Neurons critically depend on mitochondria for ATP production and Ca2+ buffering. They are highly compartmentalized cells and therefore a finely tuned mitochondrial network constantly adapting to the local requirements is necessary. For neuronal maintenance, old or damaged mitochondria need to be degraded, while the functional mitochondrial pool needs to be replenished with freshly synthesized components. Mitochondrial biogenesis is known to be primarily regulated via the PGC-1α-NRF1/2-TFAM pathway at the transcriptional level. However, while transcriptional regulation of mitochondrial genes can change the global mitochondrial content in neurons, it does not explain how a morphologically complex cell such as a neuron adapts to local differen...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
The selective disruption of certain cell types — notably neurons — in diseases involving mitochondri...
Mitochondria play many important biological roles, including ATP production, lipid biogenesis, ROS r...
Neurons critically depend on mitochondria for ATP production and Ca2+ buffering. They are highly com...
Neurons rely mostly on mitochondria for the production of ATP and Ca2+ homeostasis. As sub-compartme...
© 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
AbstractMitochondrial dysfunction has severe cellular consequences, and is linked to aging and neuro...
Neurons are post-mitotic cells that must function throughout the life of an organism. The high energ...
Neural stem cells (NSCs) undergo massive molecular and cellular changes during neuronal differentiat...
Mitochondrial energy production is a tightly regulated process involving the coordinated transcripti...
Mitochondria are widely distributed via regulated transport in neurons, but their sites of biogenesi...
Background The establishment and maintenance of functional neural connections relies on appropriate ...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
The selective disruption of certain cell types — notably neurons — in diseases involving mitochondri...
Mitochondria play many important biological roles, including ATP production, lipid biogenesis, ROS r...
Neurons critically depend on mitochondria for ATP production and Ca2+ buffering. They are highly com...
Neurons rely mostly on mitochondria for the production of ATP and Ca2+ homeostasis. As sub-compartme...
© 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article dis...
AbstractMitochondrial dysfunction has severe cellular consequences, and is linked to aging and neuro...
Neurons are post-mitotic cells that must function throughout the life of an organism. The high energ...
Neural stem cells (NSCs) undergo massive molecular and cellular changes during neuronal differentiat...
Mitochondrial energy production is a tightly regulated process involving the coordinated transcripti...
Mitochondria are widely distributed via regulated transport in neurons, but their sites of biogenesi...
Background The establishment and maintenance of functional neural connections relies on appropriate ...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
The selective disruption of certain cell types — notably neurons — in diseases involving mitochondri...
Mitochondria play many important biological roles, including ATP production, lipid biogenesis, ROS r...