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DNA双链断裂反应动力学的荟萃分析。

Meta-analysis of DNA double-strand break response kinetics.

作者信息

Kochan Jakub A, Desclos Emilie C B, Bosch Ruben, Meister Luna, Vriend Lianne E M, van Attikum Haico, Krawczyk Przemek M

机构信息

Department of Medical Biology and Laboratory of Experimental Oncology and Radiobiology (LEXOR), Cancer Center Amsterdam, Academic Medical Center, Meibergdreef 15, 1105 AZ Amsterdam, The Netherlands.

Department of Human Genetics, Leiden University Medical Center, Einthovenweg 20, 2333 ZC Leiden, The Netherlands.

出版信息

Nucleic Acids Res. 2017 Dec 15;45(22):12625-12637. doi: 10.1093/nar/gkx1128.

Abstract

Most proteins involved in the DNA double-strand break response (DSBR) accumulate at the damage sites, where they perform functions related to damage signaling, chromatin remodeling and repair. Over the last two decades, studying the accumulation of many DSBR proteins provided information about their functionality and underlying mechanisms of action. However, comparison and systemic interpretation of these data is challenging due to their scattered nature and differing experimental approaches. Here, we extracted, analyzed and compared the available results describing accumulation of 79 DSBR proteins at sites of DNA damage, which can be further explored using Cumulus (http://www.dna-repair.live/cumulus/)-the accompanying interactive online application. Despite large inter-study variability, our analysis revealed that the accumulation of most proteins starts immediately after damage induction, occurs in parallel and peaks within 15-20 min. Various DSBR pathways are characterized by distinct accumulation kinetics with major non-homologous end joining proteins being generally faster than those involved in homologous recombination, and signaling and chromatin remodeling factors accumulating with varying speeds. Our meta-analysis provides, for the first time, comprehensive overview of the temporal organization of the DSBR in mammalian cells and could serve as a reference for future mechanistic studies of this complex process.

摘要

大多数参与DNA双链断裂反应(DSBR)的蛋白质会在损伤位点积累,在那里它们执行与损伤信号传导、染色质重塑和修复相关的功能。在过去的二十年里,对许多DSBR蛋白质积累情况的研究提供了有关其功能和潜在作用机制的信息。然而,由于这些数据的分散性和不同的实验方法,对这些数据进行比较和系统解释具有挑战性。在这里,我们提取、分析并比较了描述79种DSBR蛋白质在DNA损伤位点积累情况的现有结果,这些结果可以使用随附的交互式在线应用程序Cumulus(http://www.dna-repair.live/cumulus/)进行进一步探索。尽管研究之间存在很大差异,但我们的分析表明,大多数蛋白质的积累在损伤诱导后立即开始,同时发生,并在15 - 20分钟内达到峰值。各种DSBR途径具有不同的积累动力学特征,主要的非同源末端连接蛋白通常比参与同源重组的蛋白更快,信号传导和染色质重塑因子以不同速度积累。我们的荟萃分析首次全面概述了哺乳动物细胞中DSBR的时间组织,并可为该复杂过程未来的机制研究提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8916/5728399/8305f805f707/gkx1128fig1.jpg

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