Cpsf1 cDNA ORF clone, Rattus norvegicus(Norway rat)

The following Cpsf1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Cpsf1 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
ORa02396 NM_001130571.1
Latest version!
Rattus norvegicus cleavage and polyadenylation specific factor 1 (Cpsf1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $727.30
$1039.00
ORa30491 XM_006241853.3
Latest version!
Rattus norvegicus cleavage and polyadenylation specific factor 1 (Cpsf1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $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 ORa02396
    Clone ID Related Accession (Same CDS sequence) NM_001130571.1
    Accession Version NM_001130571.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4161bp)
    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 2018-10-06
    Organism Rattus norvegicus(Norway rat)
    Product cleavage and polyadenylation specificity factor subunit 1
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from CH473950.2. On or before Jul 28, 2008 this sequence version replaced XM_345849.3, XM_001075234.1. ##Evidence-Data-START## RNAseq introns :: mixed/partial sample support SAMD00052296, SAMD00052297 [ECO:0000350] ##Evidence-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
    ATGTACGCGG TGTACAAGCA GGCGCACCCG CCCACCGGGC TCGAGTTTGC CATGTACTGC 
    AACTTCTTCA ACAACAGTGA GCGCAACCTC GTGGTGGCCG GCACCTCGCA GCTCTATGTG
    TACCGCCTGA ACCGCGACGC TGAGGCTCTG ACCAAGAATG ATGGGAGCAC AGAGGGAAAG
    GCCCATCGAG AGAAACTAGA GCTGGTAGCC TCCTTCTCTT TTTTTGGCAA TGTCATGTCC
    ATGGCCAGCG TGCAGCTCGC AGGTGCCAAA CGCGATGCTT TGCTTCTCAG CTTCAAAGAC
    GCTAAGCTGT CTGTGGTGGA GTACGACCCA GGCACTCATG ACCTGAAGAC CCTGTCTCTG
    CACTACTTTG AGGAGCCTGA ACTTCGGGAT GGATTTGTGC AGAACGTGCA TACGCCCCGT
    GTGCGGGTGG ACCCTGACGG GCGCTGTGCG GCAATGCTCA TCTATGGCAC AAGACTGGTA
    GTTCTGCCTT TCCGCAGAGA GAGCCTGGCT GAGGAGCATG AAGGGCTCAT GGGTGAGGGG
    CAGAGGTCCA GCTTCCTGCC CAGCTACATC ATCGATGTGC GGGCTCTGGA TGAGAAGCTG
    CTCAACATCA TTGACCTGCA GTTCCTACAC GGCTACTATG AGCCCACCCT GCTTATCCTG
    TTTGAGCCCA ACCAGACCTG GCCAGGGCGG GTGGCTGTGA GGCAGGACAC GTGCTCCATT
    GTGGCTATCT CGCTGAACAT CACACAGAAA GTCCATCCAG TCATCTGGTC CCTCACCAGC
    TTGCCTTTTG ACTGTACCCA GGCCCTGGCT GTGCCCAAGC CCATAGGTGG GGTAGTGATC
    TTCGCTGTCA ACTCCCTGTT GTACCTGAAC CAGAGTGTTC CCCCATATGG CGTGGCTCTC
    AACAGCCTTA CCACGGGCAC CACTGCTTTT CCATTACGTA CCCAAGAAGG TGTAAGGATC
    ACCCTGGACT GTGCACAGGC GGCCTTCATC TCTTATGACA AGATGGTCAT CTCCCTCAAG
    GGTGGTGAGA TTTATGTGCT GACCCTCATC ACTGACGGCA TGCGAAGTGT CCGAGCATTT
    CACTTTGACA AGGCAGCTGC TAGTGTCCTC ACCACCAGCA TGGTCACAAT GGAGCCTGGA
    TACCTGTTCC TAGGCTCTCG CCTGGGCAAT TCCCTCCTCC TCAAGTACAC GGAGAAGCTG
    CAGGAACCCC CAGCCAGCTC TGTTCGTGAG GCTGCTGACA AGGAAGAACC TCCCTCAAAG
    AAGAAGCGAG TGGACCCTAC AGTGGGCTGG ACAGGAGGCA AGACACAGGA TGAGGTGGAT
