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Rad5及其人类同源物HLTF和SHPRH是错配修复的新型相互作用蛋白。

Rad5 and Its Human Homologs, HLTF and SHPRH, Are Novel Interactors of Mismatch Repair.

作者信息

Miller Anna K, Mao Guogen, Knicely Breanna G, Daniels Hannah G, Rahal Christine, Putnam Christopher D, Kolodner Richard D, Goellner Eva M

机构信息

College of Medicine Department of Toxicology and Cancer Biology, University of Kentucky, Lexington, KY, United States.

Ludiwg Institute for Cancer Research San Diego, San Diego, CA, United States.

出版信息

Front Cell Dev Biol. 2022 Jun 16;10:843121. doi: 10.3389/fcell.2022.843121. eCollection 2022.

Abstract

DNA mismatch repair (MMR) repairs replication errors, and MMR defects play a role in both inherited cancer predisposition syndromes and in sporadic cancers. MMR also recognizes mispairs caused by environmental and chemotherapeutic agents; however, in these cases mispair recognition leads to apoptosis and not repair. Although mutation avoidance by MMR is fairly well understood, MMR-associated proteins are still being identified. We performed a bioinformatic analysis that implicated Rad5 as a candidate for interacting with the MMR proteins Msh2 and Mlh1. Rad5 is a DNA helicase and E3 ubiquitin ligase involved in post-replicative repair and damage tolerance. We confirmed both interactions and found that the Mlh1 interaction is mediated by a conserved Mlh1-interacting motif (MIP box). Despite this, we did not find a clear role for Rad5 in the canonical MMR mutation avoidance pathway. The interaction of Rad5 with Msh2 and Mlh1 is conserved in humans, although each of the Rad5 human homologs, HLTF and SHPRH, shared only one of the interactions: HLTF interacts with MSH2, and SHPRH interacts with MLH1. Moreover, depletion of SHPRH, but not HLTF, results in a mild increase in resistance to alkylating agents although not as strong as loss of MMR, suggesting gene duplication led to specialization of the MMR-protein associated roles of the human Rad5 homologs. These results provide insights into how MMR accessory factors involved in the MMR-dependent apoptotic response interact with the core MMR machinery and have important health implications into how human cells respond to environmental toxins, tumor development, and treatment choices of tumors with defects in Rad5 homologs.

摘要

DNA错配修复(MMR)可修复复制错误,MMR缺陷在遗传性癌症易感综合征和散发性癌症中均起作用。MMR还能识别由环境和化疗药物引起的错配;然而,在这些情况下,错配识别会导致细胞凋亡而非修复。尽管MMR避免突变的机制已得到较好理解,但仍在不断鉴定与MMR相关的蛋白质。我们进行了一项生物信息学分析,结果表明Rad5是与MMR蛋白Msh2和Mlh1相互作用的候选蛋白。Rad5是一种DNA解旋酶和E3泛素连接酶,参与复制后修复和损伤耐受。我们证实了这两种相互作用,并发现Mlh1的相互作用是由一个保守的Mlh1相互作用基序(MIP框)介导的。尽管如此,我们并未发现Rad5在经典的MMR突变避免途径中具有明确作用。Rad5与Msh2和Mlh1的相互作用在人类中是保守的,尽管Rad5的每个人类同源物HLTF和SHPRH仅共享其中一种相互作用:HLTF与MSH2相互作用,SHPRH与MLH1相互作用。此外,SHPRH的缺失而非HLTF的缺失会导致对烷化剂的抗性轻度增加,尽管不如MMR缺失那么强烈,这表明基因复制导致了人类Rad5同源物与MMR蛋白相关作用的特化。这些结果为参与MMR依赖性凋亡反应的MMR辅助因子如何与核心MMR机制相互作用提供了见解,并对人类细胞如何应对环境毒素、肿瘤发展以及Rad5同源物缺陷肿瘤的治疗选择具有重要的健康意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0ac/9243396/ea8451e50147/fcell-10-843121-g001.jpg

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