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复制压力、基因组不稳定性和复制时间:复杂的关系。

Replication Stress, Genomic Instability, and Replication Timing: A Complex Relationship.

机构信息

Université de Paris, CNRS, Institut Jacques Monod, F-75006 Paris, France.

出版信息

Int J Mol Sci. 2021 Apr 30;22(9):4764. doi: 10.3390/ijms22094764.

Abstract

The replication-timing program constitutes a key element of the organization and coordination of numerous nuclear processes in eukaryotes. This program is established at a crucial moment in the cell cycle and occurs simultaneously with the organization of the genome, thus indicating the vital significance of this process. With recent technological achievements of high-throughput approaches, a very strong link has been confirmed between replication timing, transcriptional activity, the epigenetic and mutational landscape, and the 3D organization of the genome. There is also a clear relationship between replication stress, replication timing, and genomic instability, but the extent to which they are mutually linked to each other is unclear. Recent evidence has shown that replication timing is affected in cancer cells, although the cause and consequence of this effect remain unknown. However, in-depth studies remain to be performed to characterize the molecular mechanisms of replication-timing regulation and clearly identify different - and -acting factors. The results of these studies will potentially facilitate the discovery of new therapeutic pathways, particularly for personalized medicine, or new biomarkers. This review focuses on the complex relationship between replication timing, replication stress, and genomic instability.

摘要

复制定时程序构成了真核生物中许多核过程的组织和协调的关键要素。该程序在细胞周期的关键时刻建立,并与基因组的组织同时发生,因此表明了该过程的重要意义。随着高通量方法的最新技术成就,已经确认复制定时与转录活性、表观遗传和突变景观以及基因组的 3D 组织之间存在非常紧密的联系。复制压力、复制定时和基因组不稳定性之间也存在明确的关系,但它们相互关联的程度尚不清楚。最近的证据表明,癌细胞中的复制定时受到影响,尽管这种影响的原因和后果尚不清楚。然而,仍需要进行深入研究以表征复制定时调节的分子机制,并明确识别不同的作用因素。这些研究的结果将有可能促进新的治疗途径的发现,特别是在个性化医疗或新的生物标志物方面。这篇综述重点介绍了复制定时、复制压力和基因组不稳定性之间的复杂关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a36a/8125245/2b42ad5b359c/ijms-22-04764-g001.jpg

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