RTF1 cDNA ORF clone, Homo sapiens(human)

The following RTF1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the RTF1 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
OHu21095 NM_015138.4
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Homo sapiens RTF1 homolog, Paf1/RNA polymerase II complex component (RTF1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 12-14 $391.30
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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 OHu21095
    Clone ID Related Accession (Same CDS sequence) NM_015138.4
    Accession Version NM_015138.4 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2133bp)
    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 2019-05-03
    Organism Homo sapiens(human)
    Product RNA polymerase-associated protein RTF1 homolog
    Comment Comment: REVIEWED REFSEQ: This record has been curated by NCBI staff. The reference sequence was derived from BF979715.1, D87440.2, AC087721.4 and CD367287.1. This sequence is a reference standard in the RefSeqGene project. On Aug 12, 2008 this sequence version replaced NM_015138.3. Publication Note: This RefSeq record includes a subset of the publications that are available for this gene. Please see the Gene record to access additional publications. ##Evidence-Data-START## Transcript exon combination :: D87440.2, BC015052.2 [ECO:0000332] RNAseq introns :: single sample supports all introns SAMEA1965299, SAMEA1966682 [ECO:0000348] ##Evidence-Data-END## ##RefSeq-Attributes-START## RefSeq Select criteria :: based on single protein-coding transcript ##RefSeq-Attributes-END## COMPLETENESS: complete on the 3' 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
    ATGCGCGGTC GCCTTTGTGT GGGTCGAGCA GCGGCGGCGG CGGCGGCAGT GGCGGTCCCA 
    CTGGCAGGCG GGCAAGAGGG GAGTCCGGGC GGCGGCCGGC GTGGGAGCCG GGGGACCACC
    ATGGTAAAGA AGCGGAAAGG CCGCGTCGTG ATCGACTCGG ACACAGAGGA CAGCGGCAGC
    GACGAGAACC TGGATCAGGA GCTCTTGTCC CTGGCAAAGC GAAAGCGCAG TGACTCTGAG
    GAGAAGGAGC CGCCTGTGAG TCAGCCTGCA GCCTCGTCAG ACTCGGAGAC GTCTGACAGT
    GACGATGAGT GGACATTTGG GAGCAATAAA AATAAGAAGA AAGGAAAAGC CAGAAAAATA
