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转录相关的 DNA 损伤是否限制寿命?

Does transcription-associated DNA damage limit lifespan?

机构信息

Molecular Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY, USA.

出版信息

DNA Repair (Amst). 2016 May;41:1-7. doi: 10.1016/j.dnarep.2016.03.001. Epub 2016 Mar 14.

Abstract

Small mammals undergo an aging process similar to that of larger mammals, but aging occurs at a dramatically faster rate. This phenomenon is often assumed to be the result of damage caused by reactive oxygen species generated in mitochondria. An alternative explanation for the phenomenon is suggested here. The rate of RNA synthesis is dramatically elevated in small mammals and correlates quantitatively with the rate of aging among different mammalian species. The rate of RNA synthesis is reduced by caloric restriction and inhibition of TOR pathway signaling, two perturbations that increase lifespan in multiple metazoan species. From bacteria to man, the transcription of a gene has been found to increase the rate at which it is damaged, and a number of lines of evidence suggest that DNA damage is sufficient to induce multiple symptoms associated with normal aging. Thus, the correlations frequently found between the rate of RNA synthesis and the rate of aging could potentially reflect an important role for transcription-associated DNA damage in the aging process.

摘要

小型哺乳动物经历的衰老过程与较大型哺乳动物相似,但衰老速度要快得多。这种现象通常被认为是线粒体中产生的活性氧物质造成的损伤所致。本文提出了一种对此现象的替代解释。小型哺乳动物的 RNA 合成率显著升高,并且与不同哺乳动物物种的衰老速度呈定量相关性。限制热量摄入和抑制 TOR 通路信号传导均可降低 RNA 合成率,这两种干预措施可延长多种后生动物的寿命。从细菌到人,人们发现基因的转录会增加其受损的速度,并且有许多证据表明,DNA 损伤足以诱导与正常衰老相关的多种症状。因此,在 RNA 合成率与衰老速度之间经常发现的相关性可能反映了转录相关的 DNA 损伤在衰老过程中的重要作用。

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