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核孔通过促进 SUMO 移除来启动停滞叉处依赖重组的 DNA 合成。

The nuclear pore primes recombination-dependent DNA synthesis at arrested forks by promoting SUMO removal.

机构信息

Institut Curie, PSL Research University, UMR3348, F-91405, Orsay, France.

CNRS UMR3348 "Genome integrity, RNA and Cancer", "Equipe labellisée LIGUE 2020", F-91405, Orsay, France.

出版信息

Nat Commun. 2020 Nov 6;11(1):5643. doi: 10.1038/s41467-020-19516-z.

Abstract

Nuclear Pore complexes (NPCs) act as docking sites to anchor particular DNA lesions facilitating DNA repair by elusive mechanisms. Using replication fork barriers in fission yeast, we report that relocation of arrested forks to NPCs occurred after Rad51 loading and its enzymatic activity. The E3 SUMO ligase Pli1 acts at arrested forks to safeguard integrity of nascent strands and generates poly-SUMOylation which promote relocation to NPCs but impede the resumption of DNA synthesis by homologous recombination (HR). Anchorage to NPCs allows SUMO removal by the SENP SUMO protease Ulp1 and the proteasome, promoting timely resumption of DNA synthesis. Preventing Pli1-mediated SUMO chains was sufficient to bypass the need for anchorage to NPCs and the inhibitory effect of poly-SUMOylation on HR-mediated DNA synthesis. Our work establishes a novel spatial control of Recombination-Dependent Replication (RDR) at a unique sequence that is distinct from mechanisms engaged at collapsed-forks and breaks within repeated sequences.

摘要

核孔复合物(NPCs)作为停靠点,通过难以捉摸的机制来固定特定的 DNA 损伤,从而促进 DNA 修复。利用有丝分裂酵母中的复制叉障碍,我们报告说,在 Rad51 加载及其酶活性之后,被阻止的叉会重新定位到 NPC 上。E3 SUMO 连接酶 Pli1 在被阻止的叉上发挥作用,以维护新生链的完整性,并产生多聚 SUMO 化,这促进了重新定位到 NPC,但阻碍了同源重组(HR)恢复 DNA 合成。锚定到 NPC 允许 SENP SUMO 蛋白酶 Ulp1 和蛋白酶体去除 SUMO,从而促进及时恢复 DNA 合成。阻止 Pli1 介导的 SUMO 链足以绕过 NPC 锚定的必要性以及多聚 SUMO 化对 HR 介导的 DNA 合成的抑制作用。我们的工作在独特的序列上建立了依赖重组的复制(RDR)的新型空间控制,该序列与在崩溃的叉和重复序列内的断裂处涉及的机制不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f3a/7648084/1519b43e2c97/41467_2020_19516_Fig1_HTML.jpg

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