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Volumn 39, Issue 5, 2011, Pages 1811-1822

5′-end surveillance by Xrn2 acts as a shared mechanism for mammalian pre-rRNA maturation and decay

Author keywords

[No Author keywords available]

Indexed keywords

PHOSPHODIESTERASE I; PRE RIBOSOME RNA; PROTEIN XRN2; RIBOSOME RNA; RNA 28S; RNA 5.8S; RNA PRECURSOR; SMALL INTERFERING RNA; SPLEEN EXONUCLEASE; UNCLASSIFIED DRUG; EXORIBONUCLEASE; NUCLEAR PROTEIN; XRN2 PROTEIN, MOUSE;

EID: 79953141281     PISSN: 03051048     EISSN: 13624962     Source Type: Journal    
DOI: 10.1093/nar/gkq1050     Document Type: Article
Times cited : (75)

References (61)
  • 3
    • 0033367325 scopus 로고    scopus 로고
    • Ribosome synthesis in Saccharomyces cerevisiae
    • DOI 10.1146/annurev.genet.33.1.261
    • Venema J. and Tollervey D. (1999) Ribosome synthesis in Saccharomyces cerevisiae. Annu. Rev. Genet. 33 261-311. (Pubitemid 30083125)
    • (1999) Annual Review of Genetics , vol.33 , pp. 261-311
    • Venema, J.1    Tollervey, D.2
  • 4
    • 0028342849 scopus 로고
    • The 50 end of yeast 5.8S rRNA is generated by exonucleases from an upstream cleavage site
    • Henry Y. Wood H. Morrissey J.P. Petfalski E. Kearsey S. and Tollervey D. (1994) The 50 end of yeast 5.8S rRNA is generated by exonucleases from an upstream cleavage site. EMBO J. 13 2452-2463.
    • (1994) EMBO J. , vol.13 , pp. 2452-2463
    • Henry, Y.1    Wood, H.2    Morrissey, J.P.3    Petfalski, E.4    Kearsey, S.5    Tollervey, D.6
  • 5
    • 0034548433 scopus 로고    scopus 로고
    • The final step in the formation of 25S rRNA in saccharomyces cerevisiae is performed by 5' → 3' exonucleases
    • DOI 10.1017/S1355838200001540
    • Geerlings T.H. Vos J.C. and RauéH.A. (2000) The final step in the formation of 25S rRNA in Saccharomyces cerevisiae is performed by 50->30 exonucleases. RNA 6 1698-1703. (Pubitemid 32001941)
    • (2000) RNA , vol.6 , Issue.12 , pp. 1698-1703
    • Geerlings, T.H.1    Vos, J.C.2    Raue, H.A.3
  • 6
    • 0030702085 scopus 로고    scopus 로고
    • The exosome: A conserved eukaryotic RNA processing complex containing multiple 3'→5' exoribonucleases
    • Mitchell P. Petfalski E. Shevchenko A. Mann M. and Tollervey D. (1997) The exosome: a conserved eukaryotic RNA processing complex containing multiple 30->50 exoribonucleases. Cell 91 457-466. (Pubitemid 27508235)
    • (1997) Cell , vol.91 , Issue.4 , pp. 457-466
    • Mitchell, P.1    Petfalski, E.2    Shevchenko, A.3    Mann, M.4    Tollervey, D.5
  • 7
    • 0032557455 scopus 로고    scopus 로고
    • Rrp6p, the yeast homologue of the human PM-Scl 100-kDa autoantigen, is essential for efficient 5.8 S rRNA 3' end formation
    • DOI 10.1074/jbc.273.21.13255
    • Briggs M.W. Burkard K.T. and Butler J.S. (1998) Rrp6p the yeast homologue of the human PM-Scl 100-kDa autoantigen is essential for efficient 5.8 S rRNA 30 end formation. J. Biol. Chem. 273 13255-13263. (Pubitemid 28246898)
    • (1998) Journal of Biological Chemistry , vol.273 , Issue.21 , pp. 13255-13263
    • Briggs, M.W.1    Burkard, K.T.D.2    Butler, J.S.3
  • 8
    • 0034653440 scopus 로고    scopus 로고
