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P-glycoprotein attenuates DNA repair activity in multidrug-resistant cells by acting through the Cbp-Csk-Src cascade
Li-Fang Lin1, Ming-Hsi Wu1, Vijaya Kumar Pidugu1,2
1Institute of Biomedical Sciences, Academia Sinica, Taipei 11529, Taiwan.
Abstract:
Recent studies have demonstrated that P-glycoprotein (P-gp) expression impairs DNA interstrand cross-linking agent-induced DNA repair efficiency in multidrug-resistant (MDR) cells. To date, the detailed molecular mechanisms underlying how P-gp interferes with Src activation and subsequent DNA repair activity remain unclear. In this study, we determined that the C-terminal Src kinase-binding protein (Cbp) signaling pathway involved in the negative control of Src activation is enhanced in MDR cells. We also demonstrated that cells that ectopically express P-gp exhibit reduced activation of DNA damage response regulators, such as ATM, Chk2, Braca1 and Nbs1 and hence attenuated DNA double-strand break repair capacity and become more susceptible than vector control cells to DNA interstrand cross-linking (ICL) agents. Moreover, we demonstrated that P-gp can not only interact with Cbp and Src but also enhance the formation of inhibitory C-terminal Src kinase (Csk)-Cbp complexes that reduce phosphorylation of the Src activation residue Y416 and increase phosphorylation of the Src negative regulatory residue Y527. Notably, suppression of Cbp expression in MDR cells restores cisplatin-induced Src activation, improves DNA repair capacity, and increases resistance to ICL agents. Ectopic expression of Cbp attenuates cisplatin-induced Src activation and increases the susceptibility of cells to ICL agents. Together, the current results indicate that P-gp inhibits DNA repair activity by modulating Src activation via Cbp-Csk-Src cascade. These results suggest that DNA ICL agents are likely to have therapeutic potential against MDR cells with P-gp-overexpression.
Insights
P-glycoprotein (P-gp) in multidrug-resistant cells inhibits DNA repair by enhancing the C-terminal Src kinase-binding protein (Cbp) pathway, which suppresses Src activation. Restoring Src activity improves DNA repair and resistance to DNA cross-linking agents.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- P-glycoprotein (P-gp) expression in multidrug-resistant (MDR) cells impairs DNA repair efficiency after DNA interstrand cross-linking (ICL) agent treatment.
- The precise molecular mechanisms by which P-gp interferes with Src activation and DNA repair remain incompletely understood.
Purpose of the Study:
- To elucidate the molecular mechanisms by which P-gp interferes with Src activation and DNA repair in MDR cells.
- To investigate the role of the C-terminal Src kinase-binding protein (Cbp) signaling pathway in P-gp-mediated inhibition of DNA repair.
Main Methods:
- Investigated P-gp expression, Src activation, and DNA damage response regulator activity in MDR cells.
- Utilized co-immunoprecipitation to examine interactions between P-gp, Cbp, and Src.
- Assessed DNA double-strand break repair capacity and sensitivity to ICL agents following manipulation of P-gp and Cbp expression.
Main Results:
- MDR cells exhibit enhanced Cbp signaling, leading to reduced Src activation and impaired DNA repair capacity.
- P-gp interacts with Cbp and Src, promoting inhibitory Csk-Cbp complexes that decrease Src activation.
- Suppression of Cbp in MDR cells restores Src activation, enhances DNA repair, and increases resistance to ICL agents.
Conclusions:
- P-glycoprotein inhibits DNA repair in MDR cells by modulating Src activation through the Cbp-Csk-Src signaling cascade.
- Targeting the Cbp-Csk-Src pathway may offer therapeutic strategies against MDR cells overexpressing P-gp.
- DNA interstrand cross-linking agents show potential therapeutic value against P-gp-overexpressing MDR cells.
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