CNC - Center for Neuroscience and Cell Biology, University of Coimbra, Coimbra, Portugal.
III - Institute for Interdisciplinary Research, University of Coimbra, Coimbra, Portugal.
Cell Mol Life Sci. 2023 Jun 2;80(6):173. doi: 10.1007/s00018-023-04814-8.
Mitochondria are present in the pre- and post-synaptic regions, providing the energy required for the activity of these very specialized neuronal compartments. Biogenesis of synaptic mitochondria takes place in the cell body, and these organelles are then transported to the synapse by motor proteins that carry their cargo along microtubule tracks. The transport of mitochondria along neurites is a highly regulated process, being modulated by the pattern of neuronal activity and by extracellular cues that interact with surface receptors. These signals act by controlling the distribution of mitochondria and by regulating their activity. Therefore, mitochondria activity at the synapse allows the integration of different signals and the organelles are important players in the response to synaptic stimulation. Herein we review the available evidence regarding the regulation of mitochondrial dynamics by neuronal activity and by neuromodulators, and how these changes in the activity of mitochondria affect synaptic communication.
线粒体存在于突触前和突触后区域,为这些非常特殊的神经元区室的活动提供所需的能量。突触线粒体的生物发生发生在细胞体中,然后这些细胞器通过携带货物沿着微管轨道的运动蛋白运输到突触。线粒体沿着神经突起的运输是一个高度调节的过程,受神经元活动模式和与表面受体相互作用的细胞外线索的调节。这些信号通过控制线粒体的分布和调节其活性来发挥作用。因此,突触处的线粒体活性允许不同信号的整合,并且细胞器是对突触刺激做出反应的重要参与者。本文综述了神经元活动和神经调质调节线粒体动力学的现有证据,以及线粒体活性的这些变化如何影响突触通讯。