Cell cycle-dependent recruitment of polycomb proteins to the ASNS promoter counteracts C/ebp-mediated transcriptional activation in Bombyx mori.

Epigenetic modifiers and transcription factors contribute to developmentally programmed gene expression. Here, we establish a functional link between epigenetic regulation by Polycomb group (PcG) proteins and transcriptional regulation by C/ebp that orchestrates the correct expression of Bombyx mori...

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Main Authors: Zhiqing Li, Daojun Cheng, Hiroaki Mon, Li Zhu, Jian Xu, Tsuneyuki Tatsuke, Jae Man Lee, Qingyou Xia, Takahiro Kusakabe
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3557315?pdf=render
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spelling doaj-a21bd451f62e496f955fb4c25bb9d19f2020-11-25T02:44:56ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0181e5232010.1371/journal.pone.0052320Cell cycle-dependent recruitment of polycomb proteins to the ASNS promoter counteracts C/ebp-mediated transcriptional activation in Bombyx mori.Zhiqing LiDaojun ChengHiroaki MonLi ZhuJian XuTsuneyuki TatsukeJae Man LeeQingyou XiaTakahiro KusakabeEpigenetic modifiers and transcription factors contribute to developmentally programmed gene expression. Here, we establish a functional link between epigenetic regulation by Polycomb group (PcG) proteins and transcriptional regulation by C/ebp that orchestrates the correct expression of Bombyx mori asparagine synthetase (BmASNS), a gene involved in the biosynthesis of asparagine. We show that the cis-regulatory elements of YY1-binding motifs and the CpG island present on the BmASNS promoter are required for the recruitment of PcG proteins and the subsequent deposition of the epigenetic repression mark H3K27me3. RNAi-mediated knockdown of PcG genes leads to derepression of the BmASNS gene via the recruitment of activators, including BmC/ebp, to the promoter. Intriguingly, we find that PcG proteins and BmC/ebp can dynamically modulate the transcriptional output of the BmASNS target in a cell cycle-dependent manner. It will be essential to suppress BmASNS expression by PcG proteins at the G2/M phase of the cell cycle in the presence of BmC/ebp activator. Thus, our results provide a novel insight into the molecular mechanism underlying the recruitment and regulation of the PcG system at a discrete gene locus in Bombyx mori.http://europepmc.org/articles/PMC3557315?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Zhiqing Li
Daojun Cheng
Hiroaki Mon
Li Zhu
Jian Xu
Tsuneyuki Tatsuke
Jae Man Lee
Qingyou Xia
Takahiro Kusakabe
spellingShingle Zhiqing Li
Daojun Cheng
Hiroaki Mon
Li Zhu
Jian Xu
Tsuneyuki Tatsuke
Jae Man Lee
Qingyou Xia
Takahiro Kusakabe
Cell cycle-dependent recruitment of polycomb proteins to the ASNS promoter counteracts C/ebp-mediated transcriptional activation in Bombyx mori.
PLoS ONE
author_facet Zhiqing Li
Daojun Cheng
Hiroaki Mon
Li Zhu
Jian Xu
Tsuneyuki Tatsuke
Jae Man Lee
Qingyou Xia
Takahiro Kusakabe
author_sort Zhiqing Li
title Cell cycle-dependent recruitment of polycomb proteins to the ASNS promoter counteracts C/ebp-mediated transcriptional activation in Bombyx mori.
title_short Cell cycle-dependent recruitment of polycomb proteins to the ASNS promoter counteracts C/ebp-mediated transcriptional activation in Bombyx mori.
title_full Cell cycle-dependent recruitment of polycomb proteins to the ASNS promoter counteracts C/ebp-mediated transcriptional activation in Bombyx mori.
title_fullStr Cell cycle-dependent recruitment of polycomb proteins to the ASNS promoter counteracts C/ebp-mediated transcriptional activation in Bombyx mori.
title_full_unstemmed Cell cycle-dependent recruitment of polycomb proteins to the ASNS promoter counteracts C/ebp-mediated transcriptional activation in Bombyx mori.
title_sort cell cycle-dependent recruitment of polycomb proteins to the asns promoter counteracts c/ebp-mediated transcriptional activation in bombyx mori.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Epigenetic modifiers and transcription factors contribute to developmentally programmed gene expression. Here, we establish a functional link between epigenetic regulation by Polycomb group (PcG) proteins and transcriptional regulation by C/ebp that orchestrates the correct expression of Bombyx mori asparagine synthetase (BmASNS), a gene involved in the biosynthesis of asparagine. We show that the cis-regulatory elements of YY1-binding motifs and the CpG island present on the BmASNS promoter are required for the recruitment of PcG proteins and the subsequent deposition of the epigenetic repression mark H3K27me3. RNAi-mediated knockdown of PcG genes leads to derepression of the BmASNS gene via the recruitment of activators, including BmC/ebp, to the promoter. Intriguingly, we find that PcG proteins and BmC/ebp can dynamically modulate the transcriptional output of the BmASNS target in a cell cycle-dependent manner. It will be essential to suppress BmASNS expression by PcG proteins at the G2/M phase of the cell cycle in the presence of BmC/ebp activator. Thus, our results provide a novel insight into the molecular mechanism underlying the recruitment and regulation of the PcG system at a discrete gene locus in Bombyx mori.
url http://europepmc.org/articles/PMC3557315?pdf=render
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