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Genome instability and aging

机译:基因组不稳定和衰老

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Genome instability has long been implicated as the main causal factor in aging. Somatic cells are continuously exposed to various sources of DNA damage, from reactive oxygen species to UV radiation to environmental mutagens. To cope with the tens of thousands of chemical lesions introduced into the genome of a typical cell each day, a complex network of genome maintenance systems acts to remove damage and restore the correct base pair sequence. Occasionally, however, repair is erroneous, and such errors, as well as the occasional failure to correctly replicate the genome during cell division, are the basis for mutations and epimutations. There is now ample evidence that mutations accumulate in various organs and tissues of higher animals, including humans, mice, and flies. What is not known, however, is whether the frequency of these random changes is sufficient to cause the phenotypic effects generally associated with aging. The exception is cancer, an age-related disease caused by the accumulation of mutations and epimutations. Here, we first review current concepts regarding the relationship between DNA damage, repair, and mutation, as well as the data regarding genome alterations as a function of age. We then describe a model for how randomly induced DNA sequence and epigenomic variants in the somatic genomes of animals can result in functional decline and disease in old age. Finally, we discuss the genetics of genome instability in relation to longevity to address the importance of alterations in the somatic genome as a causal factor in aging and to underscore the opportunities provided by genetic approaches to develop interventions that attenuate genome instability, reduce disease risk, and increase life span.
机译:长期以来,基因组的不稳定性一直是导致衰老的主要因素。体细胞不断暴露于各种DNA破坏源,从活性氧到紫外线辐射再到环境诱变剂。为了应对每天进入典型细胞基因组的数以万计的化学损伤,复杂的基因组维护系统网络可消除损伤并恢复正确的碱基对序列。但是,有时修复是错误的,这种错误以及细胞分裂过程中偶尔无法正确复制基因组是突变和表位突变的基础。现在,有充分的证据表明,突变在高级动物的各种器官和组织中积累,包括人,小鼠和果蝇。但是,尚不清楚这些随机变化的频率是否足以引起通常与衰老相关的表型效应。癌症是一种例外,它是由突变和表位突变的积累引起的与年龄相关的疾病。在这里,我们首先回顾一下有关DNA损伤,修复和突变之间关系的最新概念,以及有关基因组随年龄变化的数据。然后,我们描述一种动物体细胞基因组中随机诱导的DNA序列和表观基因组变异体如何导致功能衰退和老年疾病的模型。最后,我们讨论了与寿命有关的基因组不稳定的遗传学,以解决体细胞基因组变化作为衰老的成因的重要性,并强调遗传方法提供的机会来开发可减轻基因组不稳定,降低疾病风险的干预措施,并延长寿命。

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