A choreography of centrosomal mRNAs reveals a conserved localization mechanism involving active polysome transport

Centrosomes function as microtubule organizing centers where several mRNAs accumulate. By employing high-throughput single molecule FISH screening, the authors discover that 8 human mRNAs localize to centrosomes with unique cell cycle dependent patterns using an active polysome targeting mechanism.

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Autores principales: Adham Safieddine, Emeline Coleno, Soha Salloum, Arthur Imbert, Abdel-Meneem Traboulsi, Oh Sung Kwon, Frederic Lionneton, Virginie Georget, Marie-Cécile Robert, Thierry Gostan, Charles-Henri Lecellier, Racha Chouaib, Xavier Pichon, Hervé Le Hir, Kazem Zibara, Florian Mueller, Thomas Walter, Marion Peter, Edouard Bertrand
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/25ad29dc528349468528a16fc452a6aa
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spelling oai:doaj.org-article:25ad29dc528349468528a16fc452a6aa2021-12-02T15:53:26ZA choreography of centrosomal mRNAs reveals a conserved localization mechanism involving active polysome transport10.1038/s41467-021-21585-72041-1723https://doaj.org/article/25ad29dc528349468528a16fc452a6aa2021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21585-7https://doaj.org/toc/2041-1723Centrosomes function as microtubule organizing centers where several mRNAs accumulate. By employing high-throughput single molecule FISH screening, the authors discover that 8 human mRNAs localize to centrosomes with unique cell cycle dependent patterns using an active polysome targeting mechanism.Adham SafieddineEmeline ColenoSoha SalloumArthur ImbertAbdel-Meneem TraboulsiOh Sung KwonFrederic LionnetonVirginie GeorgetMarie-Cécile RobertThierry GostanCharles-Henri LecellierRacha ChouaibXavier PichonHervé Le HirKazem ZibaraFlorian MuellerThomas WalterMarion PeterEdouard BertrandNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-21 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Adham Safieddine
Emeline Coleno
Soha Salloum
Arthur Imbert
Abdel-Meneem Traboulsi
Oh Sung Kwon
Frederic Lionneton
Virginie Georget
Marie-Cécile Robert
Thierry Gostan
Charles-Henri Lecellier
Racha Chouaib
Xavier Pichon
Hervé Le Hir
Kazem Zibara
Florian Mueller
Thomas Walter
Marion Peter
Edouard Bertrand
A choreography of centrosomal mRNAs reveals a conserved localization mechanism involving active polysome transport
description Centrosomes function as microtubule organizing centers where several mRNAs accumulate. By employing high-throughput single molecule FISH screening, the authors discover that 8 human mRNAs localize to centrosomes with unique cell cycle dependent patterns using an active polysome targeting mechanism.
format article
author Adham Safieddine
Emeline Coleno
Soha Salloum
Arthur Imbert
Abdel-Meneem Traboulsi
Oh Sung Kwon
Frederic Lionneton
Virginie Georget
Marie-Cécile Robert
Thierry Gostan
Charles-Henri Lecellier
Racha Chouaib
Xavier Pichon
Hervé Le Hir
Kazem Zibara
Florian Mueller
Thomas Walter
Marion Peter
Edouard Bertrand
author_facet Adham Safieddine
Emeline Coleno
Soha Salloum
Arthur Imbert
Abdel-Meneem Traboulsi
Oh Sung Kwon
Frederic Lionneton
Virginie Georget
Marie-Cécile Robert
Thierry Gostan
Charles-Henri Lecellier
Racha Chouaib
Xavier Pichon
Hervé Le Hir
Kazem Zibara
Florian Mueller
Thomas Walter
Marion Peter
Edouard Bertrand
author_sort Adham Safieddine
title A choreography of centrosomal mRNAs reveals a conserved localization mechanism involving active polysome transport
title_short A choreography of centrosomal mRNAs reveals a conserved localization mechanism involving active polysome transport
title_full A choreography of centrosomal mRNAs reveals a conserved localization mechanism involving active polysome transport
title_fullStr A choreography of centrosomal mRNAs reveals a conserved localization mechanism involving active polysome transport
title_full_unstemmed A choreography of centrosomal mRNAs reveals a conserved localization mechanism involving active polysome transport
title_sort choreography of centrosomal mrnas reveals a conserved localization mechanism involving active polysome transport
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/25ad29dc528349468528a16fc452a6aa
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