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Nuclear Genomic Instability and Aging
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2018-06-20 00:00:00 , DOI: 10.1146/annurev-biochem-062917-012239
Laura J. Niedernhofer 1 , Aditi U. Gurkar 1, 2 , Yinsheng Wang 3 , Jan Vijg 4 , Jan H.J. Hoeijmakers 5 , Paul D. Robbins 1
Affiliation  

The nuclear genome decays as organisms age. Numerous studies demonstrate that the burden of several classes of DNA lesions is greater in older mammals than in young mammals. More challenging is proving this is a cause rather than a consequence of aging. The DNA damage theory of aging, which argues that genomic instability plays a causal role in aging, has recently gained momentum. Support for this theory stems partly from progeroid syndromes in which inherited defects in DNA repair increase the burden of DNA damage leading to accelerated aging of one or more organs. Additionally, growing evidence shows that DNA damage accrual triggers cellular senescence and metabolic changes that promote a decline in tissue function and increased susceptibility to age-related diseases. Here, we examine multiple lines of evidence correlating nuclear DNA damage with aging. We then consider how, mechanistically, nuclear genotoxic stress could promote aging. We conclude that the evidence, in toto, supports a role for DNA damage as a nidus of aging.

中文翻译:


核基因组不稳定性和老化

核基因组随着生物的衰老而衰变。大量研究表明,年老的哺乳动物中几类DNA损伤的负担比年幼的哺乳动物更大。更具挑战性的是证明这是老化的原因而不是后果。衰老的DNA损伤理论认为基因组不稳定性在衰老中起着因果作用,这种理论最近得到了发展。对这一理论的支持部分源于早衰综合症,其中,DNA修复的遗传缺陷增加了DNA损伤的负担,导致一个或多个器官的加速衰老。此外,越来越多的证据表明,DNA损伤的累积会触发细胞衰老和代谢变化,从而促进组织功能下降并增加与年龄相关疾病的易感性。这里,我们研究了与衰老有关的核DNA损伤的多条证据。然后,我们考虑从机械角度讲,核遗传毒性应激如何促进衰老。我们得出的结论是,有关证据支持DNA损伤是衰老的诱因。

更新日期:2018-06-20
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