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An extended dsRBD with a novel zinc-binding motif mediates nuclear retention of fission yeast Dicer

Dicer proteins function in RNA interference (RNAi) pathways by generating small RNAs (sRNAs). Here, we report the solution structure of the C-terminal domain of Schizosaccharomyces pombe Dicer (Dcr1). The structure reveals an unusual double-stranded RNA binding domain (dsRBD) fold embedding a novel...

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Autores principales: Barraud, Pierre, Emmerth, Stephan, Shimada, Yukiko, Hotz, Hans-Rudolf, Allain, Frédéric H-T, Bühler, Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Molecular Biology Organization 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3199388/
https://www.ncbi.nlm.nih.gov/pubmed/21847092
http://dx.doi.org/10.1038/emboj.2011.300
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author Barraud, Pierre
Emmerth, Stephan
Shimada, Yukiko
Hotz, Hans-Rudolf
Allain, Frédéric H-T
Bühler, Marc
author_facet Barraud, Pierre
Emmerth, Stephan
Shimada, Yukiko
Hotz, Hans-Rudolf
Allain, Frédéric H-T
Bühler, Marc
author_sort Barraud, Pierre
collection PubMed
description Dicer proteins function in RNA interference (RNAi) pathways by generating small RNAs (sRNAs). Here, we report the solution structure of the C-terminal domain of Schizosaccharomyces pombe Dicer (Dcr1). The structure reveals an unusual double-stranded RNA binding domain (dsRBD) fold embedding a novel zinc-binding motif that is conserved among dicers in yeast. Although the C-terminal domain of Dcr1 still binds nucleic acids, this property is dispensable for proper functioning of Dcr1. In contrast, disruption of zinc coordination renders Dcr1 mainly cytoplasmic and leads to remarkable changes in gene expression and loss of heterochromatin assembly. In summary, our results reveal novel insights into the mechanism of nuclear retention of Dcr1 and raise the possibility that this new class of dsRBDs might generally function in nucleocytoplasmic trafficking and not substrate binding. The C-terminal domain of Dcr1 constitutes a novel regulatory module that might represent a potential target for therapeutic intervention with fungal diseases.
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spelling pubmed-31993882011-11-29 An extended dsRBD with a novel zinc-binding motif mediates nuclear retention of fission yeast Dicer Barraud, Pierre Emmerth, Stephan Shimada, Yukiko Hotz, Hans-Rudolf Allain, Frédéric H-T Bühler, Marc EMBO J Article Dicer proteins function in RNA interference (RNAi) pathways by generating small RNAs (sRNAs). Here, we report the solution structure of the C-terminal domain of Schizosaccharomyces pombe Dicer (Dcr1). The structure reveals an unusual double-stranded RNA binding domain (dsRBD) fold embedding a novel zinc-binding motif that is conserved among dicers in yeast. Although the C-terminal domain of Dcr1 still binds nucleic acids, this property is dispensable for proper functioning of Dcr1. In contrast, disruption of zinc coordination renders Dcr1 mainly cytoplasmic and leads to remarkable changes in gene expression and loss of heterochromatin assembly. In summary, our results reveal novel insights into the mechanism of nuclear retention of Dcr1 and raise the possibility that this new class of dsRBDs might generally function in nucleocytoplasmic trafficking and not substrate binding. The C-terminal domain of Dcr1 constitutes a novel regulatory module that might represent a potential target for therapeutic intervention with fungal diseases. European Molecular Biology Organization 2011-10-19 2011-08-16 /pmc/articles/PMC3199388/ /pubmed/21847092 http://dx.doi.org/10.1038/emboj.2011.300 Text en Copyright © 2011, European Molecular Biology Organization https://creativecommons.org/licenses/by-nc-nd/3.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Noncommercial No Derivative Works 3.0 Unported License, which permits distribution and reproduction in any medium, provided the original author and source are credited. This license does not permit commercial exploitation or the creation of derivative works without specific permission.
spellingShingle Article
Barraud, Pierre
Emmerth, Stephan
Shimada, Yukiko
Hotz, Hans-Rudolf
Allain, Frédéric H-T
Bühler, Marc
An extended dsRBD with a novel zinc-binding motif mediates nuclear retention of fission yeast Dicer
title An extended dsRBD with a novel zinc-binding motif mediates nuclear retention of fission yeast Dicer
title_full An extended dsRBD with a novel zinc-binding motif mediates nuclear retention of fission yeast Dicer
title_fullStr An extended dsRBD with a novel zinc-binding motif mediates nuclear retention of fission yeast Dicer
title_full_unstemmed An extended dsRBD with a novel zinc-binding motif mediates nuclear retention of fission yeast Dicer
title_short An extended dsRBD with a novel zinc-binding motif mediates nuclear retention of fission yeast Dicer
title_sort extended dsrbd with a novel zinc-binding motif mediates nuclear retention of fission yeast dicer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3199388/
https://www.ncbi.nlm.nih.gov/pubmed/21847092
http://dx.doi.org/10.1038/emboj.2011.300
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