Genome-wide analysis of DNA methylation dynamics during early human development.

DNA methylation is globally reprogrammed during mammalian preimplantation development, which is critical for normal development. Recent reduced representation bisulfite sequencing (RRBS) studies suggest that the methylome dynamics are essentially conserved between human and mouse early embryos. RRBS...

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Main Authors: Hiroaki Okae, Hatsune Chiba, Hitoshi Hiura, Hirotaka Hamada, Akiko Sato, Takafumi Utsunomiya, Hiroyuki Kikuchi, Hiroaki Yoshida, Atsushi Tanaka, Mikita Suyama, Takahiro Arima
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-12-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4263407?pdf=render
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spelling doaj-b6a7b8d06a024a6cb596b452a65e21072020-11-24T22:18:41ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042014-12-011012e100486810.1371/journal.pgen.1004868Genome-wide analysis of DNA methylation dynamics during early human development.Hiroaki OkaeHatsune ChibaHitoshi HiuraHirotaka HamadaAkiko SatoTakafumi UtsunomiyaHiroyuki KikuchiHiroaki YoshidaAtsushi TanakaMikita SuyamaTakahiro ArimaDNA methylation is globally reprogrammed during mammalian preimplantation development, which is critical for normal development. Recent reduced representation bisulfite sequencing (RRBS) studies suggest that the methylome dynamics are essentially conserved between human and mouse early embryos. RRBS is known to cover 5-10% of all genomic CpGs, favoring those contained within CpG-rich regions. To obtain an unbiased and more complete representation of the methylome during early human development, we performed whole genome bisulfite sequencing of human gametes and blastocysts that covered>70% of all genomic CpGs. We found that the maternal genome was demethylated to a much lesser extent in human blastocysts than in mouse blastocysts, which could contribute to an increased number of imprinted differentially methylated regions in the human genome. Global demethylation of the paternal genome was confirmed, but SINE-VNTR-Alu elements and some other tandem repeat-containing regions were found to be specifically protected from this global demethylation. Furthermore, centromeric satellite repeats were hypermethylated in human oocytes but not in mouse oocytes, which might be explained by differential expression of de novo DNA methyltransferases. These data highlight both conserved and species-specific regulation of DNA methylation during early mammalian development. Our work provides further information critical for understanding the epigenetic processes underlying differentiation and pluripotency during early human development.http://europepmc.org/articles/PMC4263407?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hiroaki Okae
Hatsune Chiba
Hitoshi Hiura
Hirotaka Hamada
Akiko Sato
Takafumi Utsunomiya
Hiroyuki Kikuchi
Hiroaki Yoshida
Atsushi Tanaka
Mikita Suyama
Takahiro Arima
spellingShingle Hiroaki Okae
Hatsune Chiba
Hitoshi Hiura
Hirotaka Hamada
Akiko Sato
Takafumi Utsunomiya
Hiroyuki Kikuchi
Hiroaki Yoshida
Atsushi Tanaka
Mikita Suyama
Takahiro Arima
Genome-wide analysis of DNA methylation dynamics during early human development.
PLoS Genetics
author_facet Hiroaki Okae
Hatsune Chiba
Hitoshi Hiura
Hirotaka Hamada
Akiko Sato
Takafumi Utsunomiya
Hiroyuki Kikuchi
Hiroaki Yoshida
Atsushi Tanaka
Mikita Suyama
Takahiro Arima
author_sort Hiroaki Okae
title Genome-wide analysis of DNA methylation dynamics during early human development.
title_short Genome-wide analysis of DNA methylation dynamics during early human development.
title_full Genome-wide analysis of DNA methylation dynamics during early human development.
title_fullStr Genome-wide analysis of DNA methylation dynamics during early human development.
title_full_unstemmed Genome-wide analysis of DNA methylation dynamics during early human development.
title_sort genome-wide analysis of dna methylation dynamics during early human development.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2014-12-01
description DNA methylation is globally reprogrammed during mammalian preimplantation development, which is critical for normal development. Recent reduced representation bisulfite sequencing (RRBS) studies suggest that the methylome dynamics are essentially conserved between human and mouse early embryos. RRBS is known to cover 5-10% of all genomic CpGs, favoring those contained within CpG-rich regions. To obtain an unbiased and more complete representation of the methylome during early human development, we performed whole genome bisulfite sequencing of human gametes and blastocysts that covered>70% of all genomic CpGs. We found that the maternal genome was demethylated to a much lesser extent in human blastocysts than in mouse blastocysts, which could contribute to an increased number of imprinted differentially methylated regions in the human genome. Global demethylation of the paternal genome was confirmed, but SINE-VNTR-Alu elements and some other tandem repeat-containing regions were found to be specifically protected from this global demethylation. Furthermore, centromeric satellite repeats were hypermethylated in human oocytes but not in mouse oocytes, which might be explained by differential expression of de novo DNA methyltransferases. These data highlight both conserved and species-specific regulation of DNA methylation during early mammalian development. Our work provides further information critical for understanding the epigenetic processes underlying differentiation and pluripotency during early human development.
url http://europepmc.org/articles/PMC4263407?pdf=render
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