    • Three conserved members of the RNase D family have unique and overlapping functions in the processing of 5S, 5.8S, U4, U5. RNase MRP and RNase P RNAs in yeast
    • van Hoof A. Lennertz P. and Parker R. (2000) Three conserved members of the RNase D family have unique and overlapping functions in the processing of 5S 5.8S U4 U5 RNase MRP and RNase P RNAs in yeast. EMBO J. 19 1357-1365. (Pubitemid 30151031)
    • (2000) EMBO Journal , vol.19 , Issue.6 , pp. 1357-1365
    • Van Hoof, A.1    Lennertz, P.2    Parker, R.3
  • 9
    • 0036719183 scopus 로고    scopus 로고
    • Ngl2p is a Ccr4p-like RNA nuclease essential for the final step in 3′-end processing of 5.8S rRNA in Saccharomyces cerevisiae
    • DOI 10.1017/S1355838202021027
    • Faber A.W. Van Dijk M. RauéH.A. and Vos J.C. (2002) Ngl2p is a Ccr4p-like RNA nuclease essential for the final step in 30-end processing of 5.8S rRNA in Saccharomyces cerevisiae. RNA 8 1095-1101. (Pubitemid 35024565)
    • (2002) RNA , vol.8 , Issue.9 , pp. 1095-1101
    • Faber, A.W.1    Van Dijk, M.2    Raue, H.A.3    Vos, J.C.4
  • 11
    • 43249092177 scopus 로고    scopus 로고
    • The exonuclease ERI-1 has a conserved dual role in 5.8S rRNA processing and RNAi
    • DOI 10.1038/nsmb.1411, PII NSMB1411
    • Gabel H.W. and Ruvkun G. (2008) The exonuclease ERI-1 has a conserved dual role in 5.8S rRNA processing and RNAi. Nat. Struct. Mol. Biol. 15 531-533. (Pubitemid 351653584)
    • (2008) Nature Structural and Molecular Biology , vol.15 , Issue.5 , pp. 531-533
    • Gabel, H.W.1    Ruvkun, G.2
  • 12
    • 77952580619 scopus 로고    scopus 로고
    • A 'garbage can' for ribosomes: How eukaryotes degrade their ribosomes
    • Lafontaine D.L.J. (2010) A 'garbage can' for ribosomes: how eukaryotes degrade their ribosomes. Trends Biochem. Sci. 35 267-277.
    • (2010) Trends Biochem. Sci. , vol.35 , pp. 267-277
    • Lafontaine, D.L.J.1
  • 14
    • 33645727798 scopus 로고    scopus 로고
    • Surveillance of nuclear-restricted pre-ribosomes within a subnucleolar region of Saccharomyces cerevisiae
    • Dez C. Houseley J. and Tollervey D. (2006) Surveillance of nuclear-restricted pre-ribosomes within a subnucleolar region of Saccharomyces cerevisiae. EMBO J. 25 1534-1546.
    • (2006) EMBO J. , vol.25 , pp. 1534-1546
    • Dez, C.1    Houseley, J.2    Tollervey, D.3
  • 15
    • 20444368818 scopus 로고    scopus 로고
    • RNA degradation by the exosome is promoted by a nuclear polyadenylation complex
    • DOI 10.1016/j.cell.2005.04.029, PII S0092867405004423
    • LaCava J. Houseley J. Saveanu C. Petfalski E. Thompson E. Jacquier A. and Tollervey D. (2005) RNA degradation by the exosome is promoted by a nuclear polyadenylation complex. Cell 121 713-724. (Pubitemid 40797594)
    • (2005) Cell , vol.121 , Issue.5 , pp. 713-724
    • LaCava, J.1    Houseley, J.2    Saveanu, C.3    Petfalski, E.4    Thompson, E.5    Jacquier, A.6    Tollervey, D.7
  • 18
    • 77952170843 scopus 로고    scopus 로고
    • Addition of poly(A) and poly(A)-rich tails during RNA degradation in the cytoplasm of human cells
    • Slomovic S. Fremder E. Staals R.H.G. Pruijn G.J.M. and Schuster G. (2010) Addition of poly(A) and poly(A)-rich tails during RNA degradation in the cytoplasm of human cells. Proc. Natl Acad. Sci. USA 107 7407-7412.
