It is well established that mitochondria are the main source of ATP production within cells. However, mitochondria have other remarkable functions, serving as important modulators of cellular Ca2+ signaling, and it is now generally recognized that control over Ca2+ homeostasis is intrinsically interwoven with mitochondrial abilities to adjust and tune ATP production. In this review, we describe the mechanisms that mitochondria use to balance Ca2+ homeostasis maintenance and cell energy metabolism. In recent years, the knowledge on the molecular machinery mediating Ca2+ influx/efflux has been improved and, albeit still open to further investigations, several lines of evidence converge on the hypothesis that plasma membrane Na+/Ca2+ exchanger...
Mitochondria are highly dynamic organelles extremely important for cell survival. Their structure re...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
The high efficiency of the neuronal calcium signaling depends on the calcium distribution in intrace...
It is well established that mitochondria are the main source of ATP production within cells. However...
The mitochondrial influx and efflux calcium pathways play a relevant role in cytosolic and mitochond...
Multiple factors are involved in the mechanism(s) of neuronal loss in neurodegenerative disorders wh...
none7noIn neural cells, Na+/Ca2+ exchanger (NCX) participates in Ca2+ recycling across mitochondrial...
Abstract. In neurons, as in other excitable cells, mitochondria extrude Ca(2+) ions from their ma...
In neurons, as in other excitable cells, mitochondria extrude Ca(2+) ions from their matrix in excha...
Spatial and temporal control of calcium (Ca2+) levels is essential for the background rhythms and re...
In the last 5 years, most of the molecules that control mitochondrial Ca(2+) homeostasis have been f...
Mitochondria from every tissue are quite similar in their capability to accumulate Ca(2+) in a proce...
Mitochondrial Ca(2+) uptake and release play a fundamental role in the control of different physiolo...
Mitochondria are highly dynamic organelles extremely important for cell survival. Their structure re...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
The high efficiency of the neuronal calcium signaling depends on the calcium distribution in intrace...
It is well established that mitochondria are the main source of ATP production within cells. However...
The mitochondrial influx and efflux calcium pathways play a relevant role in cytosolic and mitochond...
Multiple factors are involved in the mechanism(s) of neuronal loss in neurodegenerative disorders wh...
none7noIn neural cells, Na+/Ca2+ exchanger (NCX) participates in Ca2+ recycling across mitochondrial...
Abstract. In neurons, as in other excitable cells, mitochondria extrude Ca(2+) ions from their ma...
In neurons, as in other excitable cells, mitochondria extrude Ca(2+) ions from their matrix in excha...
Spatial and temporal control of calcium (Ca2+) levels is essential for the background rhythms and re...
In the last 5 years, most of the molecules that control mitochondrial Ca(2+) homeostasis have been f...
Mitochondria from every tissue are quite similar in their capability to accumulate Ca(2+) in a proce...
Mitochondrial Ca(2+) uptake and release play a fundamental role in the control of different physiolo...
Mitochondria are highly dynamic organelles extremely important for cell survival. Their structure re...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
The high efficiency of the neuronal calcium signaling depends on the calcium distribution in intrace...