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泛素化和 SUMO 化在 DNA 损伤反应中的作用。

Roles of Ubiquitination and SUMOylation in DNA Damage Response.

机构信息

Lineberger Comprehensive Cancer Center, The University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.

出版信息

Curr Issues Mol Biol. 2020;35:59-84. doi: 10.21775/cimb.035.059. Epub 2019 Aug 18.

Abstract

Ubiquitin and ubiquitin-like modifiers, such as SUMO, exert distinct physiological functions by conjugating to protein substrates. Ubiquitination or SUMOylation of protein substrates determine the fate of modified proteins, including proteasomal degradation, cellular re-localization, alternations in binding partners and serving as a protein-binding platform, in a ubiquitin or SUMO linkage-dependent manner. DNA damage occurs constantly in living organisms but is also repaired by distinct tightly controlled mechanisms including homologous recombination, non-homologous end joining, inter-strand crosslink repair, nucleotide excision repair and base excision repair. On sensing damaged DNA, a ubiquitination/SUMOylation landscape is established to recruit DNA damage repair factors. Meanwhile, misloaded and mission-completed repair factors will be turned over by ubiquitin or SUMO modifications as well. These ubiquitination and SUMOylation events are tightly controlled by both E3 ubiquitin/SUMO ligases and deubiquitinases/deSUMOylases. In this review, we will summarize identified ubiquitin and SUMO-related modifications and their function in distinct DNA damage repair pathways, and provide evidence for responsible E3 ligases, deubiquitinases, SUMOylases and deSUMOylases in these processes. Given that genome instability leads to human disorders including cancer, understanding detailed molecular mechanisms for ubiquitin and SUMO-related regulations in DNA damage response may provide novel insights into therapeutic modalities to treat human diseases associated with deregulated DNA damage response.

摘要

泛素和类泛素修饰物(如 SUMO)通过与蛋白质底物结合发挥不同的生理功能。蛋白质底物的泛素化或 SUMO 化决定了修饰蛋白的命运,包括蛋白酶体降解、细胞重新定位、结合伙伴的改变以及作为蛋白质结合平台,这是一种依赖于泛素或 SUMO 连接的方式。在活生物体中,DNA 损伤会不断发生,但也会通过不同的严格控制的机制进行修复,包括同源重组、非同源末端连接、链间交联修复、核苷酸切除修复和碱基切除修复。在感知到受损的 DNA 后,会建立一个泛素/SUMO 化景观来招募 DNA 损伤修复因子。同时,错误加载和完成任务的修复因子也会被泛素或 SUMO 修饰物所取代。这些泛素化和 SUMO 化事件受到 E3 泛素/SUMO 连接酶和去泛素酶/去 SUMO 酶的严格控制。在这篇综述中,我们将总结已鉴定的泛素和 SUMO 相关修饰及其在不同的 DNA 损伤修复途径中的功能,并为这些过程中负责的 E3 连接酶、去泛素酶、SUMO 酶和去 SUMO 酶提供证据。鉴于基因组不稳定性导致人类疾病,包括癌症,了解泛素和 SUMO 相关调节在 DNA 损伤反应中的详细分子机制可能为治疗与调节 DNA 损伤反应相关的人类疾病提供新的思路。

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