胞吐
小泡
神经递质
细胞内
接吻奔跑融合
细胞生物学
胞外囊泡
化学
细胞外
微泡
突触小泡
蒙克-18
生物
生物化学
膜
受体
小RNA
基因
作者
Ran Liu,Xiulan He,Jing Liu,Zhining Sun,Ping Yu,Lijuan Hou,Lanqun Mao
标识
DOI:10.1002/anie.202511277
摘要
Abstract The systemic benefits of exercise are partially attributed to exerkines release via extracellular vesicles, prompting extensive research on the effects of exercise on these vesicles. However, whether and how exercise modulates intracellular vesicle chemistry (e.g., neurotransmitter storage and exocytotic dynamics) remains unclear. Clarifying these mechanisms is essential to understanding how exercise influences exocytosis‐associated physiological and pathological processes. In this study, by using single‐vesicle electrochemistry, we reveal that exercise modulates intracellular vesicle chemistry by enhancing the neurotransmitter storage capacity, increasing the neurotransmitter release, and shortening the exocytosis events, while slightly reducing the fraction of release. Mechanistic studies suggest that these changes are likely due to the upregulation of certain exocytosis‐associated proteins (i.e., F‐actin, myosin II, vesicle‐associated membrane protein, synaptosomal‐associated protein 25, and mammalian uncoordinated‐18) and the increase in the calcium influx. These findings provide valuable chemical insights into the beneficial effects of exercise from the intracellular vesicle perspective.
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