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Interferon response and epigenetic modulation by mutations drive ovarian tumor immunogenicity. | LitMetric

AI Article Synopsis

  • Scientists are studying how certain changes in ovarian cancer cells help the immune system recognize and fight the cancer.
  • They found that when a specific part of the cancer cell's DNA is damaged, it makes the cancer cells more visible to the immune system.
  • Using special treatments, they could make cancer cells more recognizable, which might help improve treatments for ovarian cancer.

Article Abstract

Cell-intrinsic mechanisms of immunogenicity in ovarian cancer (OC) are not well understood. The presence of damaging mutations in the SWI/SNF chromatin remodeling complex, such as the (BRG1) catalytic subunit, has been associated with improved response to ICB, however the mechanism by which this occurs is unclear. The aim of this current study was to examine the alterations in tumor cell-intrinsic and extrinsic immune signaling caused by loss. Using OC models with loss-of-function mutations in , we found that loss resulted in increased cancer cell-intrinsic immunogenicity, characterized by upregulation of long-terminal RNA repeats such as endogenous retroviruses, increased expression of interferon-stimulated genes, and upregulation of antigen presentation machinery. Notably, this response was dependent on IRF3 signaling, but was independent of the type I interferon receptor. Mice inoculated with cancer cells bearing loss demonstrated increased activation of cytotoxic T cells and NK cells in the tumor microenvironment as well as increased infiltration with activated dendritic cells. These results were recapitulated when animals bearing proficient tumors were treated with a BRG1 inhibitor, suggesting that modulation of chromatin remodeling through targeting may serve as a strategy to reverse immune evasion in OC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10441293PMC
http://dx.doi.org/10.1101/2023.08.08.552544DOI Listing

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