-
1
-
-
0028244439
-
The POP1 gene encodes a protein component common to the RNase MRP and RNase P ribonucleoproteins
-
Lygerou Z, Mitchell P, Petfalski E, et al. The POP1 gene encodes a protein component common to the RNase MRP and RNase P ribonucleoproteins. Genes Dev 1994; 8:1423-1433. (Pubitemid 24189809)
-
(1994)
Genes and Development
, vol.8
, Issue.12
, pp. 1423-1433
-
-
Lygerou, Z.1
Mitchell, P.2
Petfalski, E.3
Seraphin, B.4
Tollervey, D.5
-
2
-
-
33745166320
-
RNase P: interface of the RNA and protein worlds
-
DOI 10.1016/j.tibs.2006.04.007, PII S0968000406001174
-
Evans D, Marquez SM, Pace NR. RNase P: interface of the RNA and protein worlds. Trends Biochem Sci 2006; 31:333-341. (Pubitemid 43903240)
-
(2006)
Trends in Biochemical Sciences
, vol.31
, Issue.6
, pp. 333-341
-
-
Evans, D.1
Marquez, S.M.2
Pace, N.R.3
-
3
-
-
0028342849
-
The 5′ end of yeast 5.8S rRNA is generated by exonucleases from an upstream cleavage site
-
Henry Y, Wood H, Morrissey JP, et al. The 5′ end of yeast 5.8S rRNA is generated by exonucleases from an upstream cleavage site. EMBO J 1994; 13:2452-2463.
-
(1994)
EMBO J
, vol.13
, pp. 2452-2463
-
-
Henry, Y.1
Wood, H.2
Morrissey, J.P.3
-
4
-
-
0029981894
-
Accurate processing of a eukaryotic precursor ribosomal RNA by ribonuclease MRP in vitro
-
Lygerou Z, Allmang C, Tollervey D, et al. Accurate processing of a eukaryotic prerRNA by RNase MRP in vitro. Science 1996; 272:268-270. (Pubitemid 26119139)
-
(1996)
Science
, vol.272
, Issue.5259
, pp. 268-270
-
-
Lygerou, Z.1
Allmang, C.2
Tollervey, D.3
Seraphin, B.4
-
5
-
-
0028983910
-
Birth of the snoRNPs-the evolution of RNase MRP and the eukaryotic prerRNA processing system
-
Morrissey JP, Tollervey D. Birth of the snoRNPs-the evolution of RNase MRP and the eukaryotic prerRNA processing system. Trends Biochem Sci 1995; 20:78-82.
-
(1995)
Trends Biochem Sci
, vol.20
, pp. 78-82
-
-
Morrissey, J.P.1
Tollervey, D.2
-
6
-
-
0029939247
-
The 3′-end of yeast 5.8S rRNA is generated by an exonuclease processing mechanism
-
Mitchell P, Petfalski E, Tollervey D. The 3′-end of yeast 5.8S rRNA is generated by an exonuclease processing mechanism. Genes Dev 1996; 10:502-513.
-
(1996)
Genes Dev
, vol.10
, pp. 502-513
-
-
Mitchell, P.1
Petfalski, E.2
Tollervey, D.3
-
7
-
-
0032828715
-
A generic protein purification method for protein complex characterization and proteome exploration
-
DOI 10.1038/13732
-
Rigaut G, Shevchenko A, Rutz B, et al. A generic protein purication method for protein complex characterization and proteome exploration. Nat Biotechnol 1999; 17:1030-1032. (Pubitemid 29474865)
-
(1999)
Nature Biotechnology
, vol.17
, Issue.10
, pp. 1030-1032
-
-
Rigaut, G.1
Shevchenko, A.2
Rutz, B.3
Wilm, M.4
Mann, M.5
Seraphin, B.6
-
8
-
-
0030702085
-
The exosome: A conserved eukaryotic RNA processing complex containing multiple 3'5' exoribonucleases
-
Mitchell P, Petfalski E, Shevchenko A, et al. The exosome; a conserved eukaryotic RNA processing complex containing multiple 3′ → 5′ exoribonuclease activities. Cell 1997; 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
-
9
-
-
33846068920
-
A single subunit, Dis3, is essentially responsible for yeast exosome core activity
-
DOI 10.1038/nsmb1184, PII NSMB1184
-
Dziembowski A, Lorentzen E, Conti E, et al. A single subunit, Dis3, is essentially responsible for yeast exosome core activity. Nat Struct Mol Biol 2007; 14:15-22. (Pubitemid 46067418)
-
(2007)
Nature Structural and Molecular Biology
, vol.14
, Issue.1
, pp. 15-22
-
-
Dziembowski, A.1
Lorentzen, E.2
Conti, E.3
Seraphin, B.4
-
10
-
-
0030836805
-
Comparative sequence analysis of ribonucleases HII, III, II PH and D
-
Mian IS. Comparative sequence analysis of ribonucleases HII, III, II PH and D. Nucleic Acids Res 1997; 25:3187-3195.
