Mucinous gastric adenocarcinoma (MGC) is a distinct histologic subtype characterized by poor prognosis and limited responsiveness to chemotherapy and immunotherapy. CRACD, an actin polymerization regulator, is frequently inactivated in gastric cancer (GC), with enrichment in mucinous subtypes. We found that genetic engineering of murine gastric organoids with
Cracd
ablation combined with
Kras
mutation and
Trp53
loss induced mucinous cell plasticity, disrupted epithelial integrity, and promoted immune evasion. Mechanistically, CRACD loss triggered actin dysregulation, which activated the NF-kB/COX2 signaling and NADPH oxidase-dependent ROS generation. The resulting oxidative stress stabilized HIF1α and transactivated
PD-L1
, thereby disrupting anti-tumor immunity. Pharmacologic inhibition of HIF1α or PD-L1 restored immune surveillance and suppressed tumorigenesis. Clinically, analysis of patient-derived organoids and tissue microarrays demonstrated the inverse correlation between CRACD and PD-L1 expression. These findings identify CRACD inactivation as a crucial event in mucinous plasticity and immune escape in GC, further proposing that the HIF1α-PD-L1 axis is a therapeutic vulnerability in CRACD-inactivated GC.
Yoojeong Seo, Jinho Jang, Kyung-Pil Ko et al.· Nature Communications· 0 citations
Findings identify the BAX-SOX9-CDK4 axis as an important mechanism contributing to the antitumor activity of CYD-4-61 and provide a strong preclinical rationale for its further development as a therapeutic strategy for aggressive GAC.
Gengyi Zou, Katsuhiro Yoshimura, Yibo Fan et al.· Cancer Letters· 0 citations
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