    GAAATTGAAG TTTATGGCAG TGAGGCCCAG TCAGGCACAC AGTTAGCTAC TTACTCTTTT
    GAGGTATGTG ATAGCATGCT CAACATTGGA CCCTGTGCCA ATGCTGCTGT GGGCGAGCCT
    GCCTTCCTCT CCGAAGAGAA CAGCCCTGAG CCAGACCTGG AGATTGTGGT TTGTTCCGGC
    TACGGGAAAA ACGGGGCCCT GTCTGTGTTG CAGAAGAGTA TCCGGCCCCA GGTGGTGACA
    ACCTTTGAAC TTCCTGGATG CTATGATATG TGGACAGTCA TTGCTCCTGT GCGGAAAGAG
    GAGGAAGAAA CACCCAAAGC AGAGAGCACA GAGCAGGAAC CTAGTGCCCC TAAAGCAGAG
    GAGGATGGGC GAAGACATGG ATTCCTTATT CTTAGCCGAG AAGACTCAAC CATGATCCTA
    CAGACTGGCC AGGAGATCAT GGAGCTGGAC ACCAGTGGCT TTGCCACACA GGGTCCTACT
    GTCTTTGCTG GAAACATTGG GGACAATCGT TATATTGTCC AAGTCTCGCC ATTGGGCATT
    CGCCTGTTGG AAGGTGTGAA TCAGCTGCAC TTCATCCCTG TGGACCTGGG CGCCCCCATC
    GTGCAGTGTG CTGTGGCTGA TCCCTATGTG GTCATCATGA GTGCTGAGGG ACACGTTACC
    ATGTTCCTAC TCAAGAGCGA TTCCTATGGT GGCCGCCACC ACCGGCTGGC ACTACACAAG
    CCTCCACTAC ATCATCAGTC TAAGGTGATT GCGCTCTGCC TGTACCGAGA TGTCAGTGGC
    ATGTTCACCA CTGAGAGCCG CCTGGGTGGG GCCCGTGATG AACTGGGTGG CCGAAGTGGC
    TCAGAGGCTG AAGGCCTGGG CTCAGAAACA AGCCCCACAG TGGACGATGA GGAAGAGATG
    CTATATGGGG ACTCCAGTTC CCTCTTCAGT CCCAGCAAAG AGGAGGCCCG AAGGAGCAAC
    CAGCCACCAG CTGATCGTGA CCCTGCACCC TTCAGGGCTG ACCCCACTCA CTGGTGCCTG
    CTGGTGCGGG AGAATGGCAC CATGGAGATC TACCAGCTCC CAGACTGGCG GCTGGTATTC
    CTAGTTAAGA ACTTCCCTGT GGGACAGCGG GTTCTGGTGG ATAGTTCATT TGGACAGCCC
    ACTACACAAG GTGAAGTCCG AAAGGAGGAG GCCACACGCC AGGGGGAGCT GCCTTTGGTC
    AAGGAGGTGT TATTGGTTGC TCTGGGAAGC CGGCAGAGCA GGCCCTACCT GCTGGTACAT
    GTGGACCAGG AGTTGCTTAT CTATGAAGCC TTTCCCCATG ACTCTCAGCT TGGCCAGGGA
    AACCTTAAAG TCCGTTTCAA GAAGGTCCCC CACAACATCA ACTTCCGTGA AAAGAAGCCA
    AAGCCATCCA AGAAGAAGGC AGAAGGTTGC AGCACTGAGG AGGGATCTGG AGTCCGGGGC
    CGTGTGGCAC GTTTCCGCTA CTTTGAGGAC ATTTATGGCT ATTCGGGGGT CTTTATCTGT
    GGACCCTCAC CTCACTGGCT CCTGGTAACT GGCCGTGGGG CTCTGCGTCT GCACCCCATG
    GGCATTGATG GCCCCATCGA CTCCTTTGCT CCATTCCACA ACGTGAACTG CCCCCGTGGT
    TTCCTGTACT TCAACAGACA GGGAGAGCTG AGGATCAGTG TCCTGCCTGC CTACCTGTCC
    TATGATGCCC CATGGCCGGT CAGGAAGATT CCACTCCGAT GCACAGCCCA CTATGTAGCC
    TACCACGTGG AATCCAAGGT ATATGCTGTG GCCACCAGCA CCAACACACC TTGCACTAGA
    ATCCCACGCA TGACTGGTGA GGAGAAAGAA TTTGAGGCCA TTGAGAGAGA TGACAGATAC
    ATCCACCCCC AGCAGGAAGC CTTCTCCATC CAGCTCATCT CCCCAGTCAG CTGGGAGGCC
    ATCCCCAATG CCAGGATCGA GCTAGAGGAA TGGGAGCATG TCACGTGCAT GAAGACAGTG
    TCACTGCGCA GTGAGGAGAC CGTGTCAGGC CTAAAGGGCT ATGTGGCTGC TGGGACCTGC
    CTCATGCAGG GGGAGGAGGT CACGTGCCGT GGGCGGATCT TCCTGTGGAG CCTGCGGGCT
    AGCGAGCTGA CTGGCATGGC CTTCATCGAC ACCCAGCTGT ACATCCACCA GATGATCAGC
    GTCAAGAACT TCATCCTGGC AGCAGACGTC ATGAAGAGCA TCTCACTGCT GCGCTACCAG
    GAGGAGAGCA AAACGCTCAG CCTGGTGTCC CGGGATGCCA AGCCTTTGGA GGTATACAGC
    GTGGACTTCA TGGTGGACAA TGCCCAGCTG GGCTTCTTGG TGTCTGACCG AGACCGCAAT
    CTTATGGTGT ATATGTATCT GCCAGAAGCC AAAGAGAGTT TTGGGGGCAT GCGCCTGCTG
    CGCCGAGCAG ACTTCCATGT GGGTGCCCAC GTGAACACGT TCTGGAGGAC CCCATGCCGA
