生物
体细胞
种系突变
突变
遗传学
生殖系
DNA聚合酶
突变积累
校对
DNA复制
DNA修复
DNA损伤
聚合酶
突变率
DNA
基因
作者
Philip S. Robinson,Tim Coorens,Claire Palles,Emily Mitchell,Federico Abascal,Sigurgeir Ólafsson,Bernard C. H. Lee,Andrew Lawson,Henry Lee-Six,Luiza Moore,Mathijs A. Sanders,James Hewinson,Lynn Martin,Claudia M.A. Pinna,Sara Galavotti,Raheleh Rahbari,Peter J. Campbell,Iñigo Martincorena,Ian Tomlinson,Michael R. Stratton
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2021-09-30
卷期号:53 (10): 1434-1442
被引量:178
标识
DOI:10.1038/s41588-021-00930-y
摘要
Mutation accumulation in somatic cells contributes to cancer development and is proposed as a cause of aging. DNA polymerases Pol ε and Pol δ replicate DNA during cell division. However, in some cancers, defective proofreading due to acquired POLE/POLD1 exonuclease domain mutations causes markedly elevated somatic mutation burdens with distinctive mutational signatures. Germline POLE/POLD1 mutations cause familial cancer predisposition. Here, we sequenced normal tissue and tumor DNA from individuals with germline POLE/POLD1 mutations. Increased mutation burdens with characteristic mutational signatures were found in normal adult somatic cell types, during early embryogenesis and in sperm. Thus human physiology can tolerate ubiquitously elevated mutation burdens. Except for increased cancer risk, individuals with germline POLE/POLD1 mutations do not exhibit overt features of premature aging. These results do not support a model in which all features of aging are attributable to widespread cell malfunction directly resulting from somatic mutation burdens accrued during life.
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