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单链DNA被复制蛋白A包裹并通过磷酸化进行调控。

Wrapping of single-stranded DNA by Replication Protein A and modulation through phosphorylation.

作者信息

Chadda Rahul, Kaushik Vikas, Ahmad Iram Munir, Deveryshetty Jaigeeth, Holehouse Alex, Sigurdsson Snorri Th D, Bothner Brian, Dastvan Reza, Origanti Sofia, Antony Edwin

机构信息

Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St. Louis, MO, 63104, USA.

Department of Chemistry, Science Institute, University of Iceland, 107 Reykjavik, Iceland.

出版信息

bioRxiv. 2024 Mar 29:2024.03.28.587234. doi: 10.1101/2024.03.28.587234.

Abstract

Single-stranded DNA (ssDNA) intermediates, which emerge during DNA metabolic processes are shielded by Replication Protein A (RPA). RPA binds to ssDNA and acts as a gatekeeper, directing the ssDNA towards downstream DNA metabolic pathways with exceptional specificity. Understanding the mechanistic basis for such RPA-dependent specificity requires a comprehensive understanding of the structural conformation of ssDNA when bound to RPA. Previous studies suggested a stretching of ssDNA by RPA. However, structural investigations uncovered a partial wrapping of ssDNA around RPA. Therefore, to reconcile the models, in this study, we measured the end-to-end distances of free ssDNA and RPA-ssDNA complexes using single-molecule FRET and Double Electron-Electron Resonance (DEER) spectroscopy and found only a small systematic increase in the end-to-end distance of ssDNA upon RPA binding. This change does not align with a linear stretching model but rather supports partial wrapping of ssDNA around the contour of DNA binding domains of RPA. Furthermore, we reveal how phosphorylation at the key Ser-384 site in the RPA70 subunit provides access to the wrapped ssDNA by remodeling the DNA-binding domains. These findings establish a precise structural model for RPA-bound ssDNA, providing valuable insights into how RPA facilitates the remodeling of ssDNA for subsequent downstream processes.

摘要

在DNA代谢过程中出现的单链DNA(ssDNA)中间体由复制蛋白A(RPA)保护。RPA与ssDNA结合并充当守门人,以极高的特异性将ssDNA导向下游DNA代谢途径。要理解这种依赖RPA的特异性的机制基础,需要全面了解与RPA结合时ssDNA的结构构象。先前的研究表明RPA会使ssDNA伸展。然而,结构研究发现ssDNA会部分缠绕在RPA周围。因此,为了协调这些模型,在本研究中,我们使用单分子荧光共振能量转移和双电子-电子共振(DEER)光谱测量了游离ssDNA和RPA-ssDNA复合物的端到端距离,并发现RPA结合后ssDNA的端到端距离仅出现了小幅系统性增加。这种变化不符合线性伸展模型,而是支持ssDNA围绕RPA的DNA结合结构域轮廓进行部分缠绕。此外,我们揭示了RPA70亚基中关键的Ser-384位点的磷酸化如何通过重塑DNA结合结构域来接触被包裹的ssDNA。这些发现建立了RPA结合的ssDNA的精确结构模型,为RPA如何促进ssDNA重塑以进行后续下游过程提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4256/10996701/b3c65ae10bb0/nihpp-2024.03.28.587234v1-f0001.jpg

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