    GGTGCTGCTG AGGGGCCCAG CAAGAAGTCG GTCATGTGGG AAAACAAGCA TATCACATGG
    TTTGCAACCC TTGATGGTGG CATTGGGCTC CTGCTGCCCA TGCAAGAGAA GACATACAGA
    CGACTGCTGA TGCTGCAGAA TGCACTGACC ACCATGCTAC CCCACCACGC TGGCCTCAAC
    CCCCGAGCCT TCCGAATGCT GCATGTAGAC CGGCGCATCC TGCAGAATGC TGTACGCAAC
    GTCCTCGATG GAGAACTGCT GAACCGTTAC CTATACCTCA GCACCATGGA GCGCAGTGAG
    CTGGCCAAGA AGATAGGCAC CACACCTGAC ATCATCCTGG ACGACTTGCT GGAGACAGAC
    CGCGTCACGG CTCACTTCTA A

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

    RefSeq NP_001124043.1
    CDS134..4294
    Translation

    Target ORF information:

    RefSeq Version NM_001130571.1
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus cleavage and polyadenylation specific factor 1 (Cpsf1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001130571.1

    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
    ATGTACGCGG TGTACAAGCA GGCGCACCCG CCCACCGGGC TCGAGTTTGC CATGTACTGC 
    AACTTCTTCA ACAACAGTGA GCGCAACCTC GTGGTGGCCG GCACCTCGCA GCTCTATGTG
    TACCGCCTGA ACCGCGACGC TGAGGCTCTG ACCAAGAATG ATGGGAGCAC AGAGGGAAAG
    GCCCATCGAG AGAAACTAGA GCTGGTAGCC TCCTTCTCTT TTTTTGGCAA TGTCATGTCC
    ATGGCCAGCG TGCAGCTCGC AGGTGCCAAA CGCGATGCTT TGCTTCTCAG CTTCAAAGAC
    GCTAAGCTGT CTGTGGTGGA GTACGACCCA GGCACTCATG ACCTGAAGAC CCTGTCTCTG
    CACTACTTTG AGGAGCCTGA ACTTCGGGAT GGATTTGTGC AGAACGTGCA TACGCCCCGT
    GTGCGGGTGG ACCCTGACGG GCGCTGTGCG GCAATGCTCA TCTATGGCAC AAGACTGGTA
    GTTCTGCCTT TCCGCAGAGA GAGCCTGGCT GAGGAGCATG AAGGGCTCAT GGGTGAGGGG
    CAGAGGTCCA GCTTCCTGCC CAGCTACATC ATCGATGTGC GGGCTCTGGA TGAGAAGCTG
    CTCAACATCA TTGACCTGCA GTTCCTACAC GGCTACTATG AGCCCACCCT GCTTATCCTG
    TTTGAGCCCA ACCAGACCTG GCCAGGGCGG GTGGCTGTGA GGCAGGACAC GTGCTCCATT
    GTGGCTATCT CGCTGAACAT CACACAGAAA GTCCATCCAG TCATCTGGTC CCTCACCAGC
    TTGCCTTTTG ACTGTACCCA GGCCCTGGCT GTGCCCAAGC CCATAGGTGG GGTAGTGATC
    TTCGCTGTCA ACTCCCTGTT GTACCTGAAC CAGAGTGTTC CCCCATATGG CGTGGCTCTC
    AACAGCCTTA CCACGGGCAC CACTGCTTTT CCATTACGTA CCCAAGAAGG TGTAAGGATC
    ACCCTGGACT GTGCACAGGC GGCCTTCATC TCTTATGACA AGATGGTCAT CTCCCTCAAG
    GGTGGTGAGA TTTATGTGCT GACCCTCATC ACTGACGGCA TGCGAAGTGT CCGAGCATTT
    CACTTTGACA AGGCAGCTGC TAGTGTCCTC ACCACCAGCA TGGTCACAAT GGAGCCTGGA
    TACCTGTTCC TAGGCTCTCG CCTGGGCAAT TCCCTCCTCC TCAAGTACAC GGAGAAGCTG
    CAGGAACCCC CAGCCAGCTC TGTTCGTGAG GCTGCTGACA AGGAAGAACC TCCCTCAAAG
    AAGAAGCGAG TGGACCCTAC AGTGGGCTGG ACAGGAGGCA AGACACAGGA TGAGGTGGAT
    GAAATTGAAG TTTATGGCAG TGAGGCCCAG TCAGGCACAC AGTTAGCTAC TTACTCTTTT
    GAGGTATGTG ATAGCATGCT CAACATTGGA CCCTGTGCCA ATGCTGCTGT GGGCGAGCCT
    GCCTTCCTCT CCGAAGAGAA CAGCCCTGAG CCAGACCTGG AGATTGTGGT TTGTTCCGGC
    TACGGGAAAA ACGGGGCCCT GTCTGTGTTG CAGAAGAGTA TCCGGCCCCA GGTGGTGACA
    ACCTTTGAAC TTCCTGGATG CTATGATATG TGGACAGTCA TTGCTCCTGT GCGGAAAGAG
    GAGGAAGAAA CACCCAAAGC AGAGAGCACA GAGCAGGAAC CTAGTGCCCC TAAAGCAGAG
