Emerging themes in non-coding RNA quality control.
暂无分享,去创建一个
[1] Quansheng Liu,et al. Reconstitution, Activities, and Structure of the Eukaryotic RNA Exosome , 2006, Cell.
[2] M. Moore,et al. A late-acting quality control process for mature eukaryotic rRNAs. , 2006, Molecular cell.
[3] Anette Thyssen Jonstrup,et al. Structure of the nuclear exosome component Rrp6p reveals an interplay between the active site and the HRDC domain , 2006, Proceedings of the National Academy of Sciences.
[4] David Tollervey,et al. RNA-quality control by the exosome , 2006, Nature Reviews Molecular Cell Biology.
[5] D. Tollervey,et al. Surveillance of nuclear‐restricted pre‐ribosomes within a subnucleolar region of Saccharomyces cerevisiae , 2006, The EMBO journal.
[6] Matthew S. Sachs,et al. Early nonsense: mRNA decay solves a translational problem , 2006, Nature Reviews Molecular Cell Biology.
[7] C. A. Theimer,et al. Structure and function of telomerase RNA. , 2006, Current opinion in structural biology.
[8] S. Wolin,et al. The La protein functions redundantly with tRNA modification enzymes to ensure tRNA structural stability. , 2006, RNA.
[9] JamesC . Anderson,et al. Nuclear RNA surveillance in Saccharomyces cerevisiae: Trf4p-dependent polyadenylation of nascent hypomethylated tRNA and an aberrant form of 5S rRNA. , 2006, RNA.
[10] M. Ares,et al. Accumulation of unstable promoter-associated transcripts upon loss of the nuclear exosome subunit Rrp6p in Saccharomyces cerevisiae. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[11] E. Izaurralde,et al. Quality control of gene expression: a stepwise assembly pathway for the surveillance complex that triggers nonsense-mediated mRNA decay. , 2006, Genes & development.
[12] D. Tollervey,et al. Yeast Trf5p is a nuclear poly(A) polymerase , 2006, EMBO reports.
[13] Weifeng Gu,et al. Rapid tRNA decay can result from lack of nonessential modifications. , 2006, Molecular cell.
[14] K. Hopfner,et al. Structural framework for the mechanism of archaeal exosomes in RNA processing. , 2005, Molecular cell.
[15] E. Conti,et al. Structural basis of 3' end RNA recognition and exoribonucleolytic cleavage by an exosome RNase PH core. , 2005, Molecular cell.
[16] G. Storz,et al. An abundance of RNA regulators. , 2005, Annual review of biochemistry.
[17] E. Conti,et al. The archaeal exosome core is a hexameric ring structure with three catalytic subunits , 2005, Nature Structural &Molecular Biology.
[18] E. Petfalski,et al. RNA Degradation by the Exosome Is Promoted by a Nuclear Polyadenylation Complex , 2005, Cell.
[19] B. Séraphin,et al. Cryptic Pol II Transcripts Are Degraded by a Nuclear Quality Control Pathway Involving a New Poly(A) Polymerase , 2005, Cell.
[20] Gabriele Fuchs,et al. Structural Insights into RNA Quality Control: The Ro Autoantigen Binds Misfolded RNAs via Its Central Cavity , 2005, Cell.
[21] W. Keller,et al. A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control , 2005, PLoS biology.
[22] M. Deutscher,et al. An important role for RNase R in mRNA decay. , 2005, Molecular cell.
[23] Christophe Dez,et al. RNA structure and function in C/D and H/ACA s(no)RNPs. , 2004, Current opinion in structural biology.
[24] Alan G Hinnebusch,et al. Nuclear surveillance and degradation of hypomodified initiator tRNAMet in S. cerevisiae. , 2004, Genes & development.
[25] S. Wolin,et al. The Ro 60 kDa autoantigen: insights into cellular function and role in autoimmunity , 2004, Journal of Molecular Medicine.
[26] L. Maquat. Nonsense-mediated mRNA decay: splicing, translation and mRNP dynamics , 2004, Nature Reviews Molecular Cell Biology.
[27] R. Flavell,et al. The Ro Autoantigen Binds Misfolded U2 Small Nuclear RNAs and Assists Mammalian Cell Survival after UV Irradiation , 2003, Current Biology.
[28] M. Deutscher,et al. Quality control of ribosomal RNA mediated by polynucleotide phosphorylase and RNase R , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[29] M. Deutscher,et al. RNA quality control: degradation of defective transfer RNA , 2002, The EMBO journal.
[30] R. Parker,et al. Yeast Exosome Mutants Accumulate 3′-Extended Polyadenylated Forms of U4 Small Nuclear RNA and Small Nucleolar RNAs , 2000, Molecular and Cellular Biology.
[31] S. R. Kushner,et al. Analysis of the function of Escherichia coli poly(A) polymerase I in RNA metabolism , 1999, Molecular microbiology.
[32] P. Mitchell,et al. Functions of the exosome in rRNA, snoRNA and snRNA synthesis , 1999, The EMBO journal.
[33] M. Deutscher,et al. Polyadenylation of stable RNA precursors in vivo. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[34] M. Mann,et al. The Exosome: A Conserved Eukaryotic RNA Processing Complex Containing Multiple 3′→5′ Exoribonucleases , 1997, Cell.
[35] D. J. Van Horn,et al. A misfolded form of 5S rRNA is complexed with the Ro and La autoantigens. , 1996, RNA.
[36] S. Wolin,et al. A possible role for the 60-kD Ro autoantigen in a discard pathway for defective 5S rRNA precursors. , 1994, Genes & development.
[37] B. Séraphin,et al. A single subunit, Dis3, is essentially responsible for yeast exosome core activity , 2007, Nature Structural &Molecular Biology.
[38] Victor Fok,et al. The RNA World , 2006 .
[39] G. Chanfreau,et al. Contributions of Trf4p- and Trf5p-dependent polyadenylation to the processing and degradative functions of the yeast nuclear exosome. , 2006, RNA.
[40] S. Wolin,et al. Structural and biochemical basis for misfolded RNA recognition by the Ro autoantigen , 2006, Nature Structural &Molecular Biology.
[41] M. Shimaoka,et al. Conformational regulation of integrin structure and function. , 2002, Annual review of biophysics and biomolecular structure.