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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Precocious G1/S transitions and genomic instability: the origin connection.
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Precocious G1/S transitions and genomic instability: the origin connection.

机译:早熟的G1 / S过渡和基因组不稳定性:起源联系。

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摘要

Both in yeast and in higher eukaryotes, genomic instability often ensues when the G1/S transition machinery is deregulated and cells are forced to enter S phase prematurely. This case of acquired mutability is particularly important, since a majority of genes mutated in human cancers encode factors that influence the G1/S transition. The precocious G1/S transition often results in a sub-optimal S phase. Moreover, the problems generated in such an S phase can escape detection by the cellular surveillance systems, allowing undeterred mitosis. This review focuses primarily on budding yeast data, where progress has been made in the past couple of years towards a mechanistic understanding of the underlying processes. A dual surveillance system is discussed, which relies on the presence of licensed but unfired origins and stalled replication forks to deter mitosis until replication is complete. Normally, this dual surveillance system allows S phase to be flexible in duration in a variety of growth conditions, when the fork density and/or fork progression rates can vary widely. However, precocious exit from G1 can have a disabling effect on this surveillance system. Premature exit from G1 can cut short the licensing of origins and the accumulation of resources for the upcoming replication, while giving a cell a false indication that it is metabolically ready to conduct S phase.
机译:无论是在酵母中还是在高级真核生物中,当G1 / S过渡机制失控并且细胞被迫过早进入S期时,通常都会发生基因组不稳定性。获得性变异性的这种情况尤为重要,因为人类癌症中突变的大多数基因都编码影响G1 / S过渡的因子。过早的G1 / S转变通常会导致次佳的S期。而且,在这种S期产生的问题可以逃避细胞监视系统的检测,从而实现无丝分裂。这篇评论主要集中在萌芽的酵母数据上,在过去的几年中,在对基本过程的机械理解上已经取得了进展。讨论了双重监视系统,该系统依赖于已许可但未经触发的来源以及停滞的复制叉来阻止有丝分裂,直到复制完成。通常,当铲叉密度和/或铲叉前进速度变化很大时,这种双重监视系统可使S期在各种生长条件下的持续时间灵活。但是,过早退出G1可能会对此监视系统造成影响。从G1提前退出会缩短来源许可和即将进行的复制所需的资源积累,同时给细胞一个错误的指示,表明它已经做好代谢准备进行S期。

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