    • (2010) Proc. Natl Acad. Sci. USA , vol.107 , pp. 7407-7412
    • Slomovic, S.1    Fremder, E.2    Staals, R.H.G.3    Pruijn, G.J.M.4    Schuster, G.5
  • 19
    • 75949116417 scopus 로고    scopus 로고
    • Polyadenylation and degradation of incomplete RNA polymerase i transcripts in mammalian cells
    • Shcherbik N. Wang M. Lapik Y.R. Srivastava L. and Pestov D.G. (2010) Polyadenylation and degradation of incomplete RNA polymerase I transcripts in mammalian cells. EMBO Rep. 11 106-111.
    • (2010) EMBO Rep. , vol.11 , pp. 106-111
    • Shcherbik, N.1    Wang, M.2    Lapik, Y.R.3    Srivastava, L.4    Pestov, D.G.5
  • 21
    • 0141819096 scopus 로고    scopus 로고
    • Nonsense-mediated mRNA decay in mammalian cells involves decapping, deadenylating, and exonucleolytic activities
    • DOI 10.1016/S1097-2765(03)00349-6
    • Lejeune F. Li X. and Maquat L.E. (2003) Nonsense-mediated mRNA decay in mammalian cells involves decapping deadenylating and exonucleolytic activities. Mol. Cell 12 675-687. (Pubitemid 37222488)
    • (2003) Molecular Cell , vol.12 , Issue.3 , pp. 675-687
    • Lejeune, F.1    Li, X.2    Maquat, L.E.3
  • 22
    • 0033912841 scopus 로고    scopus 로고
    • Bop1 is a mouse WD40 repeat nucleolar protein involved in 28S and 5.8S rRNA processing and 60S ribosome biogenesis
    • DOI 10.1128/MCB.20.15.5516-5528.2000
    • Strezoska Z. Pestov D.G. and Lau L.F. (2000) Bop1 is a mouse WD40 repeat nucleolar protein involved in 28S and 5. 8S RRNA processing and 60S ribosome biogenesis. Mol. Cell. Biol. 20 5516-5528. (Pubitemid 30482888)
    • (2000) Molecular and Cellular Biology , vol.20 , Issue.15 , pp. 5516-5528
    • Strezoska, Z.1    Pestov, D.G.2    Lau, L.F.3
  • 23
    • 77953449290 scopus 로고    scopus 로고
    • Mammalian DEAD box protein Ddx51 acts in 30 end maturation of 28S rRNA by promoting the release of U8 snoRNA
    • Srivastava L. Lapik Y.R. Wang M. and Pestov D.G. (2010) Mammalian DEAD box protein Ddx51 acts in 30 end maturation of 28S rRNA by promoting the release of U8 snoRNA. Mol. Cell. Biol. 30 2947-2956.
    • (2010) Mol. Cell. Biol. , vol.30 , pp. 2947-2956
    • Srivastava, L.1    Lapik, Y.R.2    Wang, M.3    Pestov, D.G.4
  • 24
    • 35649005949 scopus 로고    scopus 로고
    • Restricting conformational flexibility of the switch II region creates a dominant-inhibitory phenotype in Obg GTPase Nog1
    • DOI 10.1128/MCB.01161-07
    • Lapik Y.R. Misra J.M. Lau L.F. and Pestov D.G. (2007) Restricting conformational flexibility of the switch II region creates a dominant-inhibitory phenotype in Obg GTPase Nog1. Mol. Cell. Biol. 27 7735-7744. (Pubitemid 350033678)
    • (2007) Molecular and Cellular Biology , vol.27 , Issue.21 , pp. 7735-7744
    • Lapik, Y.R.1    Misra, J.M.2    Lau, L.F.3    Pestov, D.G.4
  • 25
    • 57549100234 scopus 로고    scopus 로고
    • Assays for ribosomal RNA processing and ribosome assembly
    • Chapter 22 Unit 2211
    • Pestov D.G. Lapik Y.R. and Lau L.F. (2008) Assays for ribosomal RNA processing and ribosome assembly. Curr. Protoc. Cell Biol. Chapter 22 Unit 2211.
    • (2008) Curr. Protoc. Cell Biol.
    • Pestov, D.G.1    Lapik, Y.R.2    Lau, L.F.3
  • 26
    • 58149094003 scopus 로고    scopus 로고
    • The 50 external transcribed spacer in mouse ribosomal RNA contains two cleavage sites
    • Kent T. Lapik Y.R. and Pestov D.G. (2009) The 50 external transcribed spacer in mouse ribosomal RNA contains two cleavage sites. RNA 15 14-20.
