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RADX的结构及RAD51核丝调节机制。

Structure of RADX and mechanism for regulation of RAD51 nucleofilaments.

作者信息

Balakrishnan Swati, Adolph Madison, Tsai Miaw-Sheue, Gallagher Kaitlyn, Cortez David, Chazin Walter J

机构信息

Center for Structural Biology, Vanderbilt University, Nashville, TN 37240, USA.

Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, TN 37237, USA.

出版信息

bioRxiv. 2023 Sep 20:2023.09.19.558089. doi: 10.1101/2023.09.19.558089.

Abstract

Replication fork reversal is a fundamental process required for resolution of encounters with DNA damage. A key step in the stabilization and eventual resolution of reversed forks is formation of RAD51 nucleoprotein filaments on exposed ssDNA. To avoid genome instability, RAD51 filaments are tightly controlled by a variety of positive and negative regulators. RADX is a recently discovered negative regulator that binds tightly to ssDNA, directly interacts with RAD51, and regulates replication fork reversal and stabilization in a context-dependent manner. Here we present a structure-based investigation of RADX's mechanism of action. Mass photometry experiments showed that RADX forms multiple oligomeric states in a concentration dependent manner, with a predominance of trimers in the presence of ssDNA. The structure of RADX, which has no structurally characterized orthologs, was determined by cryo-electron microscopy (EM) from maps in the 2-3 Å range. The structure reveals the molecular basis for RADX oligomerization and binding of ssDNA binding. The binding of RADX to RAD51 filaments was imaged by negative stain EM, which showed a RADX oligomer at the end of filaments. Based on these results, we propose a model in which RADX functions by capping and restricting the growing end of RAD51 filaments.

摘要

复制叉逆转是解决DNA损伤时所必需的一个基本过程。在稳定并最终解决逆转叉的过程中,一个关键步骤是在暴露的单链DNA上形成RAD51核蛋白丝。为避免基因组不稳定,RAD51丝受到多种正负调节因子的严格控制。RADX是最近发现的一种负调节因子,它与单链DNA紧密结合,直接与RAD51相互作用,并以上下文依赖的方式调节复制叉的逆转和稳定。在此,我们展示了一项基于结构对RADX作用机制的研究。质量光度法实验表明,RADX以浓度依赖的方式形成多种寡聚状态,在单链DNA存在的情况下以三聚体为主。RADX没有结构已明确的直系同源物,其结构通过冷冻电子显微镜(EM)从2-3 Å范围内的图谱确定。该结构揭示了RADX寡聚化和单链DNA结合的分子基础。通过负染EM对RADX与RAD51丝的结合进行成像,结果显示在丝的末端有一个RADX寡聚体。基于这些结果,我们提出了一个模型,其中RADX通过封闭和限制RAD51丝的生长末端发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9541/10541619/87a0796bf9b5/nihpp-2023.09.19.558089v1-f0001.jpg

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