Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca2+-dependent mechanism

自噬 兰尼定受体 癌细胞 程序性细胞死亡 细胞凋亡 癌症研究 细胞生物学 PI3K/AKT/mTOR通路 生物 癌症 化学 信号转导 内质网 生物化学 遗传学
作者
Betty Yuen Kwan Law,Francesco Michelangeli,Yuan Qing Qu,Su Xu,Yu Han,Simon Wing Fai Mok,Ivo Ricardo de Seabra Rodrigues Dias,Masood‐ul‐Hassan Javed,Wai-Kit Chan,Weiwei Xue,Xiaojun Yao,Jianming Wu,Hui Zhang,Jingrong Wang,Liang Liu,Vincent Kam Wai Wong
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:9 (1) 被引量:53
标识
DOI:10.1038/s41598-019-56675-6
摘要

Abstract Resistance of cancer cells to chemotherapy is a significant clinical concern and mechanisms regulating cell death in cancer therapy, including apoptosis, autophagy or necrosis, have been extensively investigated over the last decade. Accordingly, the identification of medicinal compounds against chemoresistant cancer cells via new mechanism of action is highly desired. Autophagy is important in inducing cell death or survival in cancer therapy. Recently, novel autophagy activators isolated from natural products were shown to induce autophagic cell death in apoptosis-resistant cancer cells in a calcium-dependent manner. Therefore, enhancement of autophagy may serve as additional therapeutic strategy against these resistant cancers. By computational docking analysis, biochemical assays, and advanced live-cell imaging, we identified that neferine, a natural alkaloid from Nelumbo nucifera , induces autophagy by activating the ryanodine receptor and calcium release. With well-known apoptotic agents, such as staurosporine, taxol, doxorubicin, cisplatin and etoposide, utilized as controls, neferine was shown to induce autophagic cell death in a panel of cancer cells, including apoptosis-defective and -resistant cancer cells or isogenic cancer cells, via calcium mobilization through the activation of ryanodine receptor and Ulk-1-PERK and AMPK-mTOR signaling cascades. Taken together, this study provides insights into the cytotoxic mechanism of neferine-induced autophagy through ryanodine receptor activation in resistant cancers.
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