The human RNA polymerase II-associated factor 1 (hPaf1): a new regulator of cell-cycle progression.

The human PAF (hPAF) complex is part of the RNA polymerase II transcription apparatus and regulates multiple steps in gene expression. Further, the yeast homolog of hPaf1 has a role in regulating the expression of a subset of genes involved in the cell-cycle. We therefore investigated the role of hP...

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Main Authors: Nicolas Moniaux, Christophe Nemos, Shonali Deb, Bing Zhu, Irena Dornreiter, Michael A Hollingsworth, Surinder K Batra
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-09-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2740866?pdf=render
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spelling doaj-a249896c7a4241939a0d88c9d53ef67b2020-11-25T02:13:35ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-09-0149e707710.1371/journal.pone.0007077The human RNA polymerase II-associated factor 1 (hPaf1): a new regulator of cell-cycle progression.Nicolas MoniauxChristophe NemosShonali DebBing ZhuIrena DornreiterMichael A HollingsworthSurinder K BatraThe human PAF (hPAF) complex is part of the RNA polymerase II transcription apparatus and regulates multiple steps in gene expression. Further, the yeast homolog of hPaf1 has a role in regulating the expression of a subset of genes involved in the cell-cycle. We therefore investigated the role of hPaf1 during progression of the cell-cycle.Herein, we report that the expression of hPaf1, a subunit of the hPAF complex, increases with cell-cycle progression and is regulated in a cell-cycle dependant manner. hPaf1 specifically regulates a subclass of genes directly implicated in cell-cycle progression during G1/S, S/G2, and G2/M. In prophase, hPaf1 aligns in filament-like structures, whereas in metaphase it is present within the pole forming a crown-like structure, surrounding the centrosomes. Moreover, hPaf1 is degraded during the metaphase to anaphase transition. In the nucleus, hPaf1 regulates the expression of cyclins A1, A2, D1, E1, B1, and Cdk1. In addition, expression of hPaf1 delays DNA replication but favors the G2/M transition, in part through microtubule assembly and mitotic spindle formation.Our results identify hPaf1 and the hPAF complex as key regulators of cell-cycle progression. Mutation or loss of stoichiometry of at least one of the members may potentially lead to cancer development.http://europepmc.org/articles/PMC2740866?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Nicolas Moniaux
Christophe Nemos
Shonali Deb
Bing Zhu
Irena Dornreiter
Michael A Hollingsworth
Surinder K Batra
spellingShingle Nicolas Moniaux
Christophe Nemos
Shonali Deb
Bing Zhu
Irena Dornreiter
Michael A Hollingsworth
Surinder K Batra
The human RNA polymerase II-associated factor 1 (hPaf1): a new regulator of cell-cycle progression.
PLoS ONE
author_facet Nicolas Moniaux
Christophe Nemos
Shonali Deb
Bing Zhu
Irena Dornreiter
Michael A Hollingsworth
Surinder K Batra
author_sort Nicolas Moniaux
title The human RNA polymerase II-associated factor 1 (hPaf1): a new regulator of cell-cycle progression.
title_short The human RNA polymerase II-associated factor 1 (hPaf1): a new regulator of cell-cycle progression.
title_full The human RNA polymerase II-associated factor 1 (hPaf1): a new regulator of cell-cycle progression.
title_fullStr The human RNA polymerase II-associated factor 1 (hPaf1): a new regulator of cell-cycle progression.
title_full_unstemmed The human RNA polymerase II-associated factor 1 (hPaf1): a new regulator of cell-cycle progression.
title_sort human rna polymerase ii-associated factor 1 (hpaf1): a new regulator of cell-cycle progression.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-09-01
description The human PAF (hPAF) complex is part of the RNA polymerase II transcription apparatus and regulates multiple steps in gene expression. Further, the yeast homolog of hPaf1 has a role in regulating the expression of a subset of genes involved in the cell-cycle. We therefore investigated the role of hPaf1 during progression of the cell-cycle.Herein, we report that the expression of hPaf1, a subunit of the hPAF complex, increases with cell-cycle progression and is regulated in a cell-cycle dependant manner. hPaf1 specifically regulates a subclass of genes directly implicated in cell-cycle progression during G1/S, S/G2, and G2/M. In prophase, hPaf1 aligns in filament-like structures, whereas in metaphase it is present within the pole forming a crown-like structure, surrounding the centrosomes. Moreover, hPaf1 is degraded during the metaphase to anaphase transition. In the nucleus, hPaf1 regulates the expression of cyclins A1, A2, D1, E1, B1, and Cdk1. In addition, expression of hPaf1 delays DNA replication but favors the G2/M transition, in part through microtubule assembly and mitotic spindle formation.Our results identify hPaf1 and the hPAF complex as key regulators of cell-cycle progression. Mutation or loss of stoichiometry of at least one of the members may potentially lead to cancer development.
url http://europepmc.org/articles/PMC2740866?pdf=render
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