    GAGGATGGGC GAAGACATGG ATTCCTTATT CTTAGCCGAG AAGACTCAAC CATGATCCTA
    CAGACTGGCC AGGAGATCAT GGAGCTGGAC ACCAGTGGCT TTGCCACACA GGGTCCTACT
    GTCTTTGCTG GAAACATTGG GGACAATCGT TATATTGTCC AAGTCTCGCC ATTGGGCATT
    CGCCTGTTGG AAGGTGTGAA TCAGCTGCAC TTCATCCCTG TGGACCTGGG CGCCCCCATC
    GTGCAGTGTG CTGTGGCTGA TCCCTATGTG GTCATCATGA GTGCTGAGGG ACACGTTACC
    ATGTTCCTAC TCAAGAGCGA TTCCTATGGT GGCCGCCACC ACCGGCTGGC ACTACACAAG
    CCTCCACTAC ATCATCAGTC TAAGGTGATT GCGCTCTGCC TGTACCGAGA TGTCAGTGGC
    ATGTTCACCA CTGAGAGCCG CCTGGGTGGG GCCCGTGATG AACTGGGTGG CCGAAGTGGC
    TCAGAGGCTG AAGGCCTGGG CTCAGAAACA AGCCCCACAG TGGACGATGA GGAAGAGATG
    CTATATGGGG ACTCCAGTTC CCTCTTCAGT CCCAGCAAAG AGGAGGCCCG AAGGAGCAAC
    CAGCCACCAG CTGATCGTGA CCCTGCACCC TTCAGGGCTG ACCCCACTCA CTGGTGCCTG
    CTGGTGCGGG AGAATGGCAC CATGGAGATC TACCAGCTCC CAGACTGGCG GCTGGTATTC
    CTAGTTAAGA ACTTCCCTGT GGGACAGCGG GTTCTGGTGG ATAGTTCATT TGGACAGCCC
    ACTACACAAG GTGAAGTCCG AAAGGAGGAG GCCACACGCC AGGGGGAGCT GCCTTTGGTC
    AAGGAGGTGT TATTGGTTGC TCTGGGAAGC CGGCAGAGCA GGCCCTACCT GCTGGTACAT
    GTGGACCAGG AGTTGCTTAT CTATGAAGCC TTTCCCCATG ACTCTCAGCT TGGCCAGGGA
    AACCTTAAAG TCCGTTTCAA GAAGGTCCCC CACAACATCA ACTTCCGTGA AAAGAAGCCA
    AAGCCATCCA AGAAGAAGGC AGAAGGTTGC AGCACTGAGG AGGGATCTGG AGTCCGGGGC
    CGTGTGGCAC GTTTCCGCTA CTTTGAGGAC ATTTATGGCT ATTCGGGGGT CTTTATCTGT
    GGACCCTCAC CTCACTGGCT CCTGGTAACT GGCCGTGGGG CTCTGCGTCT GCACCCCATG
    GGCATTGATG GCCCCATCGA CTCCTTTGCT CCATTCCACA ACGTGAACTG CCCCCGTGGT
    TTCCTGTACT TCAACAGACA GGGAGAGCTG AGGATCAGTG TCCTGCCTGC CTACCTGTCC
    TATGATGCCC CATGGCCGGT CAGGAAGATT CCACTCCGAT GCACAGCCCA CTATGTAGCC
    TACCACGTGG AATCCAAGGT ATATGCTGTG GCCACCAGCA CCAACACACC TTGCACTAGA
    ATCCCACGCA TGACTGGTGA GGAGAAAGAA TTTGAGGCCA TTGAGAGAGA TGACAGATAC
    ATCCACCCCC AGCAGGAAGC CTTCTCCATC CAGCTCATCT CCCCAGTCAG CTGGGAGGCC
    ATCCCCAATG CCAGGATCGA GCTAGAGGAA TGGGAGCATG TCACGTGCAT GAAGACAGTG
    TCACTGCGCA GTGAGGAGAC CGTGTCAGGC CTAAAGGGCT ATGTGGCTGC TGGGACCTGC
    CTCATGCAGG GGGAGGAGGT CACGTGCCGT GGGCGGATCT TCCTGTGGAG CCTGCGGGCT
    AGCGAGCTGA CTGGCATGGC CTTCATCGAC ACCCAGCTGT ACATCCACCA GATGATCAGC
    GTCAAGAACT TCATCCTGGC AGCAGACGTC ATGAAGAGCA TCTCACTGCT GCGCTACCAG
    GAGGAGAGCA AAACGCTCAG CCTGGTGTCC CGGGATGCCA AGCCTTTGGA GGTATACAGC
    GTGGACTTCA TGGTGGACAA TGCCCAGCTG GGCTTCTTGG TGTCTGACCG AGACCGCAAT
    CTTATGGTGT ATATGTATCT GCCAGAAGCC AAAGAGAGTT TTGGGGGCAT GCGCCTGCTG
    CGCCGAGCAG ACTTCCATGT GGGTGCCCAC GTGAACACGT TCTGGAGGAC CCCATGCCGA
    GGTGCTGCTG AGGGGCCCAG CAAGAAGTCG GTCATGTGGG AAAACAAGCA TATCACATGG
    TTTGCAACCC TTGATGGTGG CATTGGGCTC CTGCTGCCCA TGCAAGAGAA GACATACAGA
    CGACTGCTGA TGCTGCAGAA TGCACTGACC ACCATGCTAC CCCACCACGC TGGCCTCAAC
    CCCCGAGCCT TCCGAATGCT GCATGTAGAC CGGCGCATCC TGCAGAATGC TGTACGCAAC
    GTCCTCGATG GAGAACTGCT GAACCGTTAC CTATACCTCA GCACCATGGA GCGCAGTGAG
    CTGGCCAAGA AGATAGGCAC CACACCTGAC ATCATCCTGG ACGACTTGCT GGAGACAGAC
