AI Article Synopsis

  • Genetic changes in Rho GTPase-activating proteins, specifically ARHGAP6 and ARHGAP26, are commonly seen in diffuse-type gastric cancer, highlighting their importance in understanding the disease.
  • Researchers identified that these genetic alterations often occur together with mutations in the RhoA gene in cancers that have spread to the peritoneum, particularly in gastric and pancreatic cancers.
  • The study unveils that these mutations impair RhoA-ROCK-MLC2 signaling, leading to enhanced cell death through mechanisms involving cell adhesion and lysosomal dysfunction, suggesting potential new treatments targeting this pathway.

Article Abstract

Genetic alteration of Rho GTPase-activating proteins (ARHGAP) and GTPase RhoA is a hallmark of diffuse-type gastric cancer and elucidating its biological significance is critical to comprehensively understanding this malignancy. Here, we report that gene fusions of ARHGAP6/ARHGAP26 are frequent genetic events in peritoneally-metastasized gastric and pancreatic cancer. From the malignant ascites of patients, we established gastric cancer cell lines that spontaneously gain hotspot RHOA mutations or four different ARHGAP6/ARHGAP26 fusions. These alterations critically downregulate RhoA-ROCK-MLC2 signaling, which elicits cell death. Omics and functional analyses revealed that the downstream signaling initiates actin stress fibers and reinforces intercellular junctions via several types of catenin. E-cadherin-centered homotypic adhesion followed by lysosomal membrane permeabilization is a pivotal mechanism in cell death. These findings support the tumor-suppressive nature of ARHGAP-RhoA signaling and might indicate a new avenue of drug discovery against this refractory cancer.

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Source
http://dx.doi.org/10.1038/s41388-022-02469-6DOI Listing

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