XPA tumor variant leads to defects in NER that sensitize cells to cisplatin

Author:

Blee Alexandra M12ORCID,Gallagher Kaitlyn S12,Kim Hyun-Suk3,Kim Mihyun34,Kharat Suhas S12,Troll Christina R5,D’Souza Areetha12,Park Jiyoung3,Neufer P Drew12,Schärer Orlando D134,Chazin Walter J125

Affiliation:

1. Department of Biochemistry, Vanderbilt University , Nashville , TN  37205 , USA

2. Center for Structural Biology, Vanderbilt University , Nashville , TN  37240 , USA

3. Center for Genomic Integrity, Institute for Basic Science , Ulsan  44919 , Republic of Korea

4. Department of Biological Sciences, Ulsan National Institute of Science and Technology , Ulsan  44919 , Republic of Korea

5. Department of Chemistry, Vanderbilt University , Nashville , TN  37240 , USA

Abstract

Abstract Nucleotide excision repair (NER) reduces efficacy of treatment with platinum (Pt)-based chemotherapy by removing Pt lesions from DNA. Previous study has identified that missense mutation or loss of the NER genes Excision Repair Cross Complementation Group 1 and 2 (ERCC1 and ERCC2) leads to improved patient outcomes after treatment with Pt-based chemotherapies. Although most NER gene alterations found in patient tumors are missense mutations, the impact of mutations in the remaining nearly 20 NER genes is unknown. Towards this goal, we previously developed a machine learning strategy to predict genetic variants in an essential NER protein, Xeroderma Pigmentosum Complementation Group A (XPA), that disrupt repair. In this study, we report in-depth analyses of a subset of the predicted variants, including in vitro analyses of purified recombinant protein and cell-based assays to test Pt agent sensitivity in cells and determine mechanisms of NER dysfunction. The most NER deficient variant Y148D had reduced protein stability, weaker DNA binding, disrupted recruitment to damage, and degradation. Our findings demonstrate that tumor mutations in XPA impact cell survival after cisplatin treatment and provide valuable mechanistic insights to improve variant effect prediction. Broadly, these findings suggest XPA tumor variants should be considered when predicting chemotherapy response.

Funder

NIH

Korean Institute for Basic Science

Vanderbilt-Ingram Cancer Center

Publisher

Oxford University Press (OUP)

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