    CGCGTCACGG CTCACTTCTA A

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

    CloneID ORa30491
    Clone ID Related Accession (Same CDS sequence) XM_006241853.3
    Accession Version XM_006241853.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4320bp)
    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 2016-07-25
    Organism Rattus norvegicus(Norway rat)
    Product cleavage and polyadenylation specificity factor subunit 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_005106.4) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Jul 26, 2016 this sequence version replaced XM_006241853.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Rattus norvegicus Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    ATGTACGCGG TGTACAAGCA GGCGCACCCG CCCACCGGGC TCGAGTTTGC CATGTACTGC 
    AACTTCTTCA ACAACAGTGA GCGCAACCTC GTGGTGGCCG GCACCTCGCA GCTCTATGTG
    TACCGCCTGA ACCGCGACGC TGAGGCTCTG ACCAAGAATG ATGGGAGCAC AGAGGGAAAG
    GCCCATCGAG AGAAACTAGA GCTGGTAGCC TCCTTCTCTT TTTTTGGCAA TGTCATGTCC
    ATGGCCAGCG TGCAGCTCGC AGGTGCCAAA CGCGATGCTT TGCTTCTCAG CTTCAAAGAC
    GCTAAGCTGT CTGTGGTGGA GTACGACCCA GGCACTCATG ACCTGAAGAC CCTGTCTCTG
    CACTACTTTG AGGAGCCTGA ACTTCGGGAT GGATTTGTGC AGAACGTGCA TACGCCCCGT
    GTGCGGGTGG ACCCTGACGG GCGCTGTGCG GCAATGCTCA TCTATGGCAC AAGACTGGTA
    GTTCTGCCTT TCCGCAGAGA GAGCCTGGCT GAGGAGCATG AAGGGCTCAT GGGTGAGGGG
    CAGAGGTCCA GCTTCCTGCC CAGCTACATC ATCGATGTGC GGGCTCTGGA TGAGAAGCTG
    CTCAACATCA TTGACCTGCA GTTCCTACAC GGCTACTATG AGCCCACCCT GCTTATCCTG
    TTTGAGCCCA ACCAGACCTG GCCAGGGCGG GTGGCTGTGA GGCAGGACAC GTGCTCCATT
    GTGGCTATCT CGCTGAACAT CACACAGAAA GTCCATCCAG TCATCTGGTC CCTCACCAGC
    TTGCCTTTTG ACTGTACCCA GGCCCTGGCT GTGCCCAAGC CCATAGGTGG GGTAGTGATC
    TTCGCTGTCA ACTCCCTGTT GTACCTGAAC CAGAGTGTTC CCCCATATGG CGTGGCTCTC
    AACAGCCTTA CCACGGGCAC CACTGCTTTT CCATTACGTA CCCAAGAAGG TGTAAGGATC
    ACCCTGGACT GTGCACAGGC GGCCTTCATC TCTTATGACA AGATGGTCAT CTCCCTCAAG
    GGTGGTGAGA TTTATGTGCT GACCCTCATC ACTGACGGCA TGCGAAGTGT CCGAGCATTT
    CACTTTGACA AGGCAGCTGC TAGTGTCCTC ACCACCAGCA TGGTCACAAT GGAGCCTGGA
    TACCTGTTCC TAGGCTCTCG CCTGGGCAAT TCCCTCCTCC TCAAGTACAC GGAGAAGCTG
    CAGGAACCCC CAGCCAGCTC TGTTCGTGAG GCTGCTGACA AGGAAGAACC TCCCTCAAAG
    AAGAAGCGAG TGGACCCTAC AGTGGGCTGG ACAGGAGGCA AGACACAGGA TGAGGTGGAT
    GAAATTGAAG TTTATGGCAG TGAGGCCCAG TCAGGCACAC AGTTAGCTAC TTACTCTTTT
    GAGGTATGTG ATAGCATGCT CAACATTGGA CCCTGTGCCA ATGCTGCTGT GGGCGAGCCT
    GCCTTCCTCT CCGAAGAGTT TCAGAACAGC CCTGAGCCAG ACCTGGAGAT TGTGGTTTGT
    TCCGGCTACG GGAAAAACGG GGCCCTGTCT GTGTTGCAGA AGAGTATCCG GCCCCAGGTG
    GTGACAACCT TTGAACTTCC TGGATGCTAT GATATGTGGA CAGTCATTGC TCCTGTGCGG
    AAAGAGGAGG AAGAAACACC CAAAGCAGAG AGCACAGAGC AGGAACCTAG TGCCCCTAAA
    GCAGAGGAGG ATGGGCGAAG ACATGGATTC CTTATTCTTA GCCGAGAAGA CTCAACCATG
    ATCCTACAGA CTGGCCAGGA GATCATGGAG CTGGACACCA GTGGCTTTGC CACACAGGGT
