AbstractMitochondrial Ca2+ uptake regulates a wide array of cell functions, from stimulation of aerobic metabolism and ATP production in physiological settings, to induction of cell death in pathological conditions. The molecular identity of the Mitochondrial Calcium Uniporter (MCU), the highly selective channel responsible for Ca2+ entry through the IMM, has been described less than five years ago. Since then, research has been conducted to clarify the modulation of its activity, which relies on the dynamic interaction with regulatory proteins, and its contribution to the pathophysiology of organs and tissues. Particular attention has been placed on characterizing the role of MCU in cardiac and skeletal muscles.In this review we summarize ...
SummaryResting mitochondrial matrix Ca2+ is maintained through a mitochondrial calcium uptake 1 (MIC...
Recently, the role of mitochondrial activity in high-energy demand organs and in the orchestration o...
Calcium ions (Ca2+) influx to mitochondrial matrix is crucial for the life of a cell. Mitochondrial ...
AbstractMitochondrial Ca2+ uptake regulates a wide array of cell functions, from stimulation of aero...
AbstractThe mitochondrial calcium uniporter (MCU) is the critical protein of the inner mitochondrial...
The notion of mitochondria being involved in the decoding and shaping of intracellular Ca2+ signals ...
In a wide variety of cell types, cytosolic Ca2+ transients, generated by physiological stimuli, elic...
AbstractMitochondria process local and global Ca2+ signals. Thereby the spatiotemporal patterns of m...
AbstractMitochondria promptly respond to Ca2+-mediated cell stimulations with a rapid accumulation o...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractThe molecular components of the mitochondrial Ca2+ uptake machinery have been only recently ...
By buffering cytosolic calcium, mitochondria can shape the magnitude and duration of intracellular c...
AbstractThe mitochondrial calcium uniporter (MCU) is the critical protein of the inner mitochondrial...
AbstractIn the Fifties, electron microscopy studies on neuronal cells showed that mitochondria typic...
Recently, the role of mitochondrial activity in high-energy demand organs and in the orchestration o...
SummaryResting mitochondrial matrix Ca2+ is maintained through a mitochondrial calcium uptake 1 (MIC...
Recently, the role of mitochondrial activity in high-energy demand organs and in the orchestration o...
Calcium ions (Ca2+) influx to mitochondrial matrix is crucial for the life of a cell. Mitochondrial ...
AbstractMitochondrial Ca2+ uptake regulates a wide array of cell functions, from stimulation of aero...
AbstractThe mitochondrial calcium uniporter (MCU) is the critical protein of the inner mitochondrial...
The notion of mitochondria being involved in the decoding and shaping of intracellular Ca2+ signals ...
In a wide variety of cell types, cytosolic Ca2+ transients, generated by physiological stimuli, elic...
AbstractMitochondria process local and global Ca2+ signals. Thereby the spatiotemporal patterns of m...
AbstractMitochondria promptly respond to Ca2+-mediated cell stimulations with a rapid accumulation o...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractThe molecular components of the mitochondrial Ca2+ uptake machinery have been only recently ...
By buffering cytosolic calcium, mitochondria can shape the magnitude and duration of intracellular c...
AbstractThe mitochondrial calcium uniporter (MCU) is the critical protein of the inner mitochondrial...
AbstractIn the Fifties, electron microscopy studies on neuronal cells showed that mitochondria typic...
Recently, the role of mitochondrial activity in high-energy demand organs and in the orchestration o...
SummaryResting mitochondrial matrix Ca2+ is maintained through a mitochondrial calcium uptake 1 (MIC...
Recently, the role of mitochondrial activity in high-energy demand organs and in the orchestration o...
Calcium ions (Ca2+) influx to mitochondrial matrix is crucial for the life of a cell. Mitochondrial ...