Cargando…

TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells

The TET enzymes oxidize 5-methylcytosine to 5-hydroxymethylcytosine, which can lead to DNA demethylation. However, direct connections between TET-mediated DNA demethylation and transcriptional output are difficult to establish due to challenges of distinguishing global versus locus-specific effects....

Descripción completa

Detalles Bibliográficos
Autores principales: Verma, Nipun, Pan, Heng, Doré, Louis C., Shukla, Abhijit, Li, Qing V., Pelham-Webb, Bobbie, Teijeiro, Virginia, González, Federico, Krivtsov, Andrei, Chang, Chan-Jung, Papapetrou, Eirini P., He, Chuan, Elemento, Olivier, Huangfu, Danwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5742051/
https://www.ncbi.nlm.nih.gov/pubmed/29203910
http://dx.doi.org/10.1038/s41588-017-0002-y
_version_ 1783288304195600384
author Verma, Nipun
Pan, Heng
Doré, Louis C.
Shukla, Abhijit
Li, Qing V.
Pelham-Webb, Bobbie
Teijeiro, Virginia
González, Federico
Krivtsov, Andrei
Chang, Chan-Jung
Papapetrou, Eirini P.
He, Chuan
Elemento, Olivier
Huangfu, Danwei
author_facet Verma, Nipun
Pan, Heng
Doré, Louis C.
Shukla, Abhijit
Li, Qing V.
Pelham-Webb, Bobbie
Teijeiro, Virginia
González, Federico
Krivtsov, Andrei
Chang, Chan-Jung
Papapetrou, Eirini P.
He, Chuan
Elemento, Olivier
Huangfu, Danwei
author_sort Verma, Nipun
collection PubMed
description The TET enzymes oxidize 5-methylcytosine to 5-hydroxymethylcytosine, which can lead to DNA demethylation. However, direct connections between TET-mediated DNA demethylation and transcriptional output are difficult to establish due to challenges of distinguishing global versus locus-specific effects. Here we show that TET1/2/3 triple knockout (TKO) human embryonic stem cells (hESCs) exhibit prominent bivalent promoter hypermethylation without an overall corresponding gene expression decrease in the undifferentiated state. Focusing on the bivalent PAX6 locus, we find increased DNMT3B binding is associated with promoter hypermethylation, which precipitates a neural differentiation defect and failure of PAX6 induction during differentiation. dCas9-mediated locus-specific demethylation and global inactivation of DNMT3B in TKO hESCs partially reverses the hypermethylation at the PAX6 promoter and improves differentiation to neuroectoderm. Taken together with further genome-wide methylation and TET1 and DNMT3B ChIP-Seq analysis, we conclude that the TET proteins safeguard bivalent promoters from de novo methylation to ensure robust lineage-specific transcription upon differentiation.
format Online
Article
Text
id pubmed-5742051
institution National Center for Biotechnology Information
language English
publishDate 2017
record_format MEDLINE/PubMed
spelling pubmed-57420512018-06-04 TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells Verma, Nipun Pan, Heng Doré, Louis C. Shukla, Abhijit Li, Qing V. Pelham-Webb, Bobbie Teijeiro, Virginia González, Federico Krivtsov, Andrei Chang, Chan-Jung Papapetrou, Eirini P. He, Chuan Elemento, Olivier Huangfu, Danwei Nat Genet Article The TET enzymes oxidize 5-methylcytosine to 5-hydroxymethylcytosine, which can lead to DNA demethylation. However, direct connections between TET-mediated DNA demethylation and transcriptional output are difficult to establish due to challenges of distinguishing global versus locus-specific effects. Here we show that TET1/2/3 triple knockout (TKO) human embryonic stem cells (hESCs) exhibit prominent bivalent promoter hypermethylation without an overall corresponding gene expression decrease in the undifferentiated state. Focusing on the bivalent PAX6 locus, we find increased DNMT3B binding is associated with promoter hypermethylation, which precipitates a neural differentiation defect and failure of PAX6 induction during differentiation. dCas9-mediated locus-specific demethylation and global inactivation of DNMT3B in TKO hESCs partially reverses the hypermethylation at the PAX6 promoter and improves differentiation to neuroectoderm. Taken together with further genome-wide methylation and TET1 and DNMT3B ChIP-Seq analysis, we conclude that the TET proteins safeguard bivalent promoters from de novo methylation to ensure robust lineage-specific transcription upon differentiation. 2017-12-04 2018-01 /pmc/articles/PMC5742051/ /pubmed/29203910 http://dx.doi.org/10.1038/s41588-017-0002-y Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Verma, Nipun
Pan, Heng
Doré, Louis C.
Shukla, Abhijit
Li, Qing V.
Pelham-Webb, Bobbie
Teijeiro, Virginia
González, Federico
Krivtsov, Andrei
Chang, Chan-Jung
Papapetrou, Eirini P.
He, Chuan
Elemento, Olivier
Huangfu, Danwei
TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells
title TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells
title_full TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells
title_fullStr TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells
title_full_unstemmed TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells
title_short TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells
title_sort tet proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5742051/
https://www.ncbi.nlm.nih.gov/pubmed/29203910
http://dx.doi.org/10.1038/s41588-017-0002-y
work_keys_str_mv AT vermanipun tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT panheng tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT dorelouisc tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT shuklaabhijit tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT liqingv tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT pelhamwebbbobbie tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT teijeirovirginia tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT gonzalezfederico tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT krivtsovandrei tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT changchanjung tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT papapetroueirinip tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT hechuan tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT elementoolivier tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells
AT huangfudanwei tetproteinssafeguardbivalentpromotersfromdenovomethylationinhumanembryonicstemcells