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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >DNA break-induced sumoylation is enabled by collaboration between a SUMO ligase and the ssDNA-binding complex RPA
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DNA break-induced sumoylation is enabled by collaboration between a SUMO ligase and the ssDNA-binding complex RPA

机译:通过SUMO连接酶和ssDNA结合复合物RPA之间的协同作用,可实现DNA断裂诱导的sumoylation

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摘要

Upon genome damage, large-scale protein sumoylation occurs from yeast to humans to promote DNA repair. Currently, the underlying mechanism is largely unknown. Here we show that, upon DNA break induction, the budding yeast SUMO ligase Siz2 collaborates with the ssDNA-binding complex RPA (replication protein A) to induce the sumoylation of recombination factors and confer damage resistance. Both RPA and nuclease-generated ssDNA promote Siz2-mediated sumoylation. Mechanistically, the conserved Siz2 interaction with RPA enables Siz2 localization to damage sites. These findings provide a molecular basis for recruiting SUMO ligases to the vicinity of their substrates to induce sumoylation upon DNA damage.
机译:一旦基因组受损,从酵母到人类就会发生大规模的蛋白质磺酰化反应,从而促进DNA修复。目前,基本机制尚不清楚。在这里,我们表明,在DNA断裂诱导后,出芽的酵母SUMO连接酶Siz2与ssDNA结合复合物RPA(复制蛋白A)协同作用,诱导重组因子的合成,并赋予了抗性。 RPA和核酸酶生成的ssDNA均可促进Siz2介导的sumoylation。从机理上讲,与RPA进行保守的Siz2交互可以使Siz2定位到损坏站点。这些发现为将SUMO连接酶募集到其底物附近以在DNA损伤时诱导SUMO化提供了分子基础。

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