染色质
细胞生物学
分区(防火)
DNA
支架蛋白
化学
前期
DNA修复
生物
遗传学
生物化学
信号转导
基因
酶
减数分裂
作者
Emile Alghoul,Matteo Paloni,Arato Takedachi,Serge Urbach,Alessandro Barducci,Pierre-Henri L. Gaillard,Jihane Basbous,Angelos Constantinou
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2022-09-20
被引量:1
标识
DOI:10.1101/2022.09.20.508711
摘要
Summary SLX4, disabled in Fanconi anemia group P, is a scaffolding protein that coordinates the action of structure-specific endonucleases and other proteins involved in replication-coupled repair of DNA interstrand crosslinks (ICLs). Here we show that SLX4 dimerization and SUMO-SIM interactions drive the assembly of SLX4 membraneless compartments in the nucleus called condensates. Super-resolution microscopy reveals that SLX4 forms chromatin-bound clusters of nanocondensates. We report that SLX4 compartmentalizes the SUMO-RNF4 signaling pathway. SENP6 and RNF4 regulate the assembly and disassembly of SLX4 condensates, respectively. SLX4 condensation per se triggers the selective modification of proteins by SUMO and ubiquitin. Specifically, SLX4 condensation induces ubiquitylation and chromatin extraction of topoisomerase 1 DNA-protein cross-links. SLX4 condensation also induces the nucleolytic degradation of newly replicated DNA. We propose that the compartmentalization of proteins by SLX4 through site-specific interactions ensures the spatiotemporal control of protein modifications and nucleolytic reactions during DNA repair.
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