Zeng Yuzhou, Antoniou Anna
Medical Faculty, University of Bonn, Bonn, Germany.
Faculty of Life Sciences, University of Vienna, Vienna, Austria.
J Cereb Blood Flow Metab. 2025 May 14:271678X251337630. doi: 10.1177/0271678X251337630.
Mitochondrial metabolism in neurons is necessary for energetically costly processes like synaptic transmission and plasticity. As post-mitotic cells, neurons are therefore faced with the challenge of maintaining healthy functioning mitochondria throughout lifetime. The precise mechanisms of mitochondrial maintenance in neurons, and particularly in morphologically complex dendrites and axons, are not fully understood. Evidence from several biological systems suggests the regulation of cellular metabolism by extracellular vesicles (EVs), secretory lipid-enclosed vesicles that have emerged as important mediators of cell communication. In the nervous system, neuronal and glial EVs were shown to regulate neuronal circuit development and function, at least in part via the transfer of protein and RNA cargo. Interestingly, EVs have been implicated in diseases characterized by altered metabolism, such as cancer and neurodegenerative diseases. Furthermore, nervous system EVs were shown to contain proteins related to metabolic processes, mitochondrial proteins and even intact mitochondria. Here, we present the current knowledge of the mechanisms underlying neuronal mitochondrial maintenance, and highlight recent evidence suggesting the regulation of synaptic mitochondria by neuronal and glial cell EVs. We further discuss the potential implications of EV-mediated regulation of mitochondrial maintenance and function in neuronal circuit development and synaptic plasticity.
线粒体代谢对于神经元中诸如突触传递和可塑性等能量消耗巨大的过程而言是必需的。作为终末分化细胞,神经元因此面临着在整个生命周期中维持线粒体健康功能的挑战。神经元中线粒体维持的精确机制,尤其是在形态复杂的树突和轴突中的机制,尚未完全明确。来自多个生物系统的证据表明,细胞外囊泡(EVs)可调节细胞代谢,细胞外囊泡是一种分泌性的、包裹脂质的囊泡,已成为细胞通讯的重要介质。在神经系统中,神经元和神经胶质细胞的细胞外囊泡至少部分地通过蛋白质和RNA货物的转移来调节神经元回路的发育和功能。有趣的是,细胞外囊泡与以代谢改变为特征的疾病有关,如癌症和神经退行性疾病。此外,神经系统的细胞外囊泡被证明含有与代谢过程相关的蛋白质、线粒体蛋白甚至完整的线粒体。在此,我们介绍了神经元线粒体维持机制的当前知识,并强调了最近的证据,这些证据表明神经元和神经胶质细胞的细胞外囊泡可调节突触线粒体。我们还进一步讨论了细胞外囊泡介导的线粒体维持和功能调节在神经元回路发育和突触可塑性中的潜在意义。