Suppr超能文献

人源 RAD52 蛋白可刺激 RAD51 介导的同源搜索。

Human RAD52 stimulates the RAD51-mediated homology search.

机构信息

Genome Integrity and Cancers UMR 9019 CNRS, Université Paris- Saclay, Gustave Roussy, Villejuif Cedex, France.

Genome Stability Laboratory, CHU de Quebec Research Center, HDQ Pavilion, Oncology Axis, Quebec City, Canada.

出版信息

Life Sci Alliance. 2023 Dec 11;7(3). doi: 10.26508/lsa.202201751. Print 2024 Mar.

Abstract

Homologous recombination (HR) is a DNA repair mechanism of double-strand breaks and blocked replication forks, involving a process of homology search leading to the formation of synaptic intermediates that are regulated to ensure genome integrity. RAD51 recombinase plays a central role in this mechanism, supported by its RAD52 and BRCA2 partners. If the mediator function of BRCA2 to load RAD51 on RPA-ssDNA is well established, the role of RAD52 in HR is still far from understood. We used transmission electron microscopy combined with biochemistry to characterize the sequential participation of RPA, RAD52, and BRCA2 in the assembly of the RAD51 filament and its activity. Although our results confirm that RAD52 lacks a mediator activity, RAD52 can tightly bind to RPA-coated ssDNA, inhibit the mediator activity of BRCA2, and form shorter RAD51-RAD52 mixed filaments that are more efficient in the formation of synaptic complexes and D-loops, resulting in more frequent multi-invasions as well. We confirm the in situ interaction between RAD51 and RAD52 after double-strand break induction in vivo. This study provides new molecular insights into the formation and regulation of presynaptic and synaptic intermediates by BRCA2 and RAD52 during human HR.

摘要

同源重组(HR)是一种双链断裂和复制叉阻滞的 DNA 修复机制,涉及同源搜索的过程,导致形成联会中间体,这些中间体受到调控以确保基因组完整性。RAD51 重组酶在该机制中发挥核心作用,得到其 RAD52 和 BRCA2 伴侣的支持。虽然 BRCA2 将 RAD51 加载到 RPA-ssDNA 上的中介功能已得到很好的证实,但 RAD52 在 HR 中的作用仍远未被理解。我们使用透射电子显微镜结合生物化学方法来表征 RPA、RAD52 和 BRCA2 在 RAD51 丝组装及其活性中的顺序参与。尽管我们的结果证实 RAD52 缺乏中介活性,但 RAD52 可以紧密结合到 RPA 包裹的 ssDNA 上,抑制 BRCA2 的中介活性,并形成更短的 RAD51-RAD52 混合丝,这些丝在形成联会复合物和 D 环方面更有效,导致更频繁的多次入侵。我们在体内双链断裂诱导后确认了 RAD51 和 RAD52 之间的原位相互作用。这项研究为 BRCA2 和 RAD52 在人类 HR 过程中形成和调节前联会和联会中间体提供了新的分子见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a592/10713436/2ae3188b1af9/LSA-2022-01751_Fig1.jpg

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