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Interplay between Ubiquitin SUMO and Poly(ADP-Ribose) in the Cellular Response to Genotoxic Stress

机译:泛素SUMO和聚(ADP-核糖)对遗传毒性胁迫的细胞反应之间的相互作用

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摘要

Cells employ a complex network of molecular pathways to cope with endogenous and exogenous genotoxic stress. This multilayered response ensures that genomic lesions are efficiently detected and faithfully repaired in order to safeguard genome integrity. The molecular choreography at sites of DNA damage relies heavily on post-translational modifications (PTMs). Protein modifications with ubiquitin and the small ubiquitin-like modifier SUMO have recently emerged as important regulatory means to coordinate DNA damage signaling and repair. Both ubiquitylation and SUMOylation can lead to extensive chain-like protein modifications, a feature that is shared with yet another DNA damage-induced PTM, the modification of proteins with poly(ADP-ribose) (PAR). Chains of ubiquitin, SUMO, and PAR all contribute to the multi-protein assemblies found at sites of DNA damage and regulate their spatio-temporal dynamics. Here, we review recent advancements in our understanding of how ubiquitin, SUMO, and PAR coordinate the DNA damage response and highlight emerging examples of an intricate interplay between these chain-like modifications during the cellular response to genotoxic stress.
机译:细胞利用复杂的分子途径网络来应对内源性和外源性遗传毒性胁迫。这种多层响应可确保有效检测和忠实修复基因组损伤,以维护基因组完整性。 DNA损伤位点的分子编排在很大程度上依赖于翻译后修饰(PTM)。最近,用泛素和小的泛素样修饰剂SUMO修饰蛋白质已成为协调DNA损伤信号传导和修复的重要调控手段。泛素化和SUMOylation均可导致广泛的链状蛋白修饰,这一特征与另一种DNA损伤诱导的PTM相同,即用聚(ADP-核糖)(PAR)修饰蛋白。泛素,SUMO和PAR链均有助于在DNA损伤位点发现的多蛋白装配,并调节其时空动态。在这里,我们回顾了对泛素,SUMO和PAR如何协调DNA损伤反应的理解的最新进展,并突出了在对遗传毒性应激的细胞反应过程中,这些链状修饰之间复杂相互作用的新兴例子。

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