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The Prefoldin Complex Regulates Chromatin Dynamics during Transcription Elongation

Transcriptional elongation requires the concerted action of several factors that allow RNA polymerase II to advance through chromatin in a highly processive manner. In order to identify novel elongation factors, we performed systematic yeast genetic screening based on the GLAM (Gene Length-dependent...

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Autores principales: Millán-Zambrano, Gonzalo, Rodríguez-Gil, Alfonso, Peñate, Xenia, de Miguel-Jiménez, Lola, Morillo-Huesca, Macarena, Krogan, Nevan, Chávez, Sebastián
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3777993/
https://www.ncbi.nlm.nih.gov/pubmed/24068951
http://dx.doi.org/10.1371/journal.pgen.1003776
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author Millán-Zambrano, Gonzalo
Rodríguez-Gil, Alfonso
Peñate, Xenia
de Miguel-Jiménez, Lola
Morillo-Huesca, Macarena
Krogan, Nevan
Chávez, Sebastián
author_facet Millán-Zambrano, Gonzalo
Rodríguez-Gil, Alfonso
Peñate, Xenia
de Miguel-Jiménez, Lola
Morillo-Huesca, Macarena
Krogan, Nevan
Chávez, Sebastián
author_sort Millán-Zambrano, Gonzalo
collection PubMed
description Transcriptional elongation requires the concerted action of several factors that allow RNA polymerase II to advance through chromatin in a highly processive manner. In order to identify novel elongation factors, we performed systematic yeast genetic screening based on the GLAM (Gene Length-dependent Accumulation of mRNA) assay, which is used to detect defects in the expression of long transcription units. Apart from well-known transcription elongation factors, we identified mutants in the prefoldin complex subunits, which were among those that caused the most dramatic phenotype. We found that prefoldin, so far involved in the cytoplasmic co-translational assembly of protein complexes, is also present in the nucleus and that a subset of its subunits are recruited to chromatin in a transcription-dependent manner. Prefoldin influences RNA polymerase II the elongation rate in vivo and plays an especially important role in the transcription elongation of long genes and those whose promoter regions contain a canonical TATA box. Finally, we found a specific functional link between prefoldin and histone dynamics after nucleosome remodeling, which is consistent with the extensive network of genetic interactions between this factor and the machinery regulating chromatin function. This study establishes the involvement of prefoldin in transcription elongation, and supports a role for this complex in cotranscriptional histone eviction.
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spelling pubmed-37779932013-09-25 The Prefoldin Complex Regulates Chromatin Dynamics during Transcription Elongation Millán-Zambrano, Gonzalo Rodríguez-Gil, Alfonso Peñate, Xenia de Miguel-Jiménez, Lola Morillo-Huesca, Macarena Krogan, Nevan Chávez, Sebastián PLoS Genet Research Article Transcriptional elongation requires the concerted action of several factors that allow RNA polymerase II to advance through chromatin in a highly processive manner. In order to identify novel elongation factors, we performed systematic yeast genetic screening based on the GLAM (Gene Length-dependent Accumulation of mRNA) assay, which is used to detect defects in the expression of long transcription units. Apart from well-known transcription elongation factors, we identified mutants in the prefoldin complex subunits, which were among those that caused the most dramatic phenotype. We found that prefoldin, so far involved in the cytoplasmic co-translational assembly of protein complexes, is also present in the nucleus and that a subset of its subunits are recruited to chromatin in a transcription-dependent manner. Prefoldin influences RNA polymerase II the elongation rate in vivo and plays an especially important role in the transcription elongation of long genes and those whose promoter regions contain a canonical TATA box. Finally, we found a specific functional link between prefoldin and histone dynamics after nucleosome remodeling, which is consistent with the extensive network of genetic interactions between this factor and the machinery regulating chromatin function. This study establishes the involvement of prefoldin in transcription elongation, and supports a role for this complex in cotranscriptional histone eviction. Public Library of Science 2013-09-19 /pmc/articles/PMC3777993/ /pubmed/24068951 http://dx.doi.org/10.1371/journal.pgen.1003776 Text en © 2013 Millán-Zambrano 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
Millán-Zambrano, Gonzalo
Rodríguez-Gil, Alfonso
Peñate, Xenia
de Miguel-Jiménez, Lola
Morillo-Huesca, Macarena
Krogan, Nevan
Chávez, Sebastián
The Prefoldin Complex Regulates Chromatin Dynamics during Transcription Elongation
title The Prefoldin Complex Regulates Chromatin Dynamics during Transcription Elongation
title_full The Prefoldin Complex Regulates Chromatin Dynamics during Transcription Elongation
title_fullStr The Prefoldin Complex Regulates Chromatin Dynamics during Transcription Elongation
title_full_unstemmed The Prefoldin Complex Regulates Chromatin Dynamics during Transcription Elongation
title_short The Prefoldin Complex Regulates Chromatin Dynamics during Transcription Elongation
title_sort prefoldin complex regulates chromatin dynamics during transcription elongation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3777993/
https://www.ncbi.nlm.nih.gov/pubmed/24068951
http://dx.doi.org/10.1371/journal.pgen.1003776
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