTTGGTA GTCCATATCC TAATCCATCC
    TTCTTGGGAA CACCACCTCC AGGATTGCAA TCTCCTGCCA TGTCAACACC AATGTATCTT
    ACTGGAAGCC AGTTGCCGCA GTCTGCCGCA AATATTACTT GTATGACTGG GCCAGAGATG
    GTGTATTCTG GCAAACACAA TGGTATCTGC ATCTATTTCT CTCGAATCAT GGGAAATATT
    TGGGATGCAA GTCTAGTTGT AGAGAGGGTA TTCAGGAGTG GCAGCAGGGA GATTATTACA
    ATTGAAAGTA GCGTACCACC TCAGCTGTTA GAGTCAGTGA TACAGGAACT AAAAGGTTTA
    CAAGAATTTC TGGACAGAAA TTCACAGTTT GCAGGAGGAC CCATTGGGAA TCCACATACT
    ACTGCTGCCA GAGTGCAACA AAGGCTGATT GGATTCATGC GTCCTGAAAA TGGAAGTTCT
    CAACAAATGC AACAGGAATT ACAGAGAAAG TTCCATGAGG CTCAAGTGAG TGAAAAAATT
    TCACTTCAGG GGATCCAACA GTTGGTTCGC AAATCCTACC AAGCTTTGGC TTTATGGAAA
    CTCCTCTGTG AACATCAATT CACTGTCATT GTGGGAGAGC TTCAGAAGGA ACTTCAAGAG
    CAATTGAAGA TCACTACTTT CAAAGACCTG GTCATTAGAG ACAAAGAACT GACTGGAGCA
    TTGATTGCCT CTCTTATCAA CTGTTATATC AGAGATAATG CTGCAGTTGA TGGTATCAGT
    TCACATTTAC AAGACATTTG CCCTCTTCTA TACAGCACAG ATGATGCAAT TTGTTCCAAG
    GCAAATGAGC TTCTTCAGCG CTCCCGGCAA GTTCAAAGCA AACCTGAAAA GGAAAGAATG
    TTAAGGGAAT CATTGAAGGA GTATCAGAAA ATTAGTAATC AAGTGGACCT TTGCAATGTT
    TGTGCTCAGT ATAGACAAGT ACGTTTTTAT GAGGGTATTG TGGAACTCTC TCTCACGGCT
    GCTGAGAAAA AAGATCCTCA AGGTCTTGGT CTCCATTTCT ACAAACATGG AGAGCCTGAA
    GATGATACTG TGGGACTGCA GGCTTTCCAA GAAAGGTTGA CTAGCTATAA GTGCATCACA
    GATACACTTC AGGAACTTGT CAATCAGAGT AAAGCTGCTC CTCAGTCTCC AAGTGTGCCT
    AAAAAGCCAG GGCCTCCAGT TTTGTCATCT GACCCCAATA TGTTGAGTAA TGAAGAAGCA
    GGACATCATT TTGAACAGAT GCTAAAATTG GCTCAGCGGT CTAAAGATGA ACTCTTTAGC
    ATTGCTCTTT ACAACTGGTT AATACAAGCA GACCTCGCAG ACAAGCTGCT GCAAATTGCT
    TCCCCATTTC TGGAGCCACA TCTGGTCCGT ATGGCCAAGA TTGATCAAAA CAAAGTCCGT
    TATATGGATT TACTCTGGAG ATACTTTGAG AAGAATAGGA GTTTTAGTAA TGCTGCTCGA
    GTATTGGCTA AACTAGCTGA TATGCATAGC ACTGAAATTT CACTTCAGCA GCGTCTGGAA
    TATATTGCTC GTGCCATTCT TAGTGCTAAA AGTTCCACGG CCATTTCATC AATAGCTGCA
    GATGGTGAAT TCCTTCATGA ACTTGAAGAA AAGATGGAAG TTGCTAGGAT CCAACTTCAG
    ATACAAGATA CATTACAAAG GCAGTATTCC CATCATCCTT CTGTACAAGA TGCAATTTCA
    CAGCTAGATT CTGAGCTAAT GGACATAACT AAGCTTTATG GAGAATTTGC TGACCCATTC
    AAACTTGCAG AATGTAAACT TGCAATCATT CATTGTGCTG GTTATTCAGA TCCTATCTTG
    GTACAGACAC TTTGGCAAGA TATAATAGAG AAGGAGTTGA ATGACAGTGT GGCAATGAGC
    CCCTCAGATA GAATGCATGC TCTGAGTCTT AAAATTGTCC TGCTTGGCAA AATTTATGCT
    GGCACACCTC GATTTTTTCC TTTAGATTTT ATCGTACAGT TCTTAGAACA GCAAGTATGT
    AACTTGAACT GGGATGTAGG ATTTGTGATA CAGACAATGA ATGAAATAGG AGTGCCACTG
    CCTAGACTAT TAGATGTATA TGATCACTTG TTCAAATCAA GGGATCCATT CTGGACTAGG
    ATAAAGAAGC CCTTACACCT TTTGGATTGC ATACATGTAT TATTGTCCAG ATATGTTGAG
    AATCCCAATC AAGTACCTCA TTATGAGAGA CGACGATTCA CAAATCTCTG CATGGATGCT
    GTTTGTGGTT ATCTTGTTGA ACTCCAATCT ATGAGTTCAA CACTAGCATT ACAAGCCAGT
    ACGGGGAATT TTAAATCTCT TCAGGCTAAA TTAGAACGAC TTCACTGA

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