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端粒与复制性衰老:重要的仅仅是长度吗?

Telomeres and replicative senescence: Is it only length that counts?

作者信息

von Zglinicki T

机构信息

Department of Gerontology, University of Newcastle, Wolfson Research Centre, Newcastle General Hospital, Westgate Road, NE4 6BE, Newcastle upon Tyne, UK.

出版信息

Cancer Lett. 2001 Jul 26;168(2):111-6. doi: 10.1016/s0304-3835(01)00546-8.

Abstract

Telomeres are well established as a major 'replicometer', counting the population doublings in primary human cell cultures and ultimately triggering replicative senescence. However, neither is the pace of this biological clock inert, nor is there a fixed threshold telomere length acting as the universal trigger of replicative senescence. The available data suggest that opening of the telomeric loop and unscheduled exposure of the single-stranded G-rich telomeric overhang might act like a semaphore to signal senescent cell cycle arrest. Short telomere length, telomeric single-strand breaks, low levels of loop-stabilizing proteins, or other factors may trigger this opening of the loop. Thus, both telomere shortening and the ultimate signalling into senescence are able to integrate different environmental and genetic factors, especially oxidative stress-mediated damage, which might otherwise become a thread to genomic stability.

摘要

端粒作为一种主要的“复制计量器”已得到充分证实,它能计算原代人类细胞培养中的群体倍增次数,并最终引发复制性衰老。然而,这个生物钟的节奏并非一成不变,也不存在一个固定的端粒长度阈值作为复制性衰老的普遍触发因素。现有数据表明,端粒环的打开以及富含鸟嘌呤的单链端粒突出端的意外暴露可能像一个信号旗,发出衰老细胞周期停滞的信号。端粒长度短、端粒单链断裂、环稳定蛋白水平低或其他因素可能触发这种环的打开。因此,端粒缩短和最终向衰老的信号传递都能够整合不同的环境和遗传因素,尤其是氧化应激介导的损伤,否则这些损伤可能会对基因组稳定性构成威胁。

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