发展多学科策略来解释XPA错义突变对NER活性和顺铂敏感性的影响

Alexandra M. Blee, Bian Li, J. Capra, W. Chazin
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摘要

核苷酸切除修复(NER)是一种重要的DNA损伤修复途径,可去除因暴露于紫外线、环境毒素和铂类化疗药物而形成的大块DNA损伤,铂类化疗药物是许多癌症类型的标准治疗方法。肿瘤中NER基因表达的突变或降低与基于pt的化疗后患者生存率的提高相关。然而,大多数误义突变对NER基因的影响是未知的,并且很少有方法可以可靠地识别具有功能后果的非复发性旅客突变。在这项研究中,将开发一种多学科策略来预测、验证和表征必要的NER支架蛋白干皮色素补体组a (XPA)中的NER缺陷突变。计算分析用于对ner缺陷突变和ner精通突变进行评分,以供进一步研究。预测的NER缺陷XPA突变体在人类XPA缺陷细胞中表达,并筛选NER活性和顺铂敏感性。深入的生物物理和结构研究正在实施,以阐明功能障碍的机制。识别可能使肿瘤对基于pt的化疗敏感的ner缺陷突变代表了一种有希望的策略,可以对患者进行分层,以获得最佳治疗策略。
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Developing a multidisciplinary strategy to interpret the impact of missense mutations in XPA on NER activity and cisplatin sensitivity
Nucleotide excision repair (NER) is an essential DNA damage repair pathway that removes bulky DNA lesions formed by exposure to ultraviolet light, environmental toxins, and platinum (Pt)-based chemotherapeutic drugs that are a standard of care for many cancer types. Mutation or decreased NER gene expression in cancer correlates with improved patient survival after Pt-based chemotherapy. However, the impact of most missense mutations in NER genes is unknown, and few approaches exist to reliably identify nonrecurrent passenger mutations with functional consequences. In this study, a multidisciplinary strategy will be developed to predict, validate, and characterize NER-defective mutations in the essential NER scaffold protein Xeroderma Pigmentosum Complementation Group A (XPA). Computational analyses were used to score NER-deficient versus NER-proficient mutations for further study. Predicted NER-deficient XPA mutants are being expressed in human XPA-deficient cells and screened for both NER activity and cisplatin sensitivity. In-depth biophysical and structural studies are being implemented to elucidate mechanisms of dysfunction. Identifying NER-deficient mutations that may sensitize tumors to Pt-based chemotherapies represents a promising strategy to stratify patients for optimal treatment strategies.
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