The TUTase URT1 connects decapping activators and prevents the accumulation of excessively deadenylated mRNAs to avoid siRNA biogenesis

TUTase mediated uridylation of mRNA promotes degradation. Here, Scheer, de Almeida et al. show that Arabidopsis TUTase URT1 interacts directly with the translation inhibitor and decay factor DECAPPING5 and suppresses siRNA biogenesis by preventing accumulation of deadenylated mRNAs

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Autores principales: Hélène Scheer, Caroline de Almeida, Emilie Ferrier, Quentin Simonnot, Laure Poirier, David Pflieger, François M. Sement, Sandrine Koechler, Christina Piermaria, Paweł Krawczyk, Seweryn Mroczek, Johana Chicher, Lauriane Kuhn, Andrzej Dziembowski, Philippe Hammann, Hélène Zuber, Dominique Gagliardi
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/d26320e63277491b9c09179e1c48bfd5
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spelling oai:doaj.org-article:d26320e63277491b9c09179e1c48bfd52021-12-02T15:52:56ZThe TUTase URT1 connects decapping activators and prevents the accumulation of excessively deadenylated mRNAs to avoid siRNA biogenesis10.1038/s41467-021-21382-22041-1723https://doaj.org/article/d26320e63277491b9c09179e1c48bfd52021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21382-2https://doaj.org/toc/2041-1723TUTase mediated uridylation of mRNA promotes degradation. Here, Scheer, de Almeida et al. show that Arabidopsis TUTase URT1 interacts directly with the translation inhibitor and decay factor DECAPPING5 and suppresses siRNA biogenesis by preventing accumulation of deadenylated mRNAsHélène ScheerCaroline de AlmeidaEmilie FerrierQuentin SimonnotLaure PoirierDavid PfliegerFrançois M. SementSandrine KoechlerChristina PiermariaPaweł KrawczykSeweryn MroczekJohana ChicherLauriane KuhnAndrzej DziembowskiPhilippe HammannHélène ZuberDominique GagliardiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-17 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Hélène Scheer
Caroline de Almeida
Emilie Ferrier
Quentin Simonnot
Laure Poirier
David Pflieger
François M. Sement
Sandrine Koechler
Christina Piermaria
Paweł Krawczyk
Seweryn Mroczek
Johana Chicher
Lauriane Kuhn
Andrzej Dziembowski
Philippe Hammann
Hélène Zuber
Dominique Gagliardi
The TUTase URT1 connects decapping activators and prevents the accumulation of excessively deadenylated mRNAs to avoid siRNA biogenesis
description TUTase mediated uridylation of mRNA promotes degradation. Here, Scheer, de Almeida et al. show that Arabidopsis TUTase URT1 interacts directly with the translation inhibitor and decay factor DECAPPING5 and suppresses siRNA biogenesis by preventing accumulation of deadenylated mRNAs
format article
author Hélène Scheer
Caroline de Almeida
Emilie Ferrier
Quentin Simonnot
Laure Poirier
David Pflieger
François M. Sement
Sandrine Koechler
Christina Piermaria
Paweł Krawczyk
Seweryn Mroczek
Johana Chicher
Lauriane Kuhn
Andrzej Dziembowski
Philippe Hammann
Hélène Zuber
Dominique Gagliardi
author_facet Hélène Scheer
Caroline de Almeida
Emilie Ferrier
Quentin Simonnot
Laure Poirier
David Pflieger
François M. Sement
Sandrine Koechler
Christina Piermaria
Paweł Krawczyk
Seweryn Mroczek
Johana Chicher
Lauriane Kuhn
Andrzej Dziembowski
Philippe Hammann
Hélène Zuber
Dominique Gagliardi
author_sort Hélène Scheer
title The TUTase URT1 connects decapping activators and prevents the accumulation of excessively deadenylated mRNAs to avoid siRNA biogenesis
title_short The TUTase URT1 connects decapping activators and prevents the accumulation of excessively deadenylated mRNAs to avoid siRNA biogenesis
title_full The TUTase URT1 connects decapping activators and prevents the accumulation of excessively deadenylated mRNAs to avoid siRNA biogenesis
title_fullStr The TUTase URT1 connects decapping activators and prevents the accumulation of excessively deadenylated mRNAs to avoid siRNA biogenesis
title_full_unstemmed The TUTase URT1 connects decapping activators and prevents the accumulation of excessively deadenylated mRNAs to avoid siRNA biogenesis
title_sort tutase urt1 connects decapping activators and prevents the accumulation of excessively deadenylated mrnas to avoid sirna biogenesis
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/d26320e63277491b9c09179e1c48bfd5
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