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SMARCA4/2 loss reduces BCL-xL expression and confers a druggable MCL1 dependency in cancer
Jialin Jiang1,2, Xianbing Zhu1,2, Zheng Fu1,2
1Department of Biochemistry, McGill University, Montreal, QC, Canada.
Abstract:
SMARCA4 (BRG1) and SMARCA2 (BRM) are the mutually exclusive ATPase subunits of the SWI/SNF chromatin remodeling complexes, often altered in cancers. Concurrent loss of SMARCA4/2 is found in some aggressive cancer types, including small cell carcinoma of the ovary, hypercalcemic type (SCCOHT), a rare and lethal ovarian cancer affecting young women, and a subset of non-small cell lung cancers (NSCLCs), associated with chemotherapy resistance and poor outcome. Through a functional genetic approach, we identified that inhibition of MCL1, an anti-apoptotic protein of the BCL-2 family, is synthetic lethal with SMARCA4/2 loss in these cancer cells. MCL1 suppression by RNAi or a small molecule inhibitor, S63845, selectively induced apoptosis in SMARCA4/2-deficient SCCOHT and NSCLC cells but not in SMARCA4/2-proficient controls. Mechanistically, SMARCA4/2 directly promotes mRNA expression of BCL-xL, encoding another key anti-apoptotic protein of the BCL-2 family; SMARCA4/2 loss therefore results in downregulation of BCL-xL, leading to MCL1 dependency to suppress apoptosis in these cancer cells. Furthermore, single-agent treatment of S63845 resulted in significant suppression of tumor growth in patient-derived xenografts of SMARCA4/2-deficient NSCLC and SCCOHT. Collectively, our work uncovered MCL1 as a synthetic lethal target in SMARCA4/2-deficient cancers that may be exploited therapeutically.
Insights
Loss of SMARCA4/2 in aggressive cancers creates a dependency on MCL1. Inhibiting MCL1 selectively kills these cancer cells, offering a potential new therapy for SMARCA4/2-deficient SCCOHT and NSCLC.
Area of Science:
- Cancer Biology
- Molecular Oncology
- Chromatin Remodeling
Background:
- SMARCA4 (BRG1) and SMARCA2 (BRM) are key subunits of SWI/SNF chromatin remodelers, frequently altered in cancers.
- Loss of both SMARCA4 and SMARCA2 occurs in aggressive cancers like SCCOHT and NSCLC, correlating with poor outcomes and chemoresistance.
Purpose of the Study:
- To identify therapeutic vulnerabilities associated with SMARCA4/2 loss in cancer.
- To investigate the synthetic lethal interactions in SMARCA4/2-deficient cancer cells.
Main Methods:
- Functional genetic screening to identify dependencies in SMARCA4/2-deficient cells.
- Utilizing RNA interference (RNAi) and small molecule inhibitors (S63845) targeting MCL1.
- Assessing apoptosis induction and tumor growth inhibition in preclinical models.
Main Results:
- MCL1 inhibition via RNAi or S63845 selectively induced apoptosis in SMARCA4/2-deficient SCCOHT and NSCLC cells.
- SMARCA4/2 loss leads to decreased BCL-xL expression, creating a dependency on MCL1 for survival.
- S63845 treatment significantly suppressed tumor growth in patient-derived xenografts of SMARCA4/2-deficient cancers.
Conclusions:
- MCL1 is a synthetic lethal target in cancers with SMARCA4/2 loss.
- Targeting MCL1 represents a promising therapeutic strategy for SMARCA4/2-deficient SCCOHT and NSCLC.
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