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Presynaptic Boutons That Contain Mitochondria Are More Stable.


ABSTRACT: 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 en passant and terminaux boutons. These results suggest that mitochondria accumulate locally at boutons over time to increase bouton stability.

SUBMITTER: Lees RM 

PROVIDER: S-EPMC6966497 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Presynaptic Boutons That Contain Mitochondria Are More Stable.

Lees Robert M RM   Johnson James D JD   Ashby Michael C MC  

Frontiers in Synaptic Neuroscience 20200110


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  ...[more]

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