未折叠蛋白反应
内质网
自噬
细胞生物学
XBP1型
分泌途径
自噬体
核心
化学
细胞膜
生物
细胞
压力(语言学)
膜蛋白
信号转导
细胞适应
战斗或逃跑反应
下调和上调
适应(眼睛)
膜
细胞应激反应
蛋白质折叠
蛋白质聚集
麦格纳波特
转运蛋白
作者
Ziyi Yin,Jian Xu,Shijie Ma,Jiazong Liu,Tianfeng Zhao,Yan Li,Yi Wang,Chunyan Liu,Ziming Wang,Yanke Jiang,Haimiao Zhang,Chongchong Lu,Yingying Qin,Ziying Kong,Shi‐En Lu,Congming Lu,Yan Li,Xinhua Ding
标识
DOI:10.1038/s41467-026-70610-0
摘要
During growth and development, cells experience both internal and external stresses, which can exert harmful impacts if they are poorly managed. Endoplasmic reticulum (ER) stress is an internal stress that is induced when protein misfolding or perturbations occur at excess rates, and the conventional response pathways from the ER to the nucleus are activated to address the stress. However, the involvement of the plasma membrane (PM) system in response to this internal stress has been insufficiently investigated. Here, a PM sensor, MoPh1, was observed to perceive stress through ER-PM contact sites and target the autophagosome and vacuole, consequently stimulating the autophagy process and supporting stress relief. The PM-to-vacuole pathway mediated by MoPh1 is independent of the classical ER-to-nucleus pathway and might be highly important in both fungi and plants, as it plays a crucial role in alleviating ER stress and promoting cellular adaptation for cell survival. The unfolded protein response is activated at the ER due to protein misfolding. Here the authors show that in Magnaporthe oryzae, the plasma membrane localized MoPh1 protein perceives stress through ER-PM contact sites and stimulates autophagy to support stress relief.
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