Functional analysis of germline RAD51C missense variants highlight the role of RAD51C in replication fork protection

Author:

Kolinjivadi Arun Mouli12ORCID,Chong Siao Ting13,Choudhary Ramveer4,Sankar Haresh3,Chew Ee Ling3,Yeo Claresta1,Chan Sock Hoai35,Ngeow Joanne1356

Affiliation:

1. Nanyang Technological University Lee Kong Chian School of Medicine, , Singapore 308232 , Singapore

2. inStem & NCBS Centre for Chemical Biology & Therapeutics, , Bellary Road, Bangalore 560065 , India

3. National Cancer Centre Cancer Genetics Service, Division of Medical Oncology, , Singapore 169610 , Singapore

4. FIRC Institute of Molecular Oncology (IFOM) , Milan 20139 , Italy

5. Duke-NUS Medical School Singapore Oncology Academic Clinical Program, , Singapore 169857 , Singapore

6. Institute of Molecular and Cell Biology , 61 Biopolis Drive, Singapore 138673 , Singapore

Abstract

Abstract Monoallelic or biallelic RAD51C germline mutations results in chromosome instability disorders such as Fanconi anemia and cancers. The bona fide function of RAD51C is to assist RAD51 nucleoprotein filament onto single-strand DNA to complete homologous recombination (HR) repair. In addition to HR repair, the role of RAD51C in DNA replication is emerging when replication forks are transiently or irreversibly stalled. We identified novel RAD51C variants of uncertain significance (VUS) from breast, ovarian, pancreatic and gastric cancer patients and functionally characterized the effect of these variants in replication fork protection and double-strand breaks (DSB’s) repair. In RAD51C-deficient Chinese hamster CL-V4B cells, expression of RAD51C F164S, A87E, L134S and E49K variants heightened sensitivity to mitomycin C (MMC), etoposide and PARP inhibition. Differently, expression of subset of RAD51C variants R24L, R24W and R212H displayed mild sensitivity to MMC, etoposide and PARP inhibition. Further functional characterization of a subset of variants revealed that Rad51C F164S, A87E, L134S and E49K variants displayed reduced RAD51 foci formation and increased overall nuclear single strand DNA levels in the presence of replication stress. Additionally, DNA fiber assay revealed that RAD51C F164S, A87E, L134S and E49K variants displayed defective replication fork protection upon prolonged fork stalling. Investigations using patient-derived lymphoblastoid cell line carrying heterozygous RAD51C L134S variant showed an impairment in RAD51 chromatin association and replication fork protection, suggestive of deleteriousness of this VUS variant. Overall, our findings provide more insights into molecular roles of RAD51C in replication fork integrity maintenance and in DSB repair.

Funder

National Medical Research Council

Ministry of Education

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

Reference37 articles.

1. Predominance of pathogenic missense variants in the RAD51C gene occurring in breast and ovarian cancer families;Osorio;Hum. Mol. Genet.,2012

2. Variants of uncertain significance in the era of high-throughput genome sequencing: a lesson from breast and ovary cancers;Federici;J. Exp. Clin. Cancer Res.,2020

3. Germline mutations in breast and ovarian cancer pedigrees establish RAD51C as a human cancer susceptibility gene;Meindl;Nat. Genet.,2010

4. Distinct roles of FANCO/RAD51C protein in DNA damage signaling and repair: implications for Fanconi anemia and breast cancer susceptibility;Somyajit;J. Biolumin. Chemilumin.,2012

5. Mammalian RAD51 paralogs protect nascent DNA at stalled forks and mediate replication restart;Somyajit;Nucleic Acids Res.,2015

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