作者
Stefanie Seisenberger, Julian R Peat, Timothy A Hore, Fátima Santos, Wendy Dean, Wolf Reik
发表日期
2013/1/5
来源
Philosophical Transactions of the Royal Society B: Biological Sciences
卷号
368
期号
1609
页码范围
20110330
出版商
The Royal Society
简介
In mammalian development, epigenetic modifications, including DNA methylation patterns, play a crucial role in defining cell fate but also represent epigenetic barriers that restrict developmental potential. At two points in the life cycle, DNA methylation marks are reprogrammed on a global scale, concomitant with restoration of developmental potency. DNA methylation patterns are subsequently re-established with the commitment towards a distinct cell fate. This reprogramming of DNA methylation takes place firstly on fertilization in the zygote, and secondly in primordial germ cells (PGCs), which are the direct progenitors of sperm or oocyte. In each reprogramming window, a unique set of mechanisms regulates DNA methylation erasure and re-establishment. Recent advances have uncovered roles for the TET3 hydroxylase and passive demethylation, together with base excision repair (BER) and the elongator …
引用总数
201320142015201620172018201920202021202220232024236158604647565150423119
学术搜索中的文章
S Seisenberger, JR Peat, TA Hore, F Santos, W Dean… - Philosophical Transactions of the Royal Society B …, 2013