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A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control

Eukaryotic cells contain several unconventional poly(A) polymerases in addition to the canonical enzymes responsible for the synthesis of poly(A) tails of nuclear messenger RNA precursors. The yeast protein Trf4p has been implicated in a quality control pathway that leads to the polyadenylation and...

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Autores principales: Vanˇácˇová, Sˇteˇpánka, Wolf, Jeannette, Martin, Georges, Blank, Diana, Dettwiler, Sabine, Friedlein, Arno, Langen, Hanno, Keith, Gérard, Keller, Walter
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1079787/
https://www.ncbi.nlm.nih.gov/pubmed/15828860
http://dx.doi.org/10.1371/journal.pbio.0030189
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author Vanˇácˇová, Sˇteˇpánka
Wolf, Jeannette
Martin, Georges
Blank, Diana
Dettwiler, Sabine
Friedlein, Arno
Langen, Hanno
Keith, Gérard
Keller, Walter
author_facet Vanˇácˇová, Sˇteˇpánka
Wolf, Jeannette
Martin, Georges
Blank, Diana
Dettwiler, Sabine
Friedlein, Arno
Langen, Hanno
Keith, Gérard
Keller, Walter
author_sort Vanˇácˇová, Sˇteˇpánka
collection PubMed
description Eukaryotic cells contain several unconventional poly(A) polymerases in addition to the canonical enzymes responsible for the synthesis of poly(A) tails of nuclear messenger RNA precursors. The yeast protein Trf4p has been implicated in a quality control pathway that leads to the polyadenylation and subsequent exosome-mediated degradation of hypomethylated initiator tRNA(Met) (tRNA(i) (Met)). Here we show that Trf4p is the catalytic subunit of a new poly(A) polymerase complex that contains Air1p or Air2p as potential RNA-binding subunits, as well as the putative RNA helicase Mtr4p. Comparison of native tRNA(i) (Met) with its in vitro transcribed unmodified counterpart revealed that the unmodified RNA was preferentially polyadenylated by affinity-purified Trf4 complex from yeast, as well as by complexes reconstituted from recombinant components. These results and additional experiments with other tRNA substrates suggested that the Trf4 complex can discriminate between native tRNAs and molecules that are incorrectly folded. Moreover, the polyadenylation activity of the Trf4 complex stimulated the degradation of unmodified tRNA(i) (Met) by nuclear exosome fractions in vitro. Degradation was most efficient when coupled to the polyadenylation activity of the Trf4 complex, indicating that the poly(A) tails serve as signals for the recruitment of the exosome. This polyadenylation-mediated RNA surveillance resembles the role of polyadenylation in bacterial RNA turnover.
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spelling pubmed-10797872005-04-19 A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control Vanˇácˇová, Sˇteˇpánka Wolf, Jeannette Martin, Georges Blank, Diana Dettwiler, Sabine Friedlein, Arno Langen, Hanno Keith, Gérard Keller, Walter PLoS Biol Research Article Eukaryotic cells contain several unconventional poly(A) polymerases in addition to the canonical enzymes responsible for the synthesis of poly(A) tails of nuclear messenger RNA precursors. The yeast protein Trf4p has been implicated in a quality control pathway that leads to the polyadenylation and subsequent exosome-mediated degradation of hypomethylated initiator tRNA(Met) (tRNA(i) (Met)). Here we show that Trf4p is the catalytic subunit of a new poly(A) polymerase complex that contains Air1p or Air2p as potential RNA-binding subunits, as well as the putative RNA helicase Mtr4p. Comparison of native tRNA(i) (Met) with its in vitro transcribed unmodified counterpart revealed that the unmodified RNA was preferentially polyadenylated by affinity-purified Trf4 complex from yeast, as well as by complexes reconstituted from recombinant components. These results and additional experiments with other tRNA substrates suggested that the Trf4 complex can discriminate between native tRNAs and molecules that are incorrectly folded. Moreover, the polyadenylation activity of the Trf4 complex stimulated the degradation of unmodified tRNA(i) (Met) by nuclear exosome fractions in vitro. Degradation was most efficient when coupled to the polyadenylation activity of the Trf4 complex, indicating that the poly(A) tails serve as signals for the recruitment of the exosome. This polyadenylation-mediated RNA surveillance resembles the role of polyadenylation in bacterial RNA turnover. Public Library of Science 2005-06 2005-04-19 /pmc/articles/PMC1079787/ /pubmed/15828860 http://dx.doi.org/10.1371/journal.pbio.0030189 Text en Copyright: © 2005 Vanˇácˇová et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Vanˇácˇová, Sˇteˇpánka
Wolf, Jeannette
Martin, Georges
Blank, Diana
Dettwiler, Sabine
Friedlein, Arno
Langen, Hanno
Keith, Gérard
Keller, Walter
A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control
title A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control
title_full A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control
title_fullStr A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control
title_full_unstemmed A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control
title_short A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control
title_sort new yeast poly(a) polymerase complex involved in rna quality control
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1079787/
https://www.ncbi.nlm.nih.gov/pubmed/15828860
http://dx.doi.org/10.1371/journal.pbio.0030189
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