AbstractThe proper intracellular distribution of mitochondria is assumed to be critical for normal physiology of neuronal cells, but direct evidence for this idea is lacking. Extension or movement of mitochondria into dendritic protrusions correlates with the development and morphological plasticity of spines. Molecular manipulations of dynamin-like GTPases Drp1 and OPA1 that reduce dendritic mitochondria content lead to loss of synapses and dendritic spines, whereas increasing dendritic mitochondrial content or mitochondrial activity enhances the number and plasticity of spines and synapses. Thus, the dendritic distribution of mitochondria is essential and limiting for the support of synapses. Reciprocally, synaptic activity modulates the ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
AbstractThe proper intracellular distribution of mitochondria is assumed to be critical for normal p...
SummaryCorrect mitochondrial distribution is critical for satisfying local energy demands and calciu...
Correct mitochondrial distribution is critical for satisfying local energy demands and calcium buffe...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Correct dendritic development is important for the formation of neuronal circuits. Dendritic arbors ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
An abundance of mitochondria has been the hallmark of synapses since their first ultrastructural des...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Mitochondria shape is controlled by membrane fusion and fission mediated by mitofusins, Opa1, and Dr...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
AbstractThe proper intracellular distribution of mitochondria is assumed to be critical for normal p...
SummaryCorrect mitochondrial distribution is critical for satisfying local energy demands and calciu...
Correct mitochondrial distribution is critical for satisfying local energy demands and calcium buffe...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Correct dendritic development is important for the formation of neuronal circuits. Dendritic arbors ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
An abundance of mitochondria has been the hallmark of synapses since their first ultrastructural des...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Mitochondria shape is controlled by membrane fusion and fission mediated by mitofusins, Opa1, and Dr...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...
Synaptic plasticity in the adult brain is believed to represent the cellular mechanisms of learning ...