Alternative epigenetic chromatin states of polycomb target genes.

Polycomb (PcG) regulation has been thought to produce stable long-term gene silencing. Genomic analyses in Drosophila and mammals, however, have shown that it targets many genes, which can switch state during development. Genetic evidence indicates that critical for the active state of PcG target ge...

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Main Authors: Yuri B Schwartz, Tatyana G Kahn, Per Stenberg, Katsuhito Ohno, Richard Bourgon, Vincenzo Pirrotta
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC2799325?pdf=render
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spelling doaj-4f8d22b8028d49d69d1c2048091b92802020-11-24T21:44:21ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042010-01-0161e100080510.1371/journal.pgen.1000805Alternative epigenetic chromatin states of polycomb target genes.Yuri B SchwartzTatyana G KahnPer StenbergKatsuhito OhnoRichard BourgonVincenzo PirrottaPolycomb (PcG) regulation has been thought to produce stable long-term gene silencing. Genomic analyses in Drosophila and mammals, however, have shown that it targets many genes, which can switch state during development. Genetic evidence indicates that critical for the active state of PcG target genes are the histone methyltransferases Trithorax (TRX) and ASH1. Here we analyze the repertoire of alternative states in which PcG target genes are found in different Drosophila cell lines and the role of PcG proteins TRX and ASH1 in controlling these states. Using extensive genome-wide chromatin immunoprecipitation analysis, RNAi knockdowns, and quantitative RT-PCR, we show that, in addition to the known repressed state, PcG targets can reside in a transcriptionally active state characterized by formation of an extended domain enriched in ASH1, the N-terminal, but not C-terminal moiety of TRX and H3K27ac. ASH1/TRX N-ter domains and transcription are not incompatible with repressive marks, sometimes resulting in a "balanced" state modulated by both repressors and activators. Often however, loss of PcG repression results instead in a "void" state, lacking transcription, H3K27ac, or binding of TRX or ASH1. We conclude that PcG repression is dynamic, not static, and that the propensity of a target gene to switch states depends on relative levels of PcG, TRX, and activators. N-ter TRX plays a remarkable role that antagonizes PcG repression and preempts H3K27 methylation by acetylation. This role is distinct from that usually attributed to TRX/MLL proteins at the promoter. These results have important implications for Polycomb gene regulation, the "bivalent" chromatin state of embryonic stem cells, and gene expression in development.http://europepmc.org/articles/PMC2799325?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yuri B Schwartz
Tatyana G Kahn
Per Stenberg
Katsuhito Ohno
Richard Bourgon
Vincenzo Pirrotta
spellingShingle Yuri B Schwartz
Tatyana G Kahn
Per Stenberg
Katsuhito Ohno
Richard Bourgon
Vincenzo Pirrotta
Alternative epigenetic chromatin states of polycomb target genes.
PLoS Genetics
author_facet Yuri B Schwartz
Tatyana G Kahn
Per Stenberg
Katsuhito Ohno
Richard Bourgon
Vincenzo Pirrotta
author_sort Yuri B Schwartz
title Alternative epigenetic chromatin states of polycomb target genes.
title_short Alternative epigenetic chromatin states of polycomb target genes.
title_full Alternative epigenetic chromatin states of polycomb target genes.
title_fullStr Alternative epigenetic chromatin states of polycomb target genes.
title_full_unstemmed Alternative epigenetic chromatin states of polycomb target genes.
title_sort alternative epigenetic chromatin states of polycomb target genes.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2010-01-01
description Polycomb (PcG) regulation has been thought to produce stable long-term gene silencing. Genomic analyses in Drosophila and mammals, however, have shown that it targets many genes, which can switch state during development. Genetic evidence indicates that critical for the active state of PcG target genes are the histone methyltransferases Trithorax (TRX) and ASH1. Here we analyze the repertoire of alternative states in which PcG target genes are found in different Drosophila cell lines and the role of PcG proteins TRX and ASH1 in controlling these states. Using extensive genome-wide chromatin immunoprecipitation analysis, RNAi knockdowns, and quantitative RT-PCR, we show that, in addition to the known repressed state, PcG targets can reside in a transcriptionally active state characterized by formation of an extended domain enriched in ASH1, the N-terminal, but not C-terminal moiety of TRX and H3K27ac. ASH1/TRX N-ter domains and transcription are not incompatible with repressive marks, sometimes resulting in a "balanced" state modulated by both repressors and activators. Often however, loss of PcG repression results instead in a "void" state, lacking transcription, H3K27ac, or binding of TRX or ASH1. We conclude that PcG repression is dynamic, not static, and that the propensity of a target gene to switch states depends on relative levels of PcG, TRX, and activators. N-ter TRX plays a remarkable role that antagonizes PcG repression and preempts H3K27 methylation by acetylation. This role is distinct from that usually attributed to TRX/MLL proteins at the promoter. These results have important implications for Polycomb gene regulation, the "bivalent" chromatin state of embryonic stem cells, and gene expression in development.
url http://europepmc.org/articles/PMC2799325?pdf=render
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