Epistatic role of base excision repair and mismatch repair pathways in mediating cisplatin cytotoxicity
نویسندگان
چکیده
Base excision repair (BER) and mismatch repair (MMR) pathways play an important role in modulating cis-Diamminedichloroplatinum (II) (cisplatin) cytotoxicity. In this article, we identified a novel mechanistic role of both BER and MMR pathways in mediating cellular responses to cisplatin treatment. Cells defective in BER or MMR display a cisplatin-resistant phenotype. Targeting both BER and MMR pathways resulted in no additional resistance to cisplatin, suggesting that BER and MMR play epistatic roles in mediating cisplatin cytotoxicity. Using a DNA Polymerase β (Polβ) variant deficient in polymerase activity (D256A), we demonstrate that MMR acts downstream of BER and is dependent on the polymerase activity of Polβ in mediating cisplatin cytotoxicity. MSH2 preferentially binds a cisplatin interstrand cross-link (ICL) DNA substrate containing a mismatch compared with a cisplatin ICL substrate without a mismatch, suggesting a novel mutagenic role of Polβ in activating MMR in response to cisplatin. Collectively, these results provide the first mechanistic model for BER and MMR functioning within the same pathway to mediate cisplatin sensitivity via non-productive ICL processing. In this model, MMR participation in non-productive cisplatin ICL processing is downstream of BER processing and dependent on Polβ misincorporation at cisplatin ICL sites, which results in persistent cisplatin ICLs and sensitivity to cisplatin.
منابع مشابه
Novel role of base excision repair in mediating cisplatin cytotoxicity.
Using isogenic mouse embryonic fibroblasts and human cancer cell lines, we show that cells defective in base excision repair (BER) display a cisplatin-specific resistant phenotype. This was accompanied by enhanced repair of cisplatin interstrand cross-links (ICLs) and ICL-induced DNA double strand breaks, but not intrastrand adducts. Cisplatin induces abasic sites with a reduced accumulation in...
متن کاملPlatinum resistance: the role of DNA repair pathways.
Although platinum chemotherapeutic agents such as carboplatin, cisplatin, and oxaliplatin are used to treat a broad range of malignant diseases, their efficacy in most cancers is limited by the development of resistance. There are multiple factors that contribute to platinum resistance but alterations of DNA repair processes have been known for some time to be important in mediating resistance....
متن کاملMonofunctional platinum-DNA adducts are strong inhibitors of transcription and substrates for nucleotide excision repair in live mammalian cells.
To overcome drug resistance and reduce the side effects of cisplatin, a widely used antineoplastic agent, major efforts have been made to develop next generation platinum-based anticancer drugs. Because cisplatin-DNA adducts block RNA polymerase II unless removed by transcription-coupled excision repair, compounds that react similarly but elude repair are desirable. The monofunctional platinum ...
متن کاملIdentifying biomarkers for resistance to novel cisplatin analogues in human lung, breast and prostate cancers
Identifying Biomarkers for Resistance to Novel Cisplatin Analogues in Human Lung, Breast and Prostate Cancers by Becky Michelle Hess Dr. Bryan L. Spangelo, Examination Committee Chair Professor of Chemistry University of Nevada, Las Vegas Cisplatin is a common therapeutic agent used in cancer treatment. Unfortunately, resistance to cisplatin in addition to severe side effects limits its use in ...
متن کاملNovel Role of Base Excision Repair (ber) in Mediating Cisplatin Cytotoxicity*
CYTOTOXICITY* Anbarasi Kothandapani, Venkata Srinivas Mohan Nimai Dangeti, Ashley R. Brown, Lauren A. Banze, Xiao-Hong Wang, Robert W. Sobol and Steve M. Patrick 1. Department of Biochemistry and Cancer Biology, University of Toledo – Health Science Campus, Toledo, OH 43614 2. Department of Pharmacology & Chemical Biology, University of Pittsburgh School of Medicine, Pittsburg, PA 15213 3. Univ...
متن کامل