细胞生物学
自噬
细胞适应
钙信号传导
内质网
钙
缺氧(环境)
溶酶体
信号转导
下调和上调
生物
生物学中的钙
调节器
肿瘤进展
细胞内
化学
缺氧诱导因子
衰老
细胞信号
未折叠蛋白反应
钙代谢
运输机
泛素蛋白连接酶类
TFEB
线粒体
兰尼定受体
平衡
串扰
作者
Yu Zeng,Meiting Chen,Yu Cao,Y Huang,Yang Xingguo,Qian Jiang,J Huang,Yu Chen,Xin Du,Wenping Zeng,Qiankun Mao,Huafeng Zhang,Li Wang,Xiaomei Li,Canjun Li,Lili Qu,Chunlei Cang
标识
DOI:10.1073/pnas.2532309123
摘要
Hypoxia is a common stress encountered by animal tissues during development, physiology, and disease. To cope with hypoxic stress, cells remodel metabolic and signaling networks to preserve viability and function. Lysosomes serve as central hubs for metabolic control and intracellular signaling, yet their role in hypoxic adaptation remains unclear. Here, we identify the lysosomal calcium transporter TMEM165 as a hypoxia-responsive regulator of cellular homeostasis. Under hypoxic conditions, TMEM165 expression increases, promoting calcium redistribution from the endoplasmic reticulum to lysosomes and expanding lysosomal calcium storage capacity. TMEM165 activation regulates autophagy and senescence through the AMPK-mTOR and ERK/p21 signaling pathways, respectively. In glioma, high TMEM165 expression correlates with poor prognosis, whereas its depletion suppresses glycolysis, proliferation, and tumor progression. These findings establish TMEM165 as a lysosomal hypoxia-responsive protein that integrates calcium signaling with metabolic and stress-response pathways, revealing a mechanistic link between oxygen availability, lysosomal function, and tumor adaptation.
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