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Free mRNA in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules

The sequence of events leading to stress granule assembly in stressed cells remains elusive. We show here, using isotope labeling and ion microprobe, that proportionally more RNA than proteins are present in stress granules than in surrounding cytoplasm. We further demonstrate that the delivery of s...

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Detalles Bibliográficos
Autores principales: Bounedjah, Ouissame, Desforges, Bénédicte, Wu, Ting-Di, Pioche-Durieu, Catherine, Marco, Sergio, Hamon, Loic, Curmi, Patrick A., Guerquin-Kern, Jean-Luc, Piétrement, Olivier, Pastré, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4117795/
https://www.ncbi.nlm.nih.gov/pubmed/25013173
http://dx.doi.org/10.1093/nar/gku582
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author Bounedjah, Ouissame
Desforges, Bénédicte
Wu, Ting-Di
Pioche-Durieu, Catherine
Marco, Sergio
Hamon, Loic
Curmi, Patrick A.
Guerquin-Kern, Jean-Luc
Piétrement, Olivier
Pastré, David
author_facet Bounedjah, Ouissame
Desforges, Bénédicte
Wu, Ting-Di
Pioche-Durieu, Catherine
Marco, Sergio
Hamon, Loic
Curmi, Patrick A.
Guerquin-Kern, Jean-Luc
Piétrement, Olivier
Pastré, David
author_sort Bounedjah, Ouissame
collection PubMed
description The sequence of events leading to stress granule assembly in stressed cells remains elusive. We show here, using isotope labeling and ion microprobe, that proportionally more RNA than proteins are present in stress granules than in surrounding cytoplasm. We further demonstrate that the delivery of single strand polynucleotides, mRNA and ssDNA, to the cytoplasm can trigger stress granule assembly. On the other hand, increasing the cytoplasmic level of mRNA-binding proteins like YB-1 can directly prevent the aggregation of mRNA by forming isolated mRNPs, as evidenced by atomic force microscopy. Interestingly, we also discovered that enucleated cells do form stress granules, demonstrating that the translocation to the cytoplasm of nuclear prion-like RNA-binding proteins like TIA-1 is dispensable for stress granule assembly. The results lead to an alternative view on stress granule formation based on the following sequence of events: after the massive dissociation of polysomes during stress, mRNA-stabilizing proteins like YB-1 are outnumbered by the burst of nonpolysomal mRNA. mRNA freed of ribosomes thus becomes accessible to mRNA-binding aggregation-prone proteins or misfolded proteins, which induces stress granule formation. Within the frame of this model, the shuttling of nuclear mRNA-stabilizing proteins to the cytoplasm could dissociate stress granules or prevent their assembly.
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spelling pubmed-41177952015-05-18 Free mRNA in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules Bounedjah, Ouissame Desforges, Bénédicte Wu, Ting-Di Pioche-Durieu, Catherine Marco, Sergio Hamon, Loic Curmi, Patrick A. Guerquin-Kern, Jean-Luc Piétrement, Olivier Pastré, David Nucleic Acids Res RNA The sequence of events leading to stress granule assembly in stressed cells remains elusive. We show here, using isotope labeling and ion microprobe, that proportionally more RNA than proteins are present in stress granules than in surrounding cytoplasm. We further demonstrate that the delivery of single strand polynucleotides, mRNA and ssDNA, to the cytoplasm can trigger stress granule assembly. On the other hand, increasing the cytoplasmic level of mRNA-binding proteins like YB-1 can directly prevent the aggregation of mRNA by forming isolated mRNPs, as evidenced by atomic force microscopy. Interestingly, we also discovered that enucleated cells do form stress granules, demonstrating that the translocation to the cytoplasm of nuclear prion-like RNA-binding proteins like TIA-1 is dispensable for stress granule assembly. The results lead to an alternative view on stress granule formation based on the following sequence of events: after the massive dissociation of polysomes during stress, mRNA-stabilizing proteins like YB-1 are outnumbered by the burst of nonpolysomal mRNA. mRNA freed of ribosomes thus becomes accessible to mRNA-binding aggregation-prone proteins or misfolded proteins, which induces stress granule formation. Within the frame of this model, the shuttling of nuclear mRNA-stabilizing proteins to the cytoplasm could dissociate stress granules or prevent their assembly. Oxford University Press 2014-09-01 2014-07-10 /pmc/articles/PMC4117795/ /pubmed/25013173 http://dx.doi.org/10.1093/nar/gku582 Text en © The Author(s) 2014. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle RNA
Bounedjah, Ouissame
Desforges, Bénédicte
Wu, Ting-Di
Pioche-Durieu, Catherine
Marco, Sergio
Hamon, Loic
Curmi, Patrick A.
Guerquin-Kern, Jean-Luc
Piétrement, Olivier
Pastré, David
Free mRNA in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules
title Free mRNA in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules
title_full Free mRNA in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules
title_fullStr Free mRNA in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules
title_full_unstemmed Free mRNA in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules
title_short Free mRNA in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules
title_sort free mrna in excess upon polysome dissociation is a scaffold for protein multimerization to form stress granules
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4117795/
https://www.ncbi.nlm.nih.gov/pubmed/25013173
http://dx.doi.org/10.1093/nar/gku582
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