Cargando…

An endosiRNA-Based Repression Mechanism Counteracts Transposon Activation during Global DNA Demethylation in Embryonic Stem Cells

Erasure of DNA methylation and repressive chromatin marks in the mammalian germline leads to risk of transcriptional activation of transposable elements (TEs). Here, we used mouse embryonic stem cells (ESCs) to identify an endosiRNA-based mechanism involved in suppression of TE transcription. In ESC...

Descripción completa

Detalles Bibliográficos
Autores principales: Berrens, Rebecca V., Andrews, Simon, Spensberger, Dominik, Santos, Fátima, Dean, Wendy, Gould, Poppy, Sharif, Jafar, Olova, Nelly, Chandra, Tamir, Koseki, Haruhiko, von Meyenn, Ferdinand, Reik, Wolf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5678422/
https://www.ncbi.nlm.nih.gov/pubmed/29100015
http://dx.doi.org/10.1016/j.stem.2017.10.004
_version_ 1783277429893103616
author Berrens, Rebecca V.
Andrews, Simon
Spensberger, Dominik
Santos, Fátima
Dean, Wendy
Gould, Poppy
Sharif, Jafar
Olova, Nelly
Chandra, Tamir
Koseki, Haruhiko
von Meyenn, Ferdinand
Reik, Wolf
author_facet Berrens, Rebecca V.
Andrews, Simon
Spensberger, Dominik
Santos, Fátima
Dean, Wendy
Gould, Poppy
Sharif, Jafar
Olova, Nelly
Chandra, Tamir
Koseki, Haruhiko
von Meyenn, Ferdinand
Reik, Wolf
author_sort Berrens, Rebecca V.
collection PubMed
description Erasure of DNA methylation and repressive chromatin marks in the mammalian germline leads to risk of transcriptional activation of transposable elements (TEs). Here, we used mouse embryonic stem cells (ESCs) to identify an endosiRNA-based mechanism involved in suppression of TE transcription. In ESCs with DNA demethylation induced by acute deletion of Dnmt1, we saw an increase in sense transcription at TEs, resulting in an abundance of sense/antisense transcripts leading to high levels of ARGONAUTE2 (AGO2)-bound small RNAs. Inhibition of Dicer or Ago2 expression revealed that small RNAs are involved in an immediate response to demethylation-induced transposon activation, while the deposition of repressive histone marks follows as a chronic response. In vivo, we also found TE-specific endosiRNAs present during primordial germ cell development. Our results suggest that antisense TE transcription is a “trap” that elicits an endosiRNA response to restrain acute transposon activity during epigenetic reprogramming in the mammalian germline.
format Online
Article
Text
id pubmed-5678422
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Cell Press
record_format MEDLINE/PubMed
spelling pubmed-56784222017-11-20 An endosiRNA-Based Repression Mechanism Counteracts Transposon Activation during Global DNA Demethylation in Embryonic Stem Cells Berrens, Rebecca V. Andrews, Simon Spensberger, Dominik Santos, Fátima Dean, Wendy Gould, Poppy Sharif, Jafar Olova, Nelly Chandra, Tamir Koseki, Haruhiko von Meyenn, Ferdinand Reik, Wolf Cell Stem Cell Article Erasure of DNA methylation and repressive chromatin marks in the mammalian germline leads to risk of transcriptional activation of transposable elements (TEs). Here, we used mouse embryonic stem cells (ESCs) to identify an endosiRNA-based mechanism involved in suppression of TE transcription. In ESCs with DNA demethylation induced by acute deletion of Dnmt1, we saw an increase in sense transcription at TEs, resulting in an abundance of sense/antisense transcripts leading to high levels of ARGONAUTE2 (AGO2)-bound small RNAs. Inhibition of Dicer or Ago2 expression revealed that small RNAs are involved in an immediate response to demethylation-induced transposon activation, while the deposition of repressive histone marks follows as a chronic response. In vivo, we also found TE-specific endosiRNAs present during primordial germ cell development. Our results suggest that antisense TE transcription is a “trap” that elicits an endosiRNA response to restrain acute transposon activity during epigenetic reprogramming in the mammalian germline. Cell Press 2017-11-02 /pmc/articles/PMC5678422/ /pubmed/29100015 http://dx.doi.org/10.1016/j.stem.2017.10.004 Text en © 2017 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Berrens, Rebecca V.
Andrews, Simon
Spensberger, Dominik
Santos, Fátima
Dean, Wendy
Gould, Poppy
Sharif, Jafar
Olova, Nelly
Chandra, Tamir
Koseki, Haruhiko
von Meyenn, Ferdinand
Reik, Wolf
An endosiRNA-Based Repression Mechanism Counteracts Transposon Activation during Global DNA Demethylation in Embryonic Stem Cells
title An endosiRNA-Based Repression Mechanism Counteracts Transposon Activation during Global DNA Demethylation in Embryonic Stem Cells
title_full An endosiRNA-Based Repression Mechanism Counteracts Transposon Activation during Global DNA Demethylation in Embryonic Stem Cells
title_fullStr An endosiRNA-Based Repression Mechanism Counteracts Transposon Activation during Global DNA Demethylation in Embryonic Stem Cells
title_full_unstemmed An endosiRNA-Based Repression Mechanism Counteracts Transposon Activation during Global DNA Demethylation in Embryonic Stem Cells
title_short An endosiRNA-Based Repression Mechanism Counteracts Transposon Activation during Global DNA Demethylation in Embryonic Stem Cells
title_sort endosirna-based repression mechanism counteracts transposon activation during global dna demethylation in embryonic stem cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5678422/
https://www.ncbi.nlm.nih.gov/pubmed/29100015
http://dx.doi.org/10.1016/j.stem.2017.10.004
work_keys_str_mv AT berrensrebeccav anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT andrewssimon anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT spensbergerdominik anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT santosfatima anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT deanwendy anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT gouldpoppy anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT sharifjafar anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT olovanelly anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT chandratamir anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT kosekiharuhiko anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT vonmeyennferdinand anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT reikwolf anendosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT berrensrebeccav endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT andrewssimon endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT spensbergerdominik endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT santosfatima endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT deanwendy endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT gouldpoppy endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT sharifjafar endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT olovanelly endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT chandratamir endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT kosekiharuhiko endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT vonmeyennferdinand endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells
AT reikwolf endosirnabasedrepressionmechanismcounteractstransposonactivationduringglobaldnademethylationinembryonicstemcells