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Published on: February 17, 2011
BRG1 Loss Predisposes Lung Cancers to Replicative Stress and ATR Dependency
Manav Gupta1,2,3, Carla P Concepcion4,5, Caroline G Fahey1,2
1Stem Cell Program, Division of Hematology/Oncology and Division of Pulmonary Medicine, Boston Children's Hospital, Boston, Massachusetts.
Abstract:
Inactivation of SMARCA4/BRG1, the core ATPase subunit of mammalian SWI/SNF complexes, occurs at very high frequencies in non-small cell lung cancers (NSCLC). There are no targeted therapies for this subset of lung cancers, nor is it known how mutations in BRG1 contribute to lung cancer progression. Using a combination of gain- and loss-of-function approaches, we demonstrate that deletion of BRG1 in lung cancer leads to activation of replication stress responses. Single-molecule assessment of replication fork dynamics in BRG1-deficient cells revealed increased origin firing mediated by the prelicensing protein, CDC6. Quantitative mass spectrometry and coimmunoprecipitation assays showed that BRG1-containing SWI/SNF complexes interact with RPA complexes. Finally, BRG1-deficient lung cancers were sensitive to pharmacologic inhibition of ATR. These findings provide novel mechanistic insight into BRG1-mutant lung cancers and suggest that their dependency on ATR can be leveraged therapeutically and potentially expanded to BRG1-mutant cancers in other tissues. SIGNIFICANCE: These findings indicate that inhibition of ATR is a promising therapy for the 10% of non-small cell lung cancer patients harboring mutations in SMARCA4/BRG1. GRAPHICAL ABSTRACT: http://cancerres.aacrjournals.org/content/canres/80/18/3841/F1.large.jpg.
Insights
Inactivating SMARCA4/BRG1 mutations in lung cancer activate replication stress. BRG1-deficient lung cancers are sensitive to ATR inhibitors, offering a potential new therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- SMARCA4/BRG1 inactivation is frequent in non-small cell lung cancer (NSCLC).
- The role of BRG1 mutations in lung cancer progression and targeted therapy is unknown.
- SWI/SNF complexes are crucial for genome stability and cancer development.
Purpose of the Study:
- To investigate the functional consequences of BRG1 loss in lung cancer.
- To identify therapeutic vulnerabilities in BRG1-mutant lung cancers.
- To explore the mechanism linking BRG1 deficiency to replication stress.
Main Methods:
- Gain- and loss-of-function studies in lung cancer models.
- Single-molecule assessment of replication fork dynamics.
- Quantitative mass spectrometry and coimmunoprecipitation.
- Pharmacologic inhibition of ATR kinase.
Main Results:
- BRG1 deletion in lung cancer activates replication stress responses.
- BRG1-deficient cells exhibit increased origin firing mediated by CDC6.
- BRG1-SWI/SNF complexes interact with RPA complexes.
- BRG1-mutant lung cancers show sensitivity to ATR inhibition.
Conclusions:
- BRG1 deficiency promotes replication stress and genomic instability in lung cancer.
- ATR inhibition represents a promising therapeutic strategy for BRG1-mutant NSCLC.
- Targeting ATR may be beneficial for BRG1-mutant cancers in other tissues.
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