    GAGAAGAAAG GAACCATGAA GAAACAGGCC AACAAAACTG CCTCCTCAGG CAGTTCAGAC
    AAAGACAGTT CAGCTGAGAG CTCAGCCCCT GAGGAAGGTG AAGTGTCAGA CTCTGACAGC
    AACAGCTCCT CTTCCAGTTC AGATTCAGAC TCTTCCTCAG AAGATGAAGA GTTCCATGAT
    GGCTATGGAG AAGACCTCAT GGGAGATGAG GAAGACAGGG CCCGTCTGGA ACAGATGACA
    GAGAAAGAGA GAGAGCAAGA ACTGTTCAAT CGCATAGAGA AGAGGGAGGT GTTGAAAAGA
    AGATTTGAAA TCAAGAAAAA ACTAAAAACA GCCAAAAAGA AAGAAAAGAA AGAAAAGAAG
    AAAAAGCAAG AAGAGGAGCA AGAAAAGAAA AAACTGACAC AGATTCAAGA ATCTCAGGTA
    ACATCCCACA ACAAGGAACG GCGTTCCAAG CGGGATGAGA AACTAGACAA GAAATCTCAA
    GCCATGGAGG AGCTAAAAGC AGAGCGAGAA AAACGAAAGA ACAGAACAGC TGAGCTCCTT
    GCCAAAAAAC AGCCATTAAA AACCAGTGAG GTCTACTCTG ATGATGAAGA GGAGGAAGAG
    GATGACAAAT CCAGTGAAAA GTCAGACCGC TCATCACGAA CATCATCGTC TGATGAAGAA
    GAGGAGAAAG AAGAGATCCC TCCCAAATCC CAACCAGTTT CCTTACCTGA AGAATTGAAT
    CGGGTTCGAT TATCACGGCA TAAGCTAGAA CGCTGGTGTC ACATGCCCTT CTTTGCTAAA
    ACTGTCACAG GATGTTTTGT GCGGATTGGC ATCGGAAACC ACAACAGCAA ACCAGTTTAC
    CGGGTCGCTG AGATTACGGG TGTTGTGGAA ACTGCCAAAG TTTACCAACT AGGTGGCACC
    AGAACAAACA AAGGGCTGCA ACTACGGCAT GGCAATGACC AACGCGTGTT CCGTTTAGAG
    TTTGTCTCAA ACCAAGAATT CACCGAAAGT GAGTTTATGA AGTGGAAAGA AGCGATGTTC
    TCTGCTGGCA TGCAGTTGCC CACTCTAGAT GAAATCAATA AAAAGGAATT ATCTATTAAA
    GAAGCTCTTA ATTATAAATT CAATGATCAG GACATTGAAG AGATTGTAAA AGAGAAAGAA
    AGGTTCAGAA AAGCTCCACC CAACTACGCT ATGAAGAAGA CTCAGCTACT GAAGGAAAAG
    GCCATGGCTG AGGACCTGGG GGATCAGGAC AAGGCCAAAC AAATCCAAGA TCAACTGAAT
    GAGCTGGAGG AACGGGCAGA GGCCCTGGAC CGCCAGCGGA CCAAGAACAT ATCCGCTATC
    AGTTACATCA ACCAGCGGAA CCGGGAGTGG AACATTGTAG AGTCTGAGAA GGCCCTTGTG
    GCTGAAAGTC ACAACATGAA AAACCAACAG ATGGATCCCT TTACTCGGCG GCAGTGCAAG
    CCTACCATCG TTTCTAATTC CAGAGACCCA GCTGTTCAAG CTGCCATCTT GGCCCAGCTG
    AATGCAAAAT ACGGTTCTGG AGTGTTACCA GATGCTCCAA AGGAAATGAG CAAGGGTCAA
    GGCAAAGATA AAGATTTGAA TTCTAAGTCA GCCAGTGACC TCTCAGAAGA TCTGTTCAAA
    GTACACGATT TTGATGTGAA GATTGACTTA CAAGTTCCCA GCTCAGAGTC AAAGGCTTTA
    GCCATCACCT CCAAGGCTCC GCCAGCCAAG GATGGGGCTC CAAGGAGATC TCTGAACTTG
    GAAGACTACA AAAAACGACG AGGGCTTATT TGA

