纤维化
医学
内分泌学
表观遗传学
内科学
肌肉萎缩
骨骼肌
信号转导
再生(生物学)
萎缩
内质网
蛋白激酶B
生物
药理学
肌萎缩
癌症研究
PI3K/AKT/mTOR通路
氧化应激
细胞生物学
心肌细胞
细胞凋亡
线粒体
生物信息学
老化
MAPK/ERK通路
发病机制
作者
Bingge Zhang,Ye He,R. Zhang,Ting Su,Ruijuan Liu,Xiaomei Li,Xiufen Zhang,Bocheng Xiong,Chao Yang,Xinlei Liu,Qian Liu,Qinghua Hou,Yongmei Xie,Gong‐Ping Liu,Xifei Yang
摘要
Aging, characterized by progressive physiological decline and systemic dysfunction, represents a major risk factor for age-related diseases such as sarcopenia, which involves fibrosis that disrupts muscle regeneration and function. Effective therapeutic strategies remain limited. Here we report UA-30, a novel compound with a favorable pharmacokinetic and safety profile, that delayed systemic aging in naturally aged mice, as indicated by reduced frailty, slowed epigenetic age, extended lifespan, and improved muscle function. 10-wk UA-30 treatment reduced fibrosis and muscle atrophy in 18.5-mo-old mice. Thermal proteome profiling, surface plasmon resonance, and functional analyses identified Ras-related protein Ral-A (RalA) as a direct molecular target of UA-30. UA-30 suppressed RalA activity, thereby inhibiting the pro-fibrotic JNK-Smad signaling axis and enhancing mitochondrial functions. Overexpression of constitutively active RalA largely abolished the anti-aging and anti-fibrotic effects of UA-30. These findings support UA-30 as a promising therapeutic candidate for aging and sarcopenia, and indicate RalA is a potential target for age-related muscle degeneration.
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