MyoD公司
亚精胺
细胞生物学
再生(生物学)
肌动蛋白
翻译(生物学)
化学
骨骼肌
精胺
肌发生
心肌细胞
生物
生物化学
信使核糖核酸
内分泌学
酶
基因
作者
Qianying Zhang,Wanhong Han,Rimao Wu,Shi‐Xian Deng,Jiemiao Meng,Yuanping Yang,Li Li,Mingwei Sun,Heng Ai,Yingxi Chen,Qinyao Liu,Tianshu Gao,Xingchen Niu,Haixia Liu,Li Xin,Dan Zhang,Meihong Chen,Pengbin Yin,Licheng Zhang,Peifu Tang,Dahai Zhu,Yong Zhang,Hu Li
标识
DOI:10.1038/s41421-024-00712-w
摘要
Abstract Adult skeletal muscle stem cells, also known satellite cells (SCs), are quiescent and activate in response to injury. However, the activation mechanisms of quiescent SCs (QSCs) remain largely unknown. Here, we investigated the metabolic regulation of SC activation by identifying regulatory metabolites that promote SC activation. Using targeted metabolomics, we found that spermidine acts as a regulatory metabolite to promote SC activation and muscle regeneration in mice. Mechanistically, spermidine activates SCs via generating hypusinated eIF5A. Using SC-specific eIF5A -knockout (KO) and Myod -KO mice, we further found that eIF5A is required for spermidine-mediated SC activation by controlling MyoD translation. More significantly, depletion of eIF5A in SCs results in impaired muscle regeneration in mice. Together, the findings of our study define a novel mechanism that is essential for SC activation and acts via spermidine-eIF5A-mediated MyoD translation. Our findings suggest that the spermidine-eIF5A axis represents a promising pharmacological target in efforts to activate endogenous SCs for the treatment of muscular disease.
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