Lees Robert M, Johnson James D, Ashby Michael C
School of Physiology, Pharmacology, and Neuroscience, Faculty of Biomedical Sciences, University of Bristol, Bristol, United Kingdom.
Front Synaptic Neurosci. 2020 Jan 10;11:37. doi: 10.3389/fnsyn.2019.00037. eCollection 2019.
The addition and removal of presynaptic terminals reconfigures neuronal circuits of the mammalian neocortex, but little is known about how this presynaptic structural plasticity is controlled. Since mitochondria can regulate presynaptic function, we investigated whether the presence of axonal mitochondria relates to the structural plasticity of presynaptic boutons in mouse neocortex. We found that the overall density of axonal mitochondria did not appear to influence the loss and gain of boutons. However, positioning of mitochondria at individual presynaptic sites did relate to increased stability of those boutons. In line with this, synaptic localization of mitochondria increased as boutons aged and showed differing patterns of localization at and boutons. These results suggest that mitochondria accumulate locally at boutons over time to increase bouton stability.
突触前终末的添加和去除会重新构建哺乳动物新皮层的神经回路,但对于这种突触前结构可塑性是如何受到控制的,我们却知之甚少。由于线粒体能够调节突触前功能,我们研究了轴突线粒体的存在是否与小鼠新皮层中突触前终扣的结构可塑性相关。我们发现,轴突线粒体的总体密度似乎并未影响终扣的增减。然而,线粒体在单个突触前位点的定位确实与这些终扣稳定性的增加有关。与此相符的是,随着终扣的老化,线粒体的突触定位增加,并且在 和 终扣处显示出不同的定位模式。这些结果表明,随着时间的推移,线粒体在终扣处局部积累,以增加终扣的稳定性。