During the past two decades calcium (Ca(2+)) accumulation in energized mitochondria has emerged as a biological process of utmost physiological relevance. Mitochondrial Ca(2+) uptake was shown to control intracellular Ca(2+) signalling, cell metabolism, cell survival and other cell-type specific functions by buffering cytosolic Ca(2+) levels and regulating mitochondrial effectors. Recently, the identity of mitochondrial Ca(2+) transporters has been revealed, opening new perspectives for investigation and molecular intervention
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
Mitochondria have long been known to accumulate Ca2+ down the electrical gradient established by the...
Mitochondria have long been known to accumulate Ca2+ down the electrical gradient established by