BAX regulates dendritic spine development via mitochondrial fusion
BAX is a Bcl-2 family protein acting on apoptosis. It also promotes mitochondrial fusion by interacting with the mitochondrial fusion protein Mitofusin (Mfn1 and Mfn2). Neuronal mitochondria are important for the development and modification of dendritic spines, which are subcellular compartments ac...
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Veröffentlicht in: | Neuroscience research 2022-09, Vol.182, p.25-31 |
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Zusammenfassung: | BAX is a Bcl-2 family protein acting on apoptosis. It also promotes mitochondrial fusion by interacting with the mitochondrial fusion protein Mitofusin (Mfn1 and Mfn2). Neuronal mitochondria are important for the development and modification of dendritic spines, which are subcellular compartments accommodating excitatory synapses in postsynaptic neurons. The abundance of dendritic mitochondria influences dendritic spine development. Mitochondrial fusion is essential for mitochondrial homeostasis. Here, we show that in the hippocampal neuron of BAX knockout mice, mitochondrial fusion is impaired, leading to decreases in mitochondrial length and total mitochondrial mass in dendrites. Notably, BAX knockout mice also have fewer dendritic spines and less cellular Adenosine 5′triphosphate (ATP) in dendrites. The spine and ATP changes are abolished by restoring mitochondria fusion via overexpressing Mfn1 and Mfn2. These findings indicate that BAX-mediated mitochondrial fusion in neurons is crucial for the development of dendritic spines and the maintenance of cellular ATP levels.
•The spine density and dendritic ATP are reduced in BAX knockout mice.•Spine and ATP changes can be abolished by restoring mitochondria fusion.•BAX-mediated mitochondrial fusion is essential for dendritic spine development.•BAX-mediated mitochondrial fusion is also essential for dendritic ATP production. |
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ISSN: | 0168-0102 1872-8111 1872-8111 |
DOI: | 10.1016/j.neures.2022.06.002 |