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由 DSB 诱导的全局染色质流动性由染色体构象决定,并定义了 HR 结果。

Global chromatin mobility induced by a DSB is dictated by chromosomal conformation and defines the HR outcome.

机构信息

Université de Paris, IRSL, INSERM, U944, CNRS, UMR7212, Paris, France.

出版信息

Elife. 2022 Sep 20;11:e78015. doi: 10.7554/eLife.78015.

Abstract

Repair of DNA double-strand breaks (DSBs) is crucial for genome integrity. A conserved response to DSBs is an increase in chromatin mobility that can be local, at the site of the DSB, or global, at undamaged regions of the genome. Here, we address the function of global chromatin mobility during homologous recombination (HR) of a single, targeted, controlled DSB. We set up a system that tracks HR in vivo over time and show that two types of DSB-induced global chromatin mobility are involved in HR, depending on the position of the DSB. Close to the centromere, a DSB induces global mobility that depends solely on H2A(X) phosphorylation and accelerates repair kinetics, but is not essential. In contrast, the global mobility induced by a DSB away from the centromere becomes essential for HR repair and is triggered by homology search through a mechanism that depends on H2A(X) phosphorylation, checkpoint progression, and Rad51. Our data demonstrate that global mobility is governed by chromosomal conformation and differentially coordinates repair by HR.

摘要

修复 DNA 双链断裂(DSBs)对于基因组完整性至关重要。一种保守的 DSB 反应是染色质流动性的增加,这种增加可以是局部的,即在 DSB 发生的部位,也可以是全局的,即在基因组未受损的区域。在这里,我们研究了在单个靶向、受控 DSB 的同源重组(HR)过程中全局染色质流动性的功能。我们建立了一个随时间追踪体内 HR 的系统,并表明两种类型的 DSB 诱导的全局染色质流动性都参与了 HR,这取决于 DSB 的位置。在靠近着丝粒的位置,DSB 诱导仅依赖于 H2A(X)磷酸化的全局流动性,从而加速修复动力学,但不是必需的。相比之下,远离着丝粒的 DSB 诱导的全局流动性对于 HR 修复是必需的,并且通过同源搜索触发,该机制依赖于 H2A(X)磷酸化、检查点进展和 Rad51。我们的数据表明,全局流动性受染色体构象控制,并通过 HR 修复进行差异协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8963/9489209/070daa2f5627/elife-78015-fig1.jpg

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