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

    RefSeq NP_055953.3
    CDS13..2145
    Translation

    Target ORF information:

    RefSeq Version NM_015138.4
    Organism Homo sapiens(human)
    Definition Homo sapiens RTF1 homolog, Paf1/RNA polymerase II complex component (RTF1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_015138.4

    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
    ATGCGCGGTC GCCTTTGTGT GGGTCGAGCA GCGGCGGCGG CGGCGGCAGT GGCGGTCCCA 
    CTGGCAGGCG GGCAAGAGGG GAGTCCGGGC GGCGGCCGGC GTGGGAGCCG GGGGACCACC
    ATGGTAAAGA AGCGGAAAGG CCGCGTCGTG ATCGACTCGG ACACAGAGGA CAGCGGCAGC
    GACGAGAACC TGGATCAGGA GCTCTTGTCC CTGGCAAAGC GAAAGCGCAG TGACTCTGAG
    GAGAAGGAGC CGCCTGTGAG TCAGCCTGCA GCCTCGTCAG ACTCGGAGAC GTCTGACAGT
    GACGATGAGT GGACATTTGG GAGCAATAAA AATAAGAAGA AAGGAAAAGC CAGAAAAATA
    GAGAAGAAAG GAACCATGAA GAAACAGGCC AACAAAACTG CCTCCTCAGG CAGTTCAGAC
    AAAGACAGTT CAGCTGAGAG CTCAGCCCCT GAGGAAGGTG AAGTGTCAGA CTCTGACAGC
    AACAGCTCCT CTTCCAGTTC AGATTCAGAC TCTTCCTCAG AAGATGAAGA GTTCCATGAT
    GGCTATGGAG AAGACCTCAT GGGAGATGAG GAAGACAGGG CCCGTCTGGA ACAGATGACA
    GAGAAAGAGA GAGAGCAAGA ACTGTTCAAT CGCATAGAGA AGAGGGAGGT GTTGAAAAGA
    AGATTTGAAA TCAAGAAAAA ACTAAAAACA GCCAAAAAGA AAGAAAAGAA AGAAAAGAAG
    AAAAAGCAAG AAGAGGAGCA AGAAAAGAAA AAACTGACAC AGATTCAAGA ATCTCAGGTA
    ACATCCCACA ACAAGGAACG GCGTTCCAAG CGGGATGAGA AACTAGACAA GAAATCTCAA
    GCCATGGAGG AGCTAAAAGC AGAGCGAGAA AAACGAAAGA ACAGAACAGC TGAGCTCCTT
    GCCAAAAAAC AGCCATTAAA AACCAGTGAG GTCTACTCTG ATGATGAAGA GGAGGAAGAG
    GATGACAAAT CCAGTGAAAA GTCAGACCGC TCATCACGAA CATCATCGTC TGATGAAGAA
    GAGGAGAAAG AAGAGATCCC TCCCAAATCC CAACCAGTTT CCTTACCTGA AGAATTGAAT
    CGGGTTCGAT TATCACGGCA TAAGCTAGAA CGCTGGTGTC ACATGCCCTT CTTTGCTAAA
    ACTGTCACAG GATGTTTTGT GCGGATTGGC ATCGGAAACC ACAACAGCAA ACCAGTTTAC
    CGGGTCGCTG AGATTACGGG TGTTGTGGAA ACTGCCAAAG TTTACCAACT AGGTGGCACC
    AGAACAAACA AAGGGCTGCA ACTACGGCAT GGCAATGACC AACGCGTGTT CCGTTTAGAG
    TTTGTCTCAA ACCAAGAATT CACCGAAAGT GAGTTTATGA AGTGGAAAGA AGCGATGTTC
    TCTGCTGGCA TGCAGTTGCC CACTCTAGAT GAAATCAATA AAAAGGAATT ATCTATTAAA
    GAAGCTCTTA ATTATAAATT CAATGATCAG GACATTGAAG AGATTGTAAA AGAGAAAGAA
    AGGTTCAGAA AAGCTCCACC CAACTACGCT ATGAAGAAGA CTCAGCTACT GAAGGAAAAG
    GCCATGGCTG AGGACCTGGG GGATCAGGAC AAGGCCAAAC AAATCCAAGA TCAACTGAAT
    GAGCTGGAGG AACGGGCAGA GGCCCTGGAC CGCCAGCGGA CCAAGAACAT ATCCGCTATC
    AGTTACATCA ACCAGCGGAA CCGGGAGTGG AACATTGTAG AGTCTGAGAA GGCCCTTGTG
    GCTGAAAGTC ACAACATGAA AAACCAACAG ATGGATCCCT TTACTCGGCG GCAGTGCAAG
    CCTACCATCG TTTCTAATTC CAGAGACCCA GCTGTTCAAG CTGCCATCTT GGCCCAGCTG
    AATGCAAAAT ACGGTTCTGG AGTGTTACCA GATGCTCCAA AGGAAATGAG CAAGGGTCAA
    GGCAAAGATA AAGATTTGAA TTCTAAGTCA GCCAGTGACC TCTCAGAAGA TCTGTTCAAA
    GTACACGATT TTGATGTGAA GATTGACTTA CAAGTTCCCA GCTCAGAGTC AAAGGCTTTA
    GCCATCACCT CCAAGGCTCC GCCAGCCAAG GATGGGGCTC CAAGGAGATC TCTGAACTTG
    GAAGACTACA AAAAACGACG AGGGCTTATT TGA

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

  • PubMed

    Characterization of the Human Transcription Elongation Factor Rtf1: Evidence for Nonoverlapping Functions of Rtf1 and the Paf1 Complex.
    Molecular and cellular biology35(20)3459-70(2015 Oct)
    Cao QF,Yamamoto J,Isobe T,Tateno S,Murase Y,Chen Y,Handa H,Yamaguchi Y


    Structural basis for Spt5-mediated recruitment of the Paf1 complex to chromatin.
    Proceedings of the National Academy of Sciences of the United States of America110(43)17290-5(2013 Oct)
    Wier AD,Mayekar MK,H?roux A,Arndt KM,VanDemark AP


    Insights into RNA biology from an atlas of mammalian mRNA-binding proteins.
    Cell149(6)1393-406(2012 Jun)
    Castello A,Fischer B,Eichelbaum K,Horos R,Beckmann BM,Strein C,Davey NE,Humphreys DT,Preiss T,Steinmetz LM,Krijgsveld J,Hentze MW


