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SUMO 协调多种替代的 DNA-蛋白质交联修复途径。

SUMO orchestrates multiple alternative DNA-protein crosslink repair pathways.

机构信息

Department of Cell Biology, University of Geneva, 1211 Geneva 4, Switzerland.

Department of Cell Biology, University of Geneva, 1211 Geneva 4, Switzerland.

出版信息

Cell Rep. 2021 Nov 23;37(8):110034. doi: 10.1016/j.celrep.2021.110034.

Abstract

Endogenous metabolites, environmental agents, and therapeutic drugs promote formation of covalent DNA-protein crosslinks (DPCs). Persistent DPCs compromise genome integrity and are eliminated by multiple repair pathways. Aberrant Top1-DNA crosslinks, or Top1ccs, are processed by Tdp1 and Wss1 functioning in parallel pathways in Saccharomyces cerevisiae. It remains obscure how cells choose between diverse mechanisms of DPC repair. Here, we show that several SUMO biogenesis factors (Ulp1, Siz2, Slx5, and Slx8) control repair of Top1cc or an analogous DPC lesion. Genetic analysis reveals that SUMO promotes Top1cc processing in the absence of Tdp1 but has an inhibitory role if cells additionally lack Wss1. In the tdp1Δ wss1Δ mutant, the E3 SUMO ligase Siz2 stimulates sumoylation in the vicinity of the DPC, but not SUMO conjugation to Top1. This Siz2-dependent sumoylation inhibits alternative DPC repair mechanisms, including Ddi1. Our findings suggest that SUMO tunes available repair pathways to facilitate faithful DPC repair.

摘要

内源性代谢物、环境因子和治疗药物会促进共价 DNA-蛋白质交联(DPC)的形成。持续的 DPC 会损害基因组的完整性,并通过多种修复途径被消除。异常的 Top1-DNA 交联或 Top1ccs,会在酿酒酵母中通过平行途径的 Tdp1 和 Wss1 来处理。目前仍不清楚细胞如何在不同的 DPC 修复机制之间做出选择。在这里,我们表明几种 SUMO 生物发生因子(Ulp1、Siz2、Slx5 和 Slx8)控制 Top1cc 或类似 DPC 损伤的修复。遗传分析显示,SUMO 在没有 Tdp1 的情况下促进 Top1cc 的处理,但如果细胞还缺乏 Wss1,则会产生抑制作用。在 tdp1Δ wss1Δ 突变体中,E3 SUMO 连接酶 Siz2 会刺激 DPC 附近的 SUMO 化,但不会将 SUMO 连接到 Top1 上。这种 Siz2 依赖性的 SUMO 化会抑制替代的 DPC 修复机制,包括 Ddi1。我们的发现表明,SUMO 可以调整可用的修复途径,以促进 DPC 的准确修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c64b/10042627/946cac352457/nihms-1874250-f0002.jpg

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