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Roles of Telomere Biology in Cell Senescence Replicative and Chronological Ageing

机译:端粒生物学在细胞衰老复制和时序衰老中的作用

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摘要

Telomeres with G-rich repetitive DNA and particular proteins as special heterochromatin structures at the termini of eukaryotic chromosomes are tightly maintained to safeguard genetic integrity and functionality. Telomerase as a specialized reverse transcriptase uses its intrinsic RNA template to lengthen telomeric G-rich strand in yeast and human cells. Cells sense telomere length shortening and respond with cell cycle arrest at a certain size of telomeres referring to the “Hayflick limit.” In addition to regulating the cell replicative senescence, telomere biology plays a fundamental role in regulating the chronological post-mitotic cell ageing. In this review, we summarize the current understandings of telomere regulation of cell replicative and chronological ageing in the pioneer model system Saccharomyces cerevisiae and provide an overview on telomere regulation of animal lifespans. We focus on the mechanisms of survivals by telomere elongation, DNA damage response and environmental factors in the absence of telomerase maintenance of telomeres in the yeast and mammals.
机译:端粒具有丰富的G重复DNA和特定蛋白质,在真核染色体末端处具有特殊的异染色质结构,因此可以紧密保持以保护遗传完整性和功能性。端粒酶是一种专门的逆转录酶,利用其固有的RNA模板来延长酵母和人细胞中的端粒富G链。细胞会感觉到端粒长度缩短,并在一定的端粒大小下响应“ Hayflick限制”而发生细胞周期停滞。除调节细胞复制衰老外,端粒生物学在调节按时间顺序的有丝分裂后细胞衰老中也起着重要作用。在这篇综述中,我们总结了先驱者酿酒酵母模型系统中端粒调节细胞复制和按时间顺序排列的衰老的最新认识,并概述了动物寿命的端粒调节。我们专注于通过端粒延长,DNA损伤反应和环境因素在酵母和哺乳动物中没有端粒酶维持端粒维持的生存机制。

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