Correct mitochondrial distribution is critical for satisfying local energy demands and calcium buffering requirements and supporting key cellular processes. The mitochondrially targeted proteins Miro1 and Miro2 are important components of the mitochondrial transport machinery, but their specific roles in neuronal development, maintenance, and survival remain poorly understood. Using mouse knockout strategies, we demonstrate that Miro1, as opposed to Miro2, is the primary regulator of mitochondrial transport in both axons and dendrites. Miro1 deletion leads to depletion of mitochondria from distal dendrites but not axons, accompanied by a marked reduction in dendritic complexity. Disrupting postnatal mitochondrial distribution in vivo by del...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Miro1 has emerged as an interesting target to study Parkinson’s disease-relevant pathways since it i...
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...
SummaryCorrect mitochondrial distribution is critical for satisfying local energy demands and calciu...
Correct dendritic development is important for the formation of neuronal circuits. Dendritic arbors ...
Mitochondria are essential for neuronal function; they provide energy (ATP) to maintain ionic gradie...
Defective mitochondrial distribution in neurons is proposed to cause ATP depletion and calcium-buffe...
Defective mitochondrial distribution in neurons is proposed to cause ATP depletion and calcium-buffe...
The spatiotemporal distribution of mitochondria is crucial for precise ATP provision and calcium buf...
Dynamic mitochondrial transport into axons and dendrites of neuronal cells is critical for sustainin...
Mitochondria play essential roles in ATP generation, calcium buffering and apoptotic signalling. In ...
Microtubule-based mitochondrial transport into dendrites and axons is vital for sustaining neuronal ...
Neurons depend on mitochondria to produce ATP, regulate calcium signaling/homeostasis, and control a...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Miro1 has emerged as an interesting target to study Parkinson’s disease-relevant pathways since it i...
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...
SummaryCorrect mitochondrial distribution is critical for satisfying local energy demands and calciu...
Correct dendritic development is important for the formation of neuronal circuits. Dendritic arbors ...
Mitochondria are essential for neuronal function; they provide energy (ATP) to maintain ionic gradie...
Defective mitochondrial distribution in neurons is proposed to cause ATP depletion and calcium-buffe...
Defective mitochondrial distribution in neurons is proposed to cause ATP depletion and calcium-buffe...
The spatiotemporal distribution of mitochondria is crucial for precise ATP provision and calcium buf...
Dynamic mitochondrial transport into axons and dendrites of neuronal cells is critical for sustainin...
Mitochondria play essential roles in ATP generation, calcium buffering and apoptotic signalling. In ...
Microtubule-based mitochondrial transport into dendrites and axons is vital for sustaining neuronal ...
Neurons depend on mitochondria to produce ATP, regulate calcium signaling/homeostasis, and control a...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Mitochondria are the primary generators of ATP and are important regulators of intracellular calcium...
Miro1 has emerged as an interesting target to study Parkinson’s disease-relevant pathways since it i...