-
(1997)
Nucleic Acids Res
, vol.25
, pp. 3187-3195
-
-
Mian, I.S.1
-
11
-
-
0031897326
-
Ski6p is a homolog of RNA-processing enzymes that affects translation of non-poly(A) mRNAs and 60S ribosomal subunit biogenesis
-
Benard L, Carroll K, Valle RC, et al. Ski6p is a homolog of RNA-processing enzymes that affects translation of nonpoly(A) mRNAs and 60S ribosomal subunit biogenesis. Mol Cell Biol 1998; 18:2688-2696. (Pubitemid 28183438)
-
(1998)
Molecular and Cellular Biology
, vol.18
, Issue.5
, pp. 2688-2696
-
-
Benard, L.1
Carroll, K.2
Valle, R.C.P.3
Wickner, R.B.4
-
12
-
-
0000577868
-
The 3' to 5' degradation of yeast mRNAs is a general mechanism for mRNA turnover that requires the SK12 DEVH box protein and 3' to 5' exonucleases of the exosome complex
-
DOI 10.1093/emboj/17.5.1497
-
Anderson JSJ, Parker RP. The 3′ to 5′ degradation of yeast mRNAs is a general mechanism for mRNA turnover that requires the SKI2 DEVH box protein and 3′ to 5′ exonucleases of the exosome complex. EMBO J 1998; 17:1497-1506. (Pubitemid 28105528)
-
(1998)
EMBO Journal
, vol.17
, Issue.5
, pp. 1497-1506
-
-
Anderson, J.S.J.1
Parker, R.2
-
13
-
-
0033567131
-
The yeast exosome and human PM-Scl are related complexes of 3' 5' exonucleases
-
Allmang C, Petfalski E, Podtelejnikov A, et al. The yeast exosome and human PM-Scl are related complexes of 3′ → 5′ exonucleases. Genes Dev 1999; 13:2148-2158. (Pubitemid 29407354)
-
(1999)
Genes and Development
, vol.13
, Issue.16
, pp. 2148-2158
-
-
Allmang, C.1
Petfalski, E.2
Podtelejnikov, A.3
Mann, M.4
Tollervey, D.5
Mitchell, P.6
-
14
-
-
0034693061
-
Poly(A) tail-dependent exonuclease AtRrp41p from Arabidopsis thaliana rescues 5.8 S rRNA processing and mRNA decay defects of the yeast ski6 mutant and is found in an exosome-sized complex in plant and yeast cells
-
Chekanova JA, Shaw RJ, Wills MA, et al. Poly(A) tail-dependent exonuclease AtRrp41p from Arabidopsis thaliana rescues 5.8 S rRNA processing and mRNA decay defects of the yeast ski6 mutant and is found in an exosome-sized complex in plant and yeast cells. J Biol Chem 2000; 275:33158-66.