    CCTACTGTCT TTGCTGGAAA CATTGGGGAC AATCGTTATA TTGTCCAAGT CTCGCCATTG
    GGCATTCGCC TGTTGGAAGG TGTGAATCAG CTGCACTTCA TCCCTGTGGA CCTGGGCGCC
    CCCATCGTGC AGTGTGCTGT GGCTGATCCC TATGTGGTCA TCATGAGTGC TGAGGGACAC
    GTTACCATGT TCCTACTCAA GAGCGATTCC TATGGTGGCC GCCACCACCG GCTGGCACTA
    CACAAGCCTC CACTACATCA TCAGTCTAAG GTGATTGCGC TCTGCCTGTA CCGAGATGTC
    AGTGGCATGT TCACCACTGA GAGCCGCCTG GGTGGGGCCC GTGATGAACT GGGTGGCCGA
    AGTGGCTCAG AGGCTGAAGG CCTGGGCTCA GAAACAAGCC CCACAGTGGA CGATGAGGAA
    GAGATGCTAT ATGGGGACTC CAGTTCCCTC TTCAGTCCCA GCAAAGAGGA GGCCCGAAGG
    AGCAACCAGC CACCAGCTGA TCGTGACCCT GCACCCTTCA GGGCTGACCC CACTCACTGG
    TGCCTGCTGG TGCGGGAGAA TGGCACCATG GAGATCTACC AGCTCCCAGA CTGGCGGCTG
    GTATTCCTAG TTAAGAACTT CCCTGTGGGA CAGCGGGTTC TGGTGGATAG TTCATTTGGA
    CAGCCCACTA CACAAGGTGA AGTCCGAAAG GAGGAGGCCA CACGCCAGGG GGAGCTGCCT
    TTGGTCAAGG AGGTGTTATT GGTTGCTCTG GGAAGCCGGC AGAGCAGGCC CTACCTGCTG
    GTACATGTGG ACCAGGAGTT GCTTATCTAT GAAGCCTTTC CCCATGACTC TCAGCTTGGC
    CAGGGAAACC TTAAAGTCCG TTTCAAGAAG GTCCCCCACA ACATCAACTT CCGTGAAAAG
    AAGCCAAAGC CATCCAAGAA GAAGGCAGAA GGTTGCAGCA CTGAGGAGGG ATCTGGAGTC
    CGGGGCCGTG TGGCACGTTT CCGCTACTTT GAGGACATTT ATGGCTATTC GGGGGTCTTT
    ATCTGTGGAC CCTCACCTCA CTGGCTCCTG GTAACTGGCC GTGGGGCTCT GCGTCTGCAC
    CCCATGGGCA TTGATGGCCC CATCGACTCC TTTGCTCCAT TCCACAACGT GAACTGCCCC
    CGTGGTTTCC TGTACTTCAA CAGACAGGGA GAGCTGAGGA TCAGTGTCCT GCCTGCCTAC
    CTGTCCTATG ATGCCCCATG GCCGGTCAGG AAGATTCCAC TCCGATGCAC AGCCCACTAT
    GTAGCCTACC ACGTGGAATC CAAGGTATAT GCTGTGGCCA CCAGCACCAA CACACCTTGC
    ACTAGAATCC CACGCATGAC TGGTGAGGAG AAAGAATTTG AGGCCATTGA GAGAGATGAC
    AGATACATCC ACCCCCAGCA GGAAGCCTTC TCCATCCAGC TCATCTCCCC AGTCAGCTGG
    GAGGCCATCC CCAATGCCAG GATCGAGCTA GAGGAATGGG AGCATGTCAC GTGCATGAAG
    ACAGTGTCAC TGCGCAGTGA GGAGACCGTG TCAGGCCTAA AGGGCTATGT GGCTGCTGGG
    ACCTGCCTCA TGCAGGGGGA GGAGGTCACG TGCCGTGGGC GGATCCTGAT CATGGATGTG
    ATTGAAGTGG TGCCTGAGCC GGGGCAGCCC CTGACCAAGA ACAAGTTCAA AGTCCTGTAT
    GAGAAGGAAC AGAAAGGGCC CGTGACTGCG CTGTGCCACT GCAATGGCCA CCTGGTGTCA
    GCCATTGGCC AAAAAATCTT CCTGTGGAGC CTGCGGGCTA GCGAGCTGAC TGGCATGGCC
    TTCATCGACA CCCAGCTGTA CATCCACCAG ATGATCAGCG TCAAGAACTT CATCCTGGCA
    GCAGACGTCA TGAAGAGCAT CTCACTGCTG CGCTACCAGG AGGAGAGCAA AACGCTCAGC
    CTGGTGTCCC GGGATGCCAA GCCTTTGGAG GTATACAGCG TGGACTTCAT GGTGGACAAT
    GCCCAGCTGG GCTTCTTGGT GTCTGACCGA GACCGCAATC TTATGGTGTA TATGTATCTG
    CCAGAAGCCA AAGAGAGTTT TGGGGGCATG CGCCTGCTGC GCCGAGCAGA CTTCCATGTG
    GGTGCCCACG TGAACACGTT CTGGAGGACC CCATGCCGAG GTGCTGCTGA GGGGCCCAGC
    AAGAAGTCGG TCATGTGGGA AAACAAGCAT ATCACATGGT TTGCAACCCT TGATGGTGGC
    ATTGGGCTCC TGCTGCCCAT GCAAGAGAAG ACATACAGAC GACTGCTGAT GCTGCAGAAT
    GCACTGACCA CCATGCTACC CCACCACGCT GGCCTCAACC CCCGAGCCTT CCGAATGCTG
    CATGTAGACC GGCGCATCCT GCAGAATGCT GTACGCAACG TCCTCGATGG AGAACTGCTG
