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鉴定三种人 POLH 种系变异体,它们在互补 POLH 缺陷细胞的紫外线和顺铂敏感性方面存在缺陷。

Identification of Three Human POLH Germline Variants Defective in Complementing the UV- and Cisplatin-Sensitivity of POLH-Deficient Cells.

机构信息

Department of Pharmacology, Sungkyunkwan University School of Medicine, Suwon 16419, Republic of Korea.

Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, TN 37232-0146, USA.

出版信息

Int J Mol Sci. 2023 Mar 8;24(6):5198. doi: 10.3390/ijms24065198.

Abstract

DNA polymerase (pol) η is responsible for error-free translesion DNA synthesis (TLS) opposite ultraviolet light (UV)-induced - cyclobutane thymine dimers (CTDs) and cisplatin-induced intrastrand guanine crosslinks. POLH deficiency causes one form of the skin cancer-prone disease xeroderma pigmentosum variant (XPV) and cisplatin sensitivity, but the functional impacts of its germline variants remain unclear. We evaluated the functional properties of eight human POLH germline in silico-predicted deleterious missense variants, using biochemical and cell-based assays. In enzymatic assays, utilizing recombinant pol η (residues 1-432) proteins, the C34W, I147N, and R167Q variants showed 4- to 14-fold and 3- to 5-fold decreases in specificity constants (/) for dATP insertion opposite the 3'-T and 5'-T of a CTD, respectively, compared to the wild-type, while the other variants displayed 2- to 4-fold increases. A CRISPR/Cas9-mediated POLH knockout increased the sensitivity of human embryonic kidney 293 cells to UV and cisplatin, which was fully reversed by ectopic expression of wild-type pol η, but not by that of an inactive (D115A/E116A) or either of two XPV-pathogenic (R93P and G263V) mutants. Ectopic expression of the C34W, I147N, and R167Q variants, unlike the other variants, did not rescue the UV- and cisplatin-sensitivity in POLH-knockout cells. Our results indicate that the C34W, I147N, and R167Q variants-substantially reduced in TLS activity-failed to rescue the UV- and cisplatin-sensitive phenotype of POLH-deficient cells, which also raises the possibility that such hypoactive germline POLH variants may increase the individual susceptibility to UV irradiation and cisplatin chemotherapy.

摘要

DNA 聚合酶(pol)η 负责无差错跨损伤 DNA 合成(TLS),以应对紫外线(UV)诱导的-环丁烷胸腺嘧啶二聚体(CTD)和顺铂诱导的链内鸟嘌呤交联。POLH 缺乏会导致皮肤癌易感疾病着色性干皮病变体(XPV)和顺铂敏感性的一种形式,但其种系变体的功能影响仍不清楚。我们使用生化和基于细胞的测定法评估了八种人类 POLH 种系预测的有害错义变体的功能特性。在酶促测定中,利用重组 pol η(残基 1-432)蛋白,C34W、I147N 和 R167Q 变体相对于野生型,在 dATP 插入 CTD 的 3'-T 和 5'-T 时的特异性常数(/)分别降低了 4-14 倍和 3-5 倍,而其他变体则增加了 2-4 倍。CRISPR/Cas9 介导的 POLH 敲除增加了人胚肾 293 细胞对 UV 和顺铂的敏感性,而野生型 pol η 的异位表达完全逆转了这种敏感性,但无效的(D115A/E116A)或两种 XPV 致病性变体(R93P 和 G263V)则不然。与其他变体不同,C34W、I147N 和 R167Q 变体的异位表达不能挽救 POLH 敲除细胞对 UV 和顺铂的敏感性。我们的结果表明,C34W、I147N 和 R167Q 变体的 TLS 活性大大降低,未能挽救 POLH 缺陷细胞的 UV 和顺铂敏感表型,这也增加了这种低活性种系 POLH 变体可能增加个体对 UV 照射和顺铂化疗敏感性的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e114/10048814/9ded617f3043/ijms-24-05198-g001.jpg

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