-
(2000)
J Biol Chem
, vol.275
, pp. 33158-66
-
-
Chekanova, J.A.1
Shaw, R.J.2
Wills, M.A.3
-
15
-
-
0036464532
-
Arabidopsis thaliana exosome subunit AtRrp4p is a hydrolytic 3 exonuclease containing S1 and KH RNA-binding domains
-
Chekanova JA, Dutko JA, Mian IS, et al. Arabidopsis thaliana exosome subunit AtRrp4p is a hydrolytic 3′ → 5′ exonuclease containing S1 and KH RNA-binding domains. Nucleic Acids Res 2002; 30:695-700. (Pubitemid 34679634)
-
(2002)
Nucleic Acids Research
, vol.30
, Issue.3
, pp. 695-700
-
-
Chekanova, J.A.1
Dutko, J.A.2
Mian, I.S.3
Belostotsky, D.A.4
-
16
-
-
22144493835
-
The archaeal exosome core is a hexameric ring structure with three catalytic subunits
-
DOI 10.1038/nsmb952
-
Lorentzen E, Walter P, Fribourg S, et al. The archaeal exosome core is a hexameric ring structure with three catalytic subunits. Nat Struct Mol Biol 2005; 12:575-581. (Pubitemid 40980806)
-
(2005)
Nature Structural and Molecular Biology
, vol.12
, Issue.7
, pp. 575-581
-
-
Lorentzen, E.1
Walter, P.2
Fribourg, S.3
Evguenieva-Hackenberg, E.4
Klug, G.5
Conti, E.6
-
17
-
-
0030272377
-
Importin provides a link between nuclear protein import and U snRNA export
-
DOI 10.1016/S0092-8674(00)81319-7
-
Görlich D, Kraft R, Kostka S, et al. Importin provides a link between nuclear protein import and U snRNA export. Cell 1996; 87:21-32. (Pubitemid 26337387)
-
(1996)
Cell
, vol.87
, Issue.1
, pp. 21-32
-
-
Gorlich, D.1
Kraft, R.2
Kostka, S.3
Vogel, F.4
Hartmann, E.5
Laskey, R.A.6
Mattaj, I.W.7
Izaurralde, E.8
-
18
-
-
0032557455
-
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 MW, Burkard KT, Butler JS. Rrp6p, the yeast homologue of the human PM-Scl 100-kDa autoantigen, is essential for effcient 5.8 S rRNA 3′ end formation. J Biol Chem 1998; 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
-
19
-
-
0141669145
-
Rrp47p is an exosome-associated protein required for the 3 processing of stable RNAs
-
DOI 10.1128/MCB.23.19.6982-6992.2003
-
Mitchell P, Petfalski E, Houalla R, et al. Rrp47p is an exosome-associated protein required for the 3′ processing of stable RNAs. Mol Cell Biol 2003; 23:6982-6992. (Pubitemid 37214665)
-
(2003)
Molecular and Cellular Biology
, vol.23
, Issue.19
, pp. 6982-6992
-
-
Mitchell, P.1
Petfalski, E.2
Houalla, R.3
Podtelejnikov, A.4
Mann, M.5
Tollervey, D.6
-
20
-
-
0037708880
-
A panoramic view of yeast noncoding RNA processing
-
DOI 10.1016/S0092-8674(03)00466-5
-
Peng WT, Robinson MD, Mnaimneh S, et al. A panoramic view of yeast noncoding RNA processing. Cell 2003; 113:919-33. (Pubitemid 36792034)
-
(2003)
Cell
, vol.113
, Issue.7
, pp. 919-933
-
-
Peng, W.-T.1
Robinson, M.D.2
Mnaimneh, S.3
Krogan, N.J.4
Cagney, G.5
Morris, Q.6
Davierwala, A.P.7
Grigull, J.8
Yang, X.9
Zhang, W.10
Mitsakakis, N.11
Ryan, O.W.12
Datta, N.13
Jojic, V.14
Pal, C.15
Canadien, V.16
Richards, D.17
Beattie, B.18
Wu, L.F.19
Altschuler, S.J.20
Roweis, S.21
Frey, B.J.22
Emili, A.23
Greenblatt, J.F.24
Hughes, T.R.25
more..
