Chongyang Li, Minghao Xu, Yacong Ji, Chaowei Deng, Sicheng Wan, Xiangfei Ding, Kui Zhang, Erhu Zhao, Guangzhao Pan, Xin Hu, Changhong Li, Haoyan Ji, Xiaosong Hu, Shaomin Shi, Hongjuan Cui
Abstract
Gastric cancer is one of the most malignant cancers in the world, posing a significant threat to human life and persisting as a major clinical challenge. Cyclovirobuxine D (CVB-D), derived from boxwood and traditionally employed in cardiovascular disease treatment, has emerged as a promising candidate for cancer therapy. However, its mechanism of action still needs to be clearly defined. We aimed to comprehensively evaluate CVB-D's impact on gastric cancer and elucidate its underlying mechanisms. Here, we found CVB-D induced excessive endo-lysophagy in gastric cancer. Moreover, multi-omics analysis revealed that CVB-D directly engages the ATP6V0A1-containing V-ATPase complex and perturbs endo-lysosomal homeostasis, leading to abnormal lysosomal acidification, impaired lysosomal protease activity, and autophagic flux blockade. Mechanistically, damaged endo-lysosomes recruited the autophagic adaptor P62/SQSTM1 in a galectin-8-dependent manner, ultimately triggering endoplasmic reticulum (ER) stress and apoptosis in gastric cancer cells. Furthermore, through cell-derived xenograft (CDX) and patient-derived xenograft (PDX) models, we validated the therapeutic efficacy of CVB-D against gastric cancer. Notably, CVB-D enhances the sensitivity of gastric cancer to the chemotherapeutic agent cisplatin. Our findings suggest that CVB-D holds promise as an effective therapeutic agent for gastric cancer treatment.
Citation format
LI, Chongyang, et al. Cyclovirobuxine d suppresses gastric cancer growth by targeting the v-atpase complex and inducing excessive endo-lysophagy. Journal of Pharmaceutical Analysis, 2026.