    Hundreds of variants clustered in genomic loci and biological pathways affect human height.
    Nature467(7317)832-8(2010 Oct)
    Lango Allen H,Estrada K,Lettre G,Berndt SI,Weedon MN,Rivadeneira F,Willer CJ,Jackson AU,Vedantam S,Raychaudhuri S,Ferreira T,Wood AR,Weyant RJ,Segr? AV,Speliotes EK,Wheeler E,Soranzo N,Park JH,Yang J,Gudbjartsson D,Heard-Costa NL,Randall JC,Qi L,Vernon Smith A,M?gi R,Pastinen T,Liang L,Heid IM,Luan J,Thorleifsson G,Winkler TW,Goddard ME,Sin Lo K,Palmer C,Workalemahu T,Aulchenko YS,Johansson A,Zillikens MC,Feitosa MF,Esko T,Johnson T,Ketkar S,Kraft P,Mangino M,Prokopenko I,Absher D,Albrecht E,Ernst F,Glazer NL,Hayward C,Hottenga JJ,Jacobs KB,Knowles JW,Kutalik Z,Monda KL,Polasek O,Preuss M,Rayner NW,Robertson NR,Steinthorsdottir V,Tyrer JP,Voight BF,Wiklund F,Xu J,Zhao JH,Nyholt DR,Pellikka N,Perola M,Perry JR,Surakka I,Tammesoo ML,Altmaier EL,Amin N,Aspelund T,Bhangale T,Boucher G,Chasman DI,Chen C,Coin L,Cooper MN,Dixon AL,Gibson Q,Grundberg E,Hao K,Juhani Junttila M,Kaplan LM,Kettunen J,K?nig IR,Kwan T,Lawrence RW,Levinson DF,Lorentzon M,McKnight B,Morris AP,M?ller M,Suh Ngwa J,Purcell S,Rafelt S,Salem RM,Salvi E,Sanna S,Shi J,Sovio U,Thompson JR,Turchin MC,Vandenput L,Verlaan DJ,Vitart V,White CC,Ziegler A,Almgren P,Balmforth AJ,Campbell H,Citterio L,De Grandi A,Dominiczak A,Duan J,Elliott P,Elosua R,Eriksson JG,Freimer NB,Geus EJ,Glorioso N,Haiqing S,Hartikainen AL,Havulinna AS,Hicks AA,Hui J,Igl W,Illig T,Jula A,Kajantie E,Kilpel?inen TO,Koiranen M,Kolcic I,Koskinen S,Kovacs P,Laitinen J,Liu J,Lokki ML,Marusic A,Maschio A,Meitinger T,Mulas A,Par? G,Parker AN,Peden JF,Petersmann A,Pichler I,Pietil?inen KH,Pouta A,Ridderstr?le M,Rotter JI,Sambrook JG,Sanders AR,Schmidt CO,Sinisalo J,Smit JH,Stringham HM,Bragi Walters G,Widen E,Wild SH,Willemsen G,Zagato L,Zgaga L,Zitting P,Alavere H,Farrall M,McArdle WL,Nelis M,Peters MJ,Ripatti S,van Meurs JB,Aben KK,Ardlie KG,Beckmann JS,Beilby JP,Bergman RN,Bergmann S,Collins FS,Cusi D,den Heijer M,Eiriksdottir G,Gejman PV,Hall AS,Hamsten A,Huikuri HV,Iribarren C,K?h?nen M,Kaprio J,Kathiresan S,Kiemeney L,Kocher T,Launer LJ,Lehtim?ki T,Melander O,Mosley TH Jr,Musk AW,Nieminen MS,O'Donnell CJ,Ohlsson C,Oostra B,Palmer LJ,Raitakari O,Ridker PM,Rioux JD,Rissanen A,Rivolta C,Schunkert H,Shuldiner AR,Siscovick DS,Stumvoll M,T?njes A,Tuomilehto J,van Ommen GJ,Viikari J,Heath AC,Martin NG,Montgomery GW,Province MA,Kayser M,Arnold AM,Atwood LD,Boerwinkle E,Chanock SJ,Deloukas P,Gieger C,Gr?nberg H,Hall P,Hattersley AT,Hengstenberg C,Hoffman W,Lathrop GM,Salomaa V,Schreiber S,Uda M,Waterworth D,Wright AF,Assimes TL,Barroso I,Hofman A,Mohlke KL,Boomsma DI,Caulfield MJ,Cupples LA,Erdmann J,Fox CS,Gudnason V,Gyllensten U,Harris TB,Hayes RB,Jarvelin MR,Mooser V,Munroe PB,Ouwehand WH,Penninx BW,Pramstaller PP,Quertermous T,Rudan I,Samani NJ,Spector TD,V?lzke H,Watkins H,Wilson JF,Groop LC,Haritunians T,Hu FB,Kaplan RC,Metspalu A,North KE,Schlessinger D,Wareham NJ,Hunter DJ,O'Connell JR,Strachan DP,Wichmann HE,Borecki IB,van Duijn CM,Schadt EE,Thorsteinsdottir U,Peltonen L,Uitterlinden AG,Visscher PM,Chatterjee N,Loos RJ,Boehnke M,McCarthy MI,Ingelsson E,Lindgren CM,Abecasis GR,Stefansson K,Frayling TM,Hirschhorn JN


    The human PAF1 complex acts in chromatin transcription elongation both independently and cooperatively with SII/TFIIS.
    Cell140(4)491-503(2010 Feb)
    Kim J,Guermah M,Roeder RG