    AACCGTTACC TATACCTCAG CACCATGGAG CGCAGTGAGC TGGCCAAGAA GATAGGCACC
    ACACCTGACA TCATCCTGGA CGACTTGCTG GAGACAGACC GCGTCACGGC TCACTTCTAA

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

    RefSeq XP_006241915.1
    CDS129..4448
    Translation

    Target ORF information:

    RefSeq Version XM_006241853.3
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus cleavage and polyadenylation specific factor 1 (Cpsf1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006241853.3

    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
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    ATGTACGCGG TGTACAAGCA GGCGCACCCG CCCACCGGGC TCGAGTTTGC CATGTACTGC 
    AACTTCTTCA ACAACAGTGA GCGCAACCTC GTGGTGGCCG GCACCTCGCA GCTCTATGTG
    TACCGCCTGA ACCGCGACGC TGAGGCTCTG ACCAAGAATG ATGGGAGCAC AGAGGGAAAG
    GCCCATCGAG AGAAACTAGA GCTGGTAGCC TCCTTCTCTT TTTTTGGCAA TGTCATGTCC
    ATGGCCAGCG TGCAGCTCGC AGGTGCCAAA CGCGATGCTT TGCTTCTCAG CTTCAAAGAC
    GCTAAGCTGT CTGTGGTGGA GTACGACCCA GGCACTCATG ACCTGAAGAC CCTGTCTCTG
    CACTACTTTG AGGAGCCTGA ACTTCGGGAT GGATTTGTGC AGAACGTGCA TACGCCCCGT
    GTGCGGGTGG ACCCTGACGG GCGCTGTGCG GCAATGCTCA TCTATGGCAC AAGACTGGTA
    GTTCTGCCTT TCCGCAGAGA GAGCCTGGCT GAGGAGCATG AAGGGCTCAT GGGTGAGGGG
    CAGAGGTCCA GCTTCCTGCC CAGCTACATC ATCGATGTGC GGGCTCTGGA TGAGAAGCTG
    CTCAACATCA TTGACCTGCA GTTCCTACAC GGCTACTATG AGCCCACCCT GCTTATCCTG
    TTTGAGCCCA ACCAGACCTG GCCAGGGCGG GTGGCTGTGA GGCAGGACAC GTGCTCCATT
    GTGGCTATCT CGCTGAACAT CACACAGAAA GTCCATCCAG TCATCTGGTC CCTCACCAGC
    TTGCCTTTTG ACTGTACCCA GGCCCTGGCT GTGCCCAAGC CCATAGGTGG GGTAGTGATC
    TTCGCTGTCA ACTCCCTGTT GTACCTGAAC CAGAGTGTTC CCCCATATGG CGTGGCTCTC
    AACAGCCTTA CCACGGGCAC CACTGCTTTT CCATTACGTA CCCAAGAAGG TGTAAGGATC
    ACCCTGGACT GTGCACAGGC GGCCTTCATC TCTTATGACA AGATGGTCAT CTCCCTCAAG
    GGTGGTGAGA TTTATGTGCT GACCCTCATC ACTGACGGCA TGCGAAGTGT CCGAGCATTT
    CACTTTGACA AGGCAGCTGC TAGTGTCCTC ACCACCAGCA TGGTCACAAT GGAGCCTGGA
    TACCTGTTCC TAGGCTCTCG CCTGGGCAAT TCCCTCCTCC TCAAGTACAC GGAGAAGCTG
    CAGGAACCCC CAGCCAGCTC TGTTCGTGAG GCTGCTGACA AGGAAGAACC TCCCTCAAAG
    AAGAAGCGAG TGGACCCTAC AGTGGGCTGG ACAGGAGGCA AGACACAGGA TGAGGTGGAT
    GAAATTGAAG TTTATGGCAG TGAGGCCCAG TCAGGCACAC AGTTAGCTAC TTACTCTTTT
    GAGGTATGTG ATAGCATGCT CAACATTGGA CCCTGTGCCA ATGCTGCTGT GGGCGAGCCT
    GCCTTCCTCT CCGAAGAGTT TCAGAACAGC CCTGAGCCAG ACCTGGAGAT TGTGGTTTGT
    TCCGGCTACG GGAAAAACGG GGCCCTGTCT GTGTTGCAGA AGAGTATCCG GCCCCAGGTG
    GTGACAACCT TTGAACTTCC TGGATGCTAT GATATGTGGA CAGTCATTGC TCCTGTGCGG
    AAAGAGGAGG AAGAAACACC CAAAGCAGAG AGCACAGAGC AGGAACCTAG TGCCCCTAAA
    GCAGAGGAGG ATGGGCGAAG ACATGGATTC CTTATTCTTA GCCGAGAAGA CTCAACCATG
    ATCCTACAGA CTGGCCAGGA GATCATGGAG CTGGACACCA GTGGCTTTGC CACACAGGGT
    CCTACTGTCT TTGCTGGAAA CATTGGGGAC AATCGTTATA TTGTCCAAGT CTCGCCATTG
    GGCATTCGCC TGTTGGAAGG TGTGAATCAG CTGCACTTCA TCCCTGTGGA CCTGGGCGCC
