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Updated: Jun 22, 2025

Analyzing Tumor Gene Expression Factors with the CorExplorer Web Portal
Published on: October 11, 2019
SMARCA4 mutation induces tumor cell-intrinsic defects in enhancer landscape and resistance to immunotherapy
Abstract:
Cancer genomic studies have identified frequent alterations in components of the SWI/SNF (SWItch/Sucrose Non- Fermenting) chromatin remodeling complex including SMARCA4 and ARID1A . Importantly, clinical reports indicate that SMARCA4 -mutant lung cancers respond poorly to immunotherapy and have dismal prognosis. However, the mechanistic basis of immunotherapy resistance is unknown. Here, we corroborated the clinical findings by using immune-humanized, syngeneic, and genetically engineered mouse models of lung cancer harboring SMARCA4 deficiency. Specifically, we show that SMARCA4 loss caused decreased response to anti-PD1 immunotherapy associated with significantly reduced infiltration of dendritic cells (DCs) and CD4+ T cells into the tumor microenvironment (TME). Mechanistically, we show that SMARCA4 loss in tumor cells led to profound downregulation of STING, IL1β and other components of the innate immune system as well as inflammatory cytokines that are required for efficient recruitment and activity of immune cells. We establish that this deregulation of gene expression is caused by cancer cell-intrinsic reprogramming of the enhancer landscape with marked loss of chromatin accessibility at enhancers of genes involved in innate immune response such as STING, IL1β, type I IFN and inflammatory cytokines. Interestingly, we observed that transcription factor NF-κB binding motif was highly enriched in enhancers that lose accessibility upon SMARCA4 deficiency. Finally, we confirmed that SMARCA4 and NF-κB co-occupy the same genomic loci on enhancers associated with STING and IL1β, indicating a functional interplay between SMARCA4 and NF-κB. Taken together, our findings provide the mechanistic basis for the poor response of SMARCA4 -mutant tumors to anti-PD1 immunotherapy and establish a functional link between SMARCA4 and NF-κB on innate immune and inflammatory gene expression regulation.
Insights
SMARCA4-deficient lung cancers show poor immunotherapy response due to reduced immune cell infiltration. This occurs because SMARCA4 loss impairs innate immune gene expression by altering enhancer accessibility and affecting NF-κB activity.
Area of Science:
- Oncology
- Immunology
- Genetics
- Chromatin Biology
Background:
- Frequent alterations in SWI/SNF chromatin remodeling complex components, including SMARCA4, are identified in cancer.
- SMARCA4-mutant lung cancers exhibit poor immunotherapy response and prognosis.
- The underlying mechanisms of immunotherapy resistance in SMARCA4-mutant lung cancers remain unclear.
Purpose of the Study:
- To investigate the mechanistic basis of immunotherapy resistance in SMARCA4-deficient lung cancer.
- To elucidate the role of SMARCA4 in regulating the tumor immune microenvironment and gene expression.
- To explore the interplay between SMARCA4, NF-κB, and innate immune gene regulation.
Main Methods:
- Utilized immune-humanized, syngeneic, and genetically engineered mouse models of SMARCA4-deficient lung cancer.
- Assessed tumor immune cell infiltration (dendritic cells, CD4+ T cells) and response to anti-PD1 immunotherapy.
- Analyzed gene expression, chromatin accessibility (ATAC-seq), and transcription factor binding (SMARCA4, NF-κB ChIP-seq).
Main Results:
- SMARCA4 loss decreased anti-PD1 immunotherapy response, correlating with reduced dendritic cell and CD4+ T cell infiltration.
- SMARCA4 deficiency led to downregulation of STING, IL1β, and inflammatory cytokines, impairing immune cell recruitment.
- SMARCA4 loss reprogrammed enhancer landscape, reducing accessibility at innate immune gene loci and enriched NF-κB motifs.
- SMARCA4 and NF-κB co-occupied enhancers of STING and IL1β, indicating functional interplay.
Conclusions:
- SMARCA4 deficiency in lung cancer impairs anti-PD1 immunotherapy response by disrupting innate immune gene expression.
- SMARCA4 regulates immune cell infiltration and anti-tumor immunity through modulation of enhancer accessibility and NF-κB signaling.
- Findings provide mechanistic insights into immunotherapy resistance and suggest potential therapeutic targets for SMARCA4-mutant lung cancers.
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