SMARCA4 mutation induces tumor cell-intrinsic defects in enhancer landscape and resistance to immunotherapy

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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