    CCCATCGTGC AGTGTGCTGT GGCTGATCCC TATGTGGTCA TCATGAGTGC TGAGGGACAC
    GTTACCATGT TCCTACTCAA GAGCGATTCC TATGGTGGCC GCCACCACCG GCTGGCACTA
    CACAAGCCTC CACTACATCA TCAGTCTAAG GTGATTGCGC TCTGCCTGTA CCGAGATGTC
    AGTGGCATGT TCACCACTGA GAGCCGCCTG GGTGGGGCCC GTGATGAACT GGGTGGCCGA
    AGTGGCTCAG AGGCTGAAGG CCTGGGCTCA GAAACAAGCC CCACAGTGGA CGATGAGGAA
    GAGATGCTAT ATGGGGACTC CAGTTCCCTC TTCAGTCCCA GCAAAGAGGA GGCCCGAAGG
    AGCAACCAGC CACCAGCTGA TCGTGACCCT GCACCCTTCA GGGCTGACCC CACTCACTGG
    TGCCTGCTGG TGCGGGAGAA TGGCACCATG GAGATCTACC AGCTCCCAGA CTGGCGGCTG
    GTATTCCTAG TTAAGAACTT CCCTGTGGGA CAGCGGGTTC TGGTGGATAG TTCATTTGGA
    CAGCCCACTA CACAAGGTGA AGTCCGAAAG GAGGAGGCCA CACGCCAGGG GGAGCTGCCT
    TTGGTCAAGG AGGTGTTATT GGTTGCTCTG GGAAGCCGGC AGAGCAGGCC CTACCTGCTG
    GTACATGTGG ACCAGGAGTT GCTTATCTAT GAAGCCTTTC CCCATGACTC TCAGCTTGGC
    CAGGGAAACC TTAAAGTCCG TTTCAAGAAG GTCCCCCACA ACATCAACTT CCGTGAAAAG
    AAGCCAAAGC CATCCAAGAA GAAGGCAGAA GGTTGCAGCA CTGAGGAGGG ATCTGGAGTC
    CGGGGCCGTG TGGCACGTTT CCGCTACTTT GAGGACATTT ATGGCTATTC GGGGGTCTTT
    ATCTGTGGAC CCTCACCTCA CTGGCTCCTG GTAACTGGCC GTGGGGCTCT GCGTCTGCAC
    CCCATGGGCA TTGATGGCCC CATCGACTCC TTTGCTCCAT TCCACAACGT GAACTGCCCC
    CGTGGTTTCC TGTACTTCAA CAGACAGGGA GAGCTGAGGA TCAGTGTCCT GCCTGCCTAC
    CTGTCCTATG ATGCCCCATG GCCGGTCAGG AAGATTCCAC TCCGATGCAC AGCCCACTAT
    GTAGCCTACC ACGTGGAATC CAAGGTATAT GCTGTGGCCA CCAGCACCAA CACACCTTGC
    ACTAGAATCC CACGCATGAC TGGTGAGGAG AAAGAATTTG AGGCCATTGA GAGAGATGAC
    AGATACATCC ACCCCCAGCA GGAAGCCTTC TCCATCCAGC TCATCTCCCC AGTCAGCTGG
    GAGGCCATCC CCAATGCCAG GATCGAGCTA GAGGAATGGG AGCATGTCAC GTGCATGAAG
    ACAGTGTCAC TGCGCAGTGA GGAGACCGTG TCAGGCCTAA AGGGCTATGT GGCTGCTGGG
    ACCTGCCTCA TGCAGGGGGA GGAGGTCACG TGCCGTGGGC GGATCCTGAT CATGGATGTG
    ATTGAAGTGG TGCCTGAGCC GGGGCAGCCC CTGACCAAGA ACAAGTTCAA AGTCCTGTAT
    GAGAAGGAAC AGAAAGGGCC CGTGACTGCG CTGTGCCACT GCAATGGCCA CCTGGTGTCA
    GCCATTGGCC AAAAAATCTT CCTGTGGAGC CTGCGGGCTA GCGAGCTGAC TGGCATGGCC
    TTCATCGACA CCCAGCTGTA CATCCACCAG ATGATCAGCG TCAAGAACTT CATCCTGGCA
    GCAGACGTCA TGAAGAGCAT CTCACTGCTG CGCTACCAGG AGGAGAGCAA AACGCTCAGC
    CTGGTGTCCC GGGATGCCAA GCCTTTGGAG GTATACAGCG TGGACTTCAT GGTGGACAAT
    GCCCAGCTGG GCTTCTTGGT GTCTGACCGA GACCGCAATC TTATGGTGTA TATGTATCTG
    CCAGAAGCCA AAGAGAGTTT TGGGGGCATG CGCCTGCTGC GCCGAGCAGA CTTCCATGTG
    GGTGCCCACG TGAACACGTT CTGGAGGACC CCATGCCGAG GTGCTGCTGA GGGGCCCAGC
    AAGAAGTCGG TCATGTGGGA AAACAAGCAT ATCACATGGT TTGCAACCCT TGATGGTGGC
    ATTGGGCTCC TGCTGCCCAT GCAAGAGAAG ACATACAGAC GACTGCTGAT GCTGCAGAAT
    GCACTGACCA CCATGCTACC CCACCACGCT GGCCTCAACC CCCGAGCCTT CCGAATGCTG
    CATGTAGACC GGCGCATCCT GCAGAATGCT GTACGCAACG TCCTCGATGG AGAACTGCTG
    AACCGTTACC TATACCTCAG CACCATGGAG CGCAGTGAGC TGGCCAAGAA GATAGGCACC
    ACACCTGACA TCATCCTGGA CGACTTGCTG GAGACAGACC GCGTCACGGC TCACTTCTAA

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