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能量很重要:突触前代谢与突触传递的维持。

Energy matters: presynaptic metabolism and the maintenance of synaptic transmission.

机构信息

Synaptic Function Section, The Porter Neuroscience Research Center, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, USA.

出版信息

Nat Rev Neurosci. 2022 Jan;23(1):4-22. doi: 10.1038/s41583-021-00535-8. Epub 2021 Nov 15.

Abstract

Synaptic activity imposes large energy demands that are met by local adenosine triphosphate (ATP) synthesis through glycolysis and mitochondrial oxidative phosphorylation. ATP drives action potentials, supports synapse assembly and remodelling, and fuels synaptic vesicle filling and recycling, thus sustaining synaptic transmission. Given their polarized morphological features - including long axons and extensive branching in their terminal regions - neurons face exceptional challenges in maintaining presynaptic energy homeostasis, particularly during intensive synaptic activity. Recent studies have started to uncover the mechanisms and signalling pathways involved in activity-dependent and energy-sensitive regulation of presynaptic energetics, or 'synaptoenergetics'. These conceptual advances have established the energetic regulation of synaptic efficacy and plasticity as an exciting research field that is relevant to a range of neurological disorders associated with bioenergetic failure and synaptic dysfunction.

摘要

突触活动会产生大量的能量需求,这些需求通过糖酵解和线粒体氧化磷酸化来满足局部三磷酸腺苷 (ATP) 的合成。ATP 驱动动作电位,支持突触装配和重塑,并为突触小泡的填充和再循环提供燃料,从而维持突触传递。由于神经元具有极化的形态特征 - 包括长轴突和末梢区域的广泛分支 - 因此它们在维持突触前能量平衡方面面临着特殊的挑战,尤其是在密集的突触活动期间。最近的研究开始揭示活动依赖性和能量敏感调节突触前能量学或“synaptoenergetics”的机制和信号通路。这些概念上的进展将突触效能和可塑性的能量调节确立为一个令人兴奋的研究领域,与一系列与生物能量衰竭和突触功能障碍相关的神经疾病有关。

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