-
21
-
-
0035801392
-
Ski7p G protein interacts with the exosome and the ski complex for 3-to-5 mRNA decay in yeast
-
DOI 10.1093/emboj/20.17.4684
-
Araki Y, Takahashi S, Kobayashi T, et al. Ski7p G protein interacts with the exosome and the Ski complex for 3′-to-5′ mRNA decay in yeast. EMBO J 2001; 20:4684-4693. (Pubitemid 32848622)
-
(2001)
EMBO Journal
, vol.20
, Issue.17
, pp. 4684-4693
-
-
Araki, Y.1
Takahashi, S.2
Kobayashi, T.3
Kajiho, H.4
Hoshino, S.-I.5
Katada, T.6
-
22
-
-
0033777266
-
Function of the ski4p (Csl4p) and Ski7p proteins in 3′-to-5′ degradation of mRNA
-
van Hoof A, Staples RR, Baker RE, et al. Function of the ski4p (Csl4p) and Ski7p proteins in 3′-to-5′ degradation of mRNA. Mol Cell Biol 2000; 20:8230-8243.
-
(2000)
Mol Cell Biol
, vol.20
, pp. 8230-8243
-
-
Van Hoof, A.1
Staples, R.R.2
Baker, R.E.3
-
23
-
-
50249112157
-
A yeast exosome cofactor, Mpp6, functions in RNA surveillance and in the degradation of noncoding RNA transcripts
-
Milligan L, Decourty L, Saveanu C, et al. A yeast exosome cofactor, Mpp6, functions in RNA surveillance and in the degradation of noncoding RNA transcripts. Mol Cell Biol 2008; 28:5446-57.
-
(2008)
Mol Cell Biol
, vol.28
, pp. 5446-57
-
-
Milligan, L.1
Decourty, L.2
Saveanu, C.3
-
24
-
-
29244475356
-
MPP6 is an exosome-associated RNA-binding protein involved in 5.8S rRNA maturation
-
DOI 10.1093/nar/gki982
-
Schilders G, Raijmakers R, Raats JM, et al. MPP6 is an exosome-associated RNA-binding protein involved in 5.8S rRNA maturation. Nucleic Acids Res 2005; 33:6795-6804. (Pubitemid 41830485)
-
(2005)
Nucleic Acids Research
, vol.33
, Issue.21
, pp. 6795-6804
-
-
Schilders, G.1
Raijmakers, R.2
Raats, J.M.H.3
Pruijn, G.J.M.4
-
25
-
-
0035080095
-
The human exosome: An autoantigenic complex of exoribonucleases in myositis and scleroderma
-
DOI 10.1186/ar147
-
Brouwer R, Pruijn GJ, van Venrooij WJ. The human exosome: an autoantigenic complex of exoribonucleases in myositis and scleroderma. Arthritis Res 2001; 3:102-106. (Pubitemid 32237036)
-
(2001)
Arthritis Research
, vol.3
, Issue.2
, pp. 102-106
-
-
Brouwer, R.1
Pruijn, G.J.M.2
Van Venrooij, W.J.3
-
26
-
-
18044371822
-
AU binding proteins recruit the exosome to degrade ARE-containing mRNAs
-
DOI 10.1016/S0092-8674(01)00578-5
-
Chen CY, Gherzi R, Ong SE, et al. AU binding proteins recruit the exosome to degrade ARE-containing mRNAs. Cell 2001; 107:451-464. (Pubitemid 33152781)
-
(2001)
Cell
, vol.107
, Issue.4
, pp. 451-464
-
-
Chen, C.-Y.1
Gherzi, R.2
Ong, S.-E.3
Chan, E.L.4
Raijmakers, R.5
Pruijn, G.J.M.6
Stoecklin, G.7
Moroni, C.8
Mann, M.9
Karin, M.10
-
27
-
-
0032727868
-
The exosome: A proteasome for RNA?
-
van Hoof A, Parker R. The exosome: a proteasome for RNA? Cell 1999; 99:347-350.
