Genome-wide erasure of DNA methylation in mouse primordial germ cells is affected by AID deficiency (V体育安卓版)
- PMID: 20098412
- PMCID: PMC2965733 (VSports注册入口)
- DOI: 10.1038/nature08829
Genome-wide erasure of DNA methylation in mouse primordial germ cells is affected by AID deficiency (VSports最新版本)
Abstract
Epigenetic reprogramming including demethylation of DNA occurs in mammalian primordial germ cells (PGCs) and in early embryos, and is important for the erasure of imprints and epimutations, and the return to pluripotency. The extent of this reprogramming and its molecular mechanisms are poorly understood. We previously showed that the cytidine deaminases AID and APOBEC1 can deaminate 5-methylcytosine in vitro and in Escherichia coli, and in the mouse are expressed in tissues in which demethylation occurs. Here we profiled DNA methylation throughout the genome by unbiased bisulphite next generation sequencing in wild-type and AID-deficient mouse PGCs at embryonic day (E)13. 5 VSports手机版. Wild-type PGCs revealed marked genome-wide erasure of methylation to a level below that of methylation deficient (Np95(-/-), also called Uhrf1(-/-)) embryonic stem cells, with female PGCs being less methylated than male ones. By contrast, AID-deficient PGCs were up to three times more methylated than wild-type ones; this substantial difference occurred throughout the genome, with introns, intergenic regions and transposons being relatively more methylated than exons. Relative hypermethylation in AID-deficient PGCs was confirmed by analysis of individual loci in the genome. Our results reveal that erasure of DNA methylation in the germ line is a global process, hence limiting the potential for transgenerational epigenetic inheritance. AID deficiency interferes with genome-wide erasure of DNA methylation patterns, indicating that AID has a critical function in epigenetic reprogramming and potentially in restricting the inheritance of epimutations in mammals. .
Figures




References (V体育ios版)
-
- Reik W, Dean W, Walter J. Epigenetic reprogramming in mammalian development. Science. 2001;293:1089–1093. - PubMed
-
- Sasaki H, Matsui Y. Epigenetic events in mammalian germ-cell development: reprogramming and beyond. Nature Rev Genet. 2008;9:129–140. - PubMed
-
- Oswald J, et al. Active demethylation of the paternal genome in the mouse zygote. Curr Biol. 2000;10:475–478. - PubMed (VSports在线直播)
-
- Mayer W, Niveleau A, Walter J, Fundele R, Haaf T. Demethylation of the zygotic paternal genome. Nature. 2000;403:501–501. - PubMed
-
- Dean W, et al. Conservation of methylation reprogramming in mammalian development: aberrant reprogramming in cloned embryos. Proc Natl Acad Soc USA. 2001;98:13734–13734. - PMC (V体育安卓版) - PubMed
V体育平台登录 - Publication types
- "V体育安卓版" Actions
- "V体育官网入口" Actions
- Actions (VSports app下载)
MeSH terms (V体育官网入口)
- V体育平台登录 - Actions
- "V体育官网" Actions
- Actions (VSports)
- V体育ios版 - Actions
- VSports app下载 - Actions
- Actions (VSports手机版)
- "V体育2025版" Actions
- "V体育安卓版" Actions
- Actions (VSports手机版)
- V体育ios版 - Actions
- Actions (VSports注册入口)
- Actions (VSports最新版本)
Substances (V体育官网入口)
- VSports手机版 - Actions
- Actions (VSports app下载)
V体育官网入口 - Associated data
- Actions (VSports)
Grants and funding
- R37 GM060398/GM/NIGMS NIH HHS/United States
- VSports - G0700098/MRC_/Medical Research Council/United Kingdom
- HHMI/Howard Hughes Medical Institute/United States
- BBS/E/B/0000M220/BB_/Biotechnology and Biological Sciences Research Council/United Kingdom
- BBS/E/B/0000M982/BB_/Biotechnology and Biological Sciences Research Council/United Kingdom
V体育2025版 - LinkOut - more resources
"VSports在线直播" Full Text Sources
"V体育2025版" Other Literature Sources
Molecular Biology Databases (V体育官网入口)