线粒体
细胞生物学
化学
钠
氧化磷酸化
生物物理学
能量代谢
氧化应激
渗透浓度
钠通道
生物化学
兴奋剂
新陈代谢
坏死
渗透压
瞬时受体电位通道
三氯乙酸
渗透性休克
受体
磷酸化
活性氧
刺激
电压依赖性阴离子通道
生物
离子通道
柠檬酸循环
线粒体膜转运蛋白
脂质代谢
离子运输机
作者
Yuhui Qiao,Jianghuang Wang,Bohong Wang,Hong Zhou,Qianlin Ni,Wan Fu,Zeping Hu,Qing Zhong
标识
DOI:10.1038/s41467-025-67181-x
摘要
Na+ influx is a critical pathological event in various conditions such as ischemia, hyperosmotic stress, and organ failure. Although persistent activation of the transient receptor potential cation channel subfamily M member 4 (TRPM4) by chemical agonist Necrocide 1 (NC1) triggers necrosis by sodium overload (NECSO), the underlying mechanism remains to be elucidated. Here, we demonstrate that Na+ influx promotes necrosis by suppressing mitochondrial energy production. TRPM4-mediated Na⁺ entry elevates mitochondrial Na⁺ and reduces mitochondrial Ca²⁺ via NCLX, inhibiting oxidative phosphorylation and the Trichloroacetic acid (TCA) cycle, leading to severe energy depletion. This results in Na/K-ATPase inactivation, loss of ion gradients, cellular swelling and lysis. Our study reveals how sodium overload in NECSO disrupts mitochondrial metabolism to cause energy failure, potentially underlying diseases with elevated Na⁺. This study elucidates the underlying cell death mechanism of NECSO (Necrosis by sodium overload). TRPM4-mediated sodium influx activates mitochondrial sodium–calcium exchange, which impairs mitochondrial energy production. This energy deficit inactivates the Na/K-ATPase, ultimately leading to cellular swelling and lysis.
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