氧化磷酸化
线粒体
细胞生物学
产热素
褐色脂肪组织
胞浆
解偶联剂
化学
脂肪组织
产热
调节器
生物
生物能学
生物物理学
线粒体呼吸链
解偶联蛋白
线粒体DNA
白色脂肪组织
呼吸链
基因敲除
线粒体ROS
新陈代谢
生物化学
作者
Qingwen Zhao,谢丽,Qianzhuo Wang,Shuying Dai,Bei Li,Yingjuan Zhang,Zhe Sun,Yue Gao
标识
DOI:10.1002/advs.202516501
摘要
Brown and beige adipocytes dissipate energy as heat, yet effective strategies to enhance their mitochondrial efficiency remain limited. Here, we identify Agnuside (AGN) as a selective stabilizer of the complex I assembly factor NDUFAF6. AGN directly binds cytosolic NDUFAF6, suppresses its ubiquitination, prolongs its half-life, and facilitates mitochondrial import, thereby reinforcing complex I assembly and promoting coordinated stabilization of complexes III and IV within the respirasome, without altering complex II, complex V, or global mitochondrial biogenesis. Functionally, AGN exhibits a demand-dependent metabolic profile. Under basal conditions, AGN enhances mitochondrial oxidative efficiency without activating overt UCP1-dependent uncoupling. In contrast, cold exposure or chronic high-fat feeding markedly potentiates its thermogenic impact, as evidenced by improved mitochondrial ultrastructure, increased UCP1 abundance, and elevated energy expenditure in brown adipose tissue, with similar mitochondrial reinforcement observed in inguinal white adipose tissue under sustained metabolic stress. Importantly, thermoneutral Ucp1 knockdown does not abolish AGN-mediated enhancement of respiratory complex assembly and ATP production, whereas genetic ablation of Ndufaf6 eliminates these effects. Together, these findings establish AGN-NDUFAF6 stabilization as a key regulatory mechanism governing adipose mitochondrial efficiency and thermogenic responsiveness, and highlight assembly-factor targeting as a promising strategy to restore oxidative metabolism in metabolic dysfunction.
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