-
(1999)
Cell
, vol.99
, pp. 347-350
-
-
Van Hoof, A.1
Parker, R.2
-
28
-
-
0034435974
-
A duplicated fold is the structural basis for polynucleotide phosphorylase catalytic activity, processivity, and regulation
-
DOI 10.1016/S0969-2126(00)00521-9, PII S0969212600005219
-
Symmons MF, Jones GH, Luisi BF. A duplicated fold is the structural basis for polynucleotide phosphorylase catalytic activity, processivity and regulation. Structure Fold Des 2000; 8:1215-26. (Pubitemid 32667486)
-
(2000)
Structure
, vol.8
, Issue.11
, pp. 1215-1226
-
-
Symmons, M.F.1
Jones, G.H.2
Luisi, B.F.3
-
29
-
-
0036164937
-
Running rings around RNA: A superfamily of phosphate-dependent RNases
-
DOI 10.1016/S0968-0004(01)01999-5, PII S0968000401019995
-
Symmons MF, Williams MG, Luisi BF, et al. Running rings around RNA: a superfamily of phosphate-dependent RNases. Trends Biochem Sci 2002; 27:11-18. (Pubitemid 34131620)
-
(2002)
Trends in Biochemical Sciences
, vol.27
, Issue.1
, pp. 11-18
-
-
Symmons, M.F.1
Williams, M.G.2
Luisi, B.F.3
Jones, G.H.4
Carpousis, A.J.5
-
30
-
-
27644496002
-
Structural basis of 3 end RNA recognition and exoribonucleolytic cleavage by an exosome RNase PH core
-
DOI 10.1016/j.molcel.2005.10.020, PII S1097276505017156
-
Lorentzen E, Conti E. Structural basis of 3′ end RNA recognition and exoribonucleolytic cleavage by an exosome RNase PH core. Mol Cell 2005; 20:473-81. (Pubitemid 41572303)
-
(2005)
Molecular Cell
, vol.20
, Issue.3
, pp. 473-481
-
-
Lorentzen, E.1
Conti, E.2
-
31
-
-
33845407784
-
Reconstitution, Activities, and Structure of the Eukaryotic RNA Exosome
-
DOI 10.1016/j.cell.2006.10.037, PII S0092867406014279
-
Liu Q, Greimann JC, Lima CD. Reconstitution, activities and structure of the eukaryotic RNA exosome. Cell 2006; 127:1223-1237. (Pubitemid 44894519)
-
(2006)
Cell
, vol.127
, Issue.6
, pp. 1223-1237
-
-
Liu, Q.1
Greimann, J.C.2
Lima, C.D.3
-
32
-
-
70350336247
-
The yeast exosome functions as a macromolecular cage to channel RNA substrates for degradation
-
Bonneau F, Basquin J, Ebert J, et al. The yeast exosome functions as a macromolecular cage to channel RNA substrates for degradation. Cell 2009; 139:547-559.
-
(2009)
Cell
, vol.139
, pp. 547-559
-
-
Bonneau, F.1
Basquin, J.2
Ebert, J.3
-
33
-
-
60149090021
-
The many pathways of RNA degradation
-
Houseley J, Tollervey D. The many pathways of RNA degradation. Cell 2009; 136:763-776.
-
(2009)
Cell
, vol.136
, pp. 763-776
-
-
Houseley, J.1
Tollervey, D.2
-
34
-
-
57749189164
-
Endonucleolytic RNA cleavage by a eukaryotic exosome
-
Lebreton A, Tomecki R, Dziembowski A, et al. Endonucleolytic RNA cleavage by a eukaryotic exosome. Nature 2008; 456:993-996.
-
(2008)
Nature
, vol.456
, pp. 993-996
-
-
Lebreton, A.1
Tomecki, R.2
Dziembowski, A.3
-
35
-
-
62049085366
-
The N-terminal PIN domain of the exosome subunit Rrp44 harbors endonuclease activity and tethers Rrp44 to the yeast core exosome
-
Schneider C, Leung E, Brown J, et al. The N-terminal PIN domain of the exosome subunit Rrp44 harbors endonuclease activity and tethers Rrp44 to the yeast core exosome. Nucleic Acids Res 2009; 37:1127-1140.
-
(2009)
Nucleic Acids Res
, vol.37
, pp. 1127-1140
-
-
Schneider, C.1
Leung, E.2
Brown, J.3
-
36
-
-
58149236691
-
The exosome contains domains with specic endoribonuclease, exoribonuclease and cytoplasmic mRNA decay activities
-
Schaeffer D, Tsanova B, Barbas A, et al. The exosome contains domains with specic endoribonuclease, exoribonuclease and cytoplasmic mRNA decay activities. Nat Struct Mol Biol 2009; 16:56-62.
