Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.

Early-life stress (ELS) in mice causes sustained hypomethylation at the downstream Avp enhancer, subsequent overexpression of hypothalamic Avp and increased stress responsivity. The sequence of events leading to Avp enhancer methylation is presently unknown. Here, we used an embryonic stem cell-deri...

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Main Authors: Chris Murgatroyd, Dietmar Spengler
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3943912?pdf=render
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spelling doaj-9d96e4cdde0b42abbfab1adc7f0dd73d2020-11-24T21:44:32ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0193e9027710.1371/journal.pone.0090277Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.Chris MurgatroydDietmar SpenglerEarly-life stress (ELS) in mice causes sustained hypomethylation at the downstream Avp enhancer, subsequent overexpression of hypothalamic Avp and increased stress responsivity. The sequence of events leading to Avp enhancer methylation is presently unknown. Here, we used an embryonic stem cell-derived model of hypothalamic-like differentiation together with in vivo experiments to show that binding of polycomb complexes (PcG) preceded the emergence of ELS-responsive DNA methylation and correlated with gene silencing. At the same time, PcG occupancy associated with the presence of Tet proteins preventing DNA methylation. Early hypothalamic-like differentiation triggered PcG eviction, DNA-methyltransferase recruitment and enhancer methylation. Concurrently, binding of the Methyl-CpG-binding and repressor protein MeCP2 increased at the enhancer although Avp expression during later stages of differentiation and the perinatal period continued to increase. Overall, we provide evidence of a new role of PcG proteins in priming ELS-responsive DNA methylation at the Avp enhancer prior to epigenetic programming consistent with the idea that PcG proteins are part of a flexible silencing system during neuronal development.http://europepmc.org/articles/PMC3943912?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Chris Murgatroyd
Dietmar Spengler
spellingShingle Chris Murgatroyd
Dietmar Spengler
Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.
PLoS ONE
author_facet Chris Murgatroyd
Dietmar Spengler
author_sort Chris Murgatroyd
title Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.
title_short Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.
title_full Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.
title_fullStr Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.
title_full_unstemmed Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.
title_sort polycomb binding precedes early-life stress responsive dna methylation at the avp enhancer.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Early-life stress (ELS) in mice causes sustained hypomethylation at the downstream Avp enhancer, subsequent overexpression of hypothalamic Avp and increased stress responsivity. The sequence of events leading to Avp enhancer methylation is presently unknown. Here, we used an embryonic stem cell-derived model of hypothalamic-like differentiation together with in vivo experiments to show that binding of polycomb complexes (PcG) preceded the emergence of ELS-responsive DNA methylation and correlated with gene silencing. At the same time, PcG occupancy associated with the presence of Tet proteins preventing DNA methylation. Early hypothalamic-like differentiation triggered PcG eviction, DNA-methyltransferase recruitment and enhancer methylation. Concurrently, binding of the Methyl-CpG-binding and repressor protein MeCP2 increased at the enhancer although Avp expression during later stages of differentiation and the perinatal period continued to increase. Overall, we provide evidence of a new role of PcG proteins in priming ELS-responsive DNA methylation at the Avp enhancer prior to epigenetic programming consistent with the idea that PcG proteins are part of a flexible silencing system during neuronal development.
url http://europepmc.org/articles/PMC3943912?pdf=render
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