    • (2009) RNA , vol.15 , pp. 14-20
    • Kent, T.1    Lapik, Y.R.2    Pestov, D.G.3
  • 27
    • 0021770882 scopus 로고
    • Processing of the external transcribed spacer of murine rRNA and site of action of actinomycin D
    • Fetherston J. Werner E. and Patterson R. (1984) Processing of the external transcribed spacer of murine rRNA and site of action of actinomycin D. Nucleic Acids Res. 12 7187-7198.
    • (1984) Nucleic Acids Res. , vol.12 , pp. 7187-7198
    • Fetherston, J.1    Werner, E.2    Patterson, R.3
  • 28
    • 0028922662 scopus 로고
    • Actinomycin D stimulates the transcription of rRNA minigenes transfected into mouse cells. Implications for the in vivo hypersensitivity of rRNA gene transcription
    • Hadjiolova K.V. Hadjiolov A.A. and Bachellerie J.P. (1995) Actinomycin D stimulates the transcription of rRNA minigenes transfected into mouse cells. Implications for the in vivo hypersensitivity of rRNA gene transcription. Eur. J. Biochem. 228 605-615.
    • (1995) Eur. J. Biochem. , vol.228 , pp. 605-615
    • Hadjiolova, K.V.1    Hadjiolov, A.A.2    Bachellerie, J.P.3
  • 29
    • 0028913850 scopus 로고
    • Characterization of cDNA encoding mouse homolog of fission yeast dhp1+gene: Structural and functional conservation
    • Shobuike T. Sugano S. Yamashita T. and Ikeda H. (1995) Characterization of cDNA encoding mouse homolog of fission yeast dhp1+gene: structural and functional conservation. Nucleic Acids Res. 23 357-361.
    • (1995) Nucleic Acids Res. , vol.23 , pp. 357-361
    • Shobuike, T.1    Sugano, S.2    Yamashita, T.3    Ikeda, H.4
  • 30
    • 0030764692 scopus 로고    scopus 로고
    • Rat1p and Xrn1p are functionally interchangeable exoribonucleases that are restricted to and required in the nucleus and cytoplasm, respectively
    • Johnson A.W. (1997) Rat1p and Xrn1p are functionally interchangeable exoribonucleases that are restricted to and required in the nucleus and cytoplasm respectively. Mol. Cell. Biol. 17 6122-6130. (Pubitemid 27411121)
    • (1997) Molecular and Cellular Biology , vol.17 , Issue.10 , pp. 6122-6130
    • Johnson, A.W.1
  • 31
    • 9644308046 scopus 로고    scopus 로고
    • Human 5′ → 3′ exonuclease Xm2 promotes transcription termination at co-transcriptional cleavage sites
    • DOI 10.1038/nature03035
    • West S. Gromak N. and Proudfoot N.J. (2004) Human 50-> 30 exonuclease Xrn2 promotes transcription termination at co-transcriptional cleavage sites. Nature 432 522-525. (Pubitemid 39576535)
    • (2004) Nature , vol.432 , Issue.7016 , pp. 522-525
    • West, S.1    Gromak, N.2    Proudfoot, N.J.3
  • 33
    • 0023387825 scopus 로고
    • Primary processing of mammalian rRNA involves two adjacent cleavages and is not species specific
    • Kass S. Craig N. and Sollner-Webb B. (1987) Primary processing of mammalian rRNA involves two adjacent cleavages and is not species specific. Mol. Cell. Biol. 7 2891-2898.
    • (1987) Mol. Cell. Biol. , vol.7 , pp. 2891-2898
    • Kass, S.1    Craig, N.2    Sollner-Webb, B.3
  • 34
    • 0024994984 scopus 로고
    • The first pre-rRNA-processing event occurs in a large complex: Analysis by gel retardation sedimentation and UV cross-linking
    • Kass S. and Sollner-Webb B. (1990) The first pre-rRNA-processing event occurs in a large complex: analysis by gel retardation sedimentation and UV cross-linking. Mol. Cell. Biol. 10 4920-4931.
    • (1990) Mol. Cell. Biol. , vol.10 , pp. 4920-4931
    • Kass, S.1    Sollner-Webb, B.2
  • 35
    • 0033567005 scopus 로고    scopus 로고
    • Two 5'-ETS regions implicated in interactions with U3 snoRNA are required for small subunit rRNA maturation in Trypanosoma brucei
    • DOI 10.1093/nar/27.16.3300
    • Hartshorne T. and Toyofuku W. (1999) Two 50-ETS regions implicated in interactions with U3 snoRNA are required for small subunit rRNA maturation in Trypanosoma brucei. Nucleic Acids Res. 27 3300-3309. (Pubitemid 29381323)
    • (1999) Nucleic Acids Research , vol.27 , Issue.16 , pp. 3300-3309
    • Hartshorne, T.1    Toyofuku, W.2
  • 36
    • 0034733393 scopus 로고    scopus 로고
    • The spacing between functional Cis-elements of U3 snoRNA is critical for rRNA processing
    • Borovjagin A.V. and Gerbi S.A. (2000) The spacing between functional Cis-elements of U3 snoRNA is critical for rRNA processing. J. Mol. Biol. 300 57-74.
    • (2000) J. Mol. Biol. , vol.300 , pp. 57-74
    • Borovjagin, A.V.1    Gerbi, S.A.2
  • 37
    • 0025276512 scopus 로고
    • The U3 small nucleolar ribonucleoprotein functions in the first step of preribosomal RNA processing
    • Kass S. Tyc K. Steitz J.A. and Sollner-Webb B. (1990) The U3 small nucleolar ribonucleoprotein functions in the first step of preribosomal RNA processing. Cell 60 897-908.
    • (1990) Cell , vol.60 , pp. 897-908
    • Kass, S.1    Tyc, K.2    Steitz, J.A.3    Sollner-Webb, B.4
  • 40
    • 3042724637 scopus 로고    scopus 로고
    • Physical and functional interaction between Pes1 and Bop1 in mammalian ribosome biogenesis
    • DOI 10.1016/j.molcel.2004.05.020, PII S1097276504003065
    • Lapik Y.R. Fernandes C.J. Lau L.F. and Pestov D.G. (2004) Physical and functional interaction between Pes1 and Bop1 in mammalian ribosome biogenesis. Mol. Cell 15 17-29. (Pubitemid 38850216)
    • (2004) Molecular Cell , vol.15 , Issue.1 , pp. 17-29
    • Lapik, Y.R.1    Fernandes, C.J.2    Lau, L.F.3    Pestov, D.G.4
  • 41
    • 0037119468 scopus 로고    scopus 로고
    • Functional inactivation of the mouse nucleolar protein Bop1 inhibits multiple steps in pre-rRNA processing and blocks cell cycle progression
    • DOI 10.1074/jbc.M204381200
    • Strezoska Z. Pestov D.G. and Lau L.F. (2002) Functional inactivation of the mouse nucleolar protein Bop1 inhibits multiple steps in pre-rRNA processing and blocks cell cycle progression. J. Biol. Chem. 277 29617-29625. (Pubitemid 41079251)
    • (2002) Journal of Biological Chemistry , vol.277 , Issue.33 , pp. 29617-29625
    • Strezoska, Z.1    Pestov, D.G.2    Lau, L.F.3
  • 42
    • 33745137485 scopus 로고    scopus 로고
    • Dominant-negative Pes1 mutants inhibit ribosomal RNA processing and cell proliferation via incorporation into the PeBoW-complex
    • DOI 10.1093/nar/gkl378
    • Grimm T. Hölzel M. Rohrmoser M. Harasim T. Malamoussi A. Gruber-Eber A. Kremmer E. and Eick D. (2006) Dominant-negative Pes1 mutants inhibit ribosomal RNA processing and cell proliferation via incorporation into the PeBoW-complex. Nucleic Acids Res. 34 3030-3043. (Pubitemid 44540430)
    • (2006) Nucleic Acids Research , vol.34 , Issue.10 , pp. 3030-3043
    • Grimm, T.1    Holzel, M.2    Rohrmoser, M.3    Harasim, T.4    Malamoussi, A.5    Gruber-Eber, A.6    Kremmer, E.7    Eick, D.8
  • 43
    • 51349144693 scopus 로고    scopus 로고
    • Interactions among Ytm1 Erb1 and Nop7 required for assembly of the Nop7-subcomplex in yeast preribosomes
    • Tang L. Sahasranaman A. Jakovljevic J. Schleifman E. and Woolford J.L.J. (2008) Interactions among Ytm1 Erb1 and Nop7 required for assembly of the Nop7-subcomplex in yeast preribosomes. Mol. Biol. Cell 19 2844-2856.
    • (2008) Mol. Biol. Cell , vol.19 , pp. 2844-2856
    • Tang, L.1    Sahasranaman, A.2    Jakovljevic, J.3    Schleifman, E.4    Woolford, J.L.J.5
  • 44
    • 0020956273 scopus 로고
    • Location of the initial cleavage sites in mouse pre-rRNA
    • Bowman L.H. Goldman W.E. Goldberg G.I. Hebert M.B. and Schlessinger D. (1983) Location of the initial cleavage sites in mouse pre-rRNA. Mol. Cell. Biol. 3 1501-1510. (Pubitemid 13050554)
    • (1983) Molecular and Cellular Biology , vol.3 , Issue.8 , pp. 1501-1510
    • Bowman, L.H.1    Goldman, W.E.2    Goldberg, G.I.3
  • 45
    • 0021189596 scopus 로고
    • Isolation and properties of a single-strand 5'→3' exoribonuclease from Ehrlich ascites tumor cell nucleoli
    • Lasater L.S. and Eichler D.C. (1984) Isolation and properties of a single-strand 50-30 exoribonuclease from Ehrlich ascites tumor cell nucleoli. Biochemistry 23 4367-4373. (Pubitemid 14043534)
    • (1984) Biochemistry , vol.23 , Issue.19 , pp. 4367-4373
    • Lasater, L.S.1    Eichler, D.C.2
  • 47
    • 60149090021 scopus 로고    scopus 로고
    • The many pathways of RNA degradation
    • Houseley J. and Tollervey D. (2009) The many pathways of RNA degradation. Cell 136 763-776.
    • (2009) Cell , vol.136 , pp. 763-776
    • Houseley, J.1    Tollervey, D.2
  • 50
    • 42149123284 scopus 로고    scopus 로고
    • Efficient termination of transcription by RNA polymerase I requires the 5′ exonuclease Rat1 in yeast
    • DOI 10.1101/gad.463708
    • El Hage A. Koper M. Kufel J. and Tollervey D. (2008) Efficient termination of transcription by RNA polymerase I requires the 50 exonuclease Rat1 in yeast. Genes Dev. 22 1069-1081. (Pubitemid 351544244)
    • (2008) Genes and Development , vol.22 , Issue.8 , pp. 1069-1081
    • El Hage, A.1    Koper, M.2    Kufel, J.3    Tollervey, D.4
  • 51
    • 42149154858 scopus 로고    scopus 로고
    • Budding yeast RNA polymerases I and II employ parallel mechanisms of transcriptional termination
    • DOI 10.1101/gad.463408
    • Kawauchi J. Mischo H. Braglia P. Rondon A. and Proudfoot N.J. (2008) Budding yeast RNA polymerases I and II employ parallel mechanisms of transcriptional termination. Genes Dev. 22 1082-1092. (Pubitemid 351544245)
    • (2008) Genes and Development , vol.22 , Issue.8 , pp. 1082-1092
    • Kawauchi, J.1    Mischo, H.2    Braglia, P.3    Rondon, A.4    Proudfoot, N.J.5
  • 52
    • 0031935899 scopus 로고    scopus 로고
    • Processing of the precursors to small nucleolar RNAs and rRNAs requires common components
    • Petfalski E. Dandekar T. Henry Y. and Tollervey D. (1998) Processing of the precursors to small nucleolar RNAs and rRNAs requires common components. Mol. Cell. Biol. 18 1181-1189. (Pubitemid 28100882)
    • (1998) Molecular and Cellular Biology , vol.18 , Issue.3 , pp. 1181-1189
    • Petfalski, E.1    Dandekar, T.2    Henry, Y.3    Tollervey, D.4
  • 53
    • 0033105059 scopus 로고    scopus 로고
    • The exosome subunit Rrp43p is required for the efficient maturation of 5.8S, 18S and 25S rRNA
    • DOI 10.1093/nar/27.5.1283
    • Zanchin N.I. and Goldfarb D.S. (1999) The exosome subunit Rrp43p is required for the efficient maturation of 5.8S 18S and 25S rRNA. Nucleic Acids Res. 27 1283-1288. (Pubitemid 29206436)
    • (1999) Nucleic Acids Research , vol.27 , Issue.5 , pp. 1283-1288
    • Zanchin, N.I.T.1    Goldfarb, D.S.2
  • 54
    • 25844461364 scopus 로고    scopus 로고
    • Rat1p and Rai1p function with the nuclear exosome in the processing and degradation of rRNA precursors
    • DOI 10.1261/rna.2900205
    • Fang F. Phillips S. and Butler J.S. (2005) Rat1p and Rai1p function with the nuclear exosome in the processing and degradation of rRNA precursors. RNA 11 1571-1578. (Pubitemid 41396927)
    • (2005) RNA , vol.11 , Issue.10 , pp. 1571-1578
    • Fang, F.1    Phillips, S.2    Butler, J.S.3
  • 55
    • 0035283033 scopus 로고    scopus 로고
    • Exoribonuclease superfamilies: Structural analysis and phylogenetic distribution
    • Zuo Y. and Deutscher M.P. (2001) Exoribonuclease superfamilies: structural analysis and phylogenetic distribution. Nucleic Acids Res. 29 1017-1026. (Pubitemid 32186186)
    • (2001) Nucleic Acids Research , vol.29 , Issue.5 , pp. 1017-1026
    • Zuo, Y.1    Deutscher, M.P.2
  • 56
    • 0029024239 scopus 로고
    • 50-exonuclease-2 of Saccharomyces cerevisiae. Purification and features of ribonuclease activity with comparison to 50-exonuclease-1
    • Stevens A. and Poole T.L. (1995) 50-exonuclease-2 of Saccharomyces cerevisiae. Purification and features of ribonuclease activity with comparison to 50-exonuclease-1. J. Biol. Chem. 270 16063-16069.
    • (1995) J. Biol. Chem. , vol.270 , pp. 16063-16069
    • Stevens, A.1    Poole, T.L.2
  • 57
    • 0031587993 scopus 로고    scopus 로고
    • Structural modifications of RNA influence the 5' exoribonucleolytic hydrolysis by XRN1 and HKE1 of Saccharomyces cerevisiae
    • DOI 10.1006/bbrc.1997.6877
    • Poole T.L. and Stevens A. (1997) Structural modifications of RNA influence the 50 exoribonucleolytic hydrolysis by XRN1 and HKE1 of Saccharomyces cerevisiae. Biochem. Biophys. Res. Commun. 235 799-805. (Pubitemid 27326565)
    • (1997) Biochemical and Biophysical Research Communications , vol.235 , Issue.3 , pp. 799-805
    • Poole, T.L.1    Stevens, A.2
  • 58
    • 64749111945 scopus 로고    scopus 로고
    • Structure and function of the 50->30 exoribonuclease Rat1 and its activating partner Rai1
    • Xiang S. Cooper-Morgan A. Jiao X. Kiledjian M. Manley J.L. and Tong L. (2009) Structure and function of the 50->30 exoribonuclease Rat1 and its activating partner Rai1. Nature 458 784-788.
    • (2009) Nature , vol.458 , pp. 784-788
    • Xiang, S.1    Cooper-Morgan, A.2    Jiao, X.3    Kiledjian, M.4    Manley, J.L.5    Tong, L.6
  • 59
    • 0019877589 scopus 로고
    • Multiple ribosomal RNA cleavage pathways in mammalian cells
    • Bowman L.H. Rabin B. and Schlessinger D. (1981) Multiple ribosomal RNA cleavage pathways in mammalian cells. Nucleic Acids Res. 9 4951-4966.
    • (1981) Nucleic Acids Res. , vol.9 , pp. 4951-4966
    • Bowman, L.H.1    Rabin, B.2    Schlessinger, D.3
  • 60
    • 77949563362 scopus 로고    scopus 로고
    • Yeast pre-rRNA processing and modification occur cotranscriptionally
    • Kos M. and Tollervey D. (2010) Yeast pre-rRNA processing and modification occur cotranscriptionally. Mol. Cell 37 809-820.
    • (2010) Mol. Cell , vol.37 , pp. 809-820
    • Kos, M.1    Tollervey, D.2
  • 61
    • 28444479853 scopus 로고    scopus 로고
    • An assembly landscape for the 3OS ribosomal subunit
    • DOI 10.1038/nature04261
    • Talkington M.W.T. Siuzdak G. and Williamson J.R. (2005) An assembly landscape for the 30S ribosomal subunit. Nature 438 628-632. (Pubitemid 41740567)
    • (2005) Nature , vol.438 , Issue.7068 , pp. 628-632
    • Talkington, M.W.T.1    Siuzdak, G.2    Williamson, J.R.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.