-
(2009)
Nat Struct Mol Biol
, vol.16
, pp. 56-62
-
-
Schaeffer, D.1
Tsanova, B.2
Barbas, A.3
-
37
-
-
0033214175
-
Functions of the exosome in rRNA, snoRNA and snRNA synthesis
-
DOI 10.1093/emboj/18.19.5399
-
Allmang C, Kufel J, Chanfreau G, et al. Functions of the exosome in rRNA, snoRNA and snRNA synthesis. EMBO J 1999; 18:5399-5410. (Pubitemid 29465589)
-
(1999)
EMBO Journal
, vol.18
, Issue.19
, pp. 5399-5410
-
-
Allmang, C.1
Kufel, J.2
Chanfreau, G.3
Mitchell, P.4
Petfalski, E.5
Tollervey, D.6
-
38
-
-
0034655640
-
Degradation of ribosomal RNA precursors by the exosome
-
Allmang C, Mitchell P, Petfalski E, et al. Degradation of ribosomal RNA precursors by the exosome. Nucleic Acids Res 2000; 28:1684-1691. (Pubitemid 30199300)
-
(2000)
Nucleic Acids Research
, vol.28
, Issue.8
, pp. 1684-1691
-
-
Allmang, C.1
Mitchell, P.2
Petfalski, E.3
Tollervey, D.4
-
39
-
-
0037155584
-
Exosome-mediated recognition and degradation of mRNAs lacking a termination codon
-
DOI 10.1126/science.1067272
-
van Hoof A, Frischmeyer PA, Dietz HC, et al. Exosome-mediated recognition and degradation of mRNAs lacking a termination codon. Science 2002; 295:2262-2264. (Pubitemid 34258839)
-
(2002)
Science
, vol.295
, Issue.5563
, pp. 2262-2264
-
-
Van Hoof, A.1
Frischmeyer, P.A.2
Dietz, H.C.3
Parker, R.4
-
40
-
-
0035807308
-
Quality control of mRNA 3′-end processing is linked to the nuclear exosome
-
DOI 10.1038/35097110
-
Hilleren P, McCarthy T, Rosbash M, et al. Quality control of mRNA 3′-end processing is linked to the nuclear exosome. Nature 2001; 413:538-542. (Pubitemid 32938754)
-
(2001)
Nature
, vol.413
, Issue.6855
, pp. 538-542
-
-
Hilleren, P.1
McCarthy, T.2
Rosbash, M.3
Parker, R.4
Jensen, T.H.5
-
41
-
-
0034664803
-
Identication of a regulated pathway for nuclear premRNA turnover
-
Bousquet-Antonelli C, Presutti C, Tollervey D. Identication of a regulated pathway for nuclear premRNA turnover. Cell 2000; 102:765-775.
-
(2000)
Cell
, vol.102
, pp. 765-775
-
-
Bousquet-Antonelli, C.1
Presutti, C.2
Tollervey, D.3
-
42
-
-
20444368036
-
Cryptic Pol II transcripts are degraded by a nuclear quality control pathway involving a new poly(A) polymerase
-
DOI 10.1016/j.cell.2005.04.030, PII S0092867405004435
-
Wyers F, Rougemaille M, Badis G, et al. Cryptic Pol II transcripts are degraded by a nuclear quality control pathway involving a new poly(A) polymerase. Cell 2005; 121:725-737. (Pubitemid 40797595)
-
(2005)
Cell
, vol.121
, Issue.5
, pp. 725-737
-
-
Wyers, F.1
Rougemaille, M.2
Badis, G.3
Rousselle, J.-C.4
Dufour, M.-E.5
Boulay, J.6
Regnault, B.7
Devaux, F.8
Namane, A.9
Seraphin, B.10
Libri, D.11
Jacquier, A.12
-
43
-
-
66049084452
-
Exosome complex and pervasive transcription in eukaryotic genomes
-
Belostotsky D. Exosome complex and pervasive transcription in eukaryotic genomes. Curr Opin Cell Biol 2009; 21:352-358.
-
(2009)
Curr Opin Cell Biol
, vol.21
, pp. 352-358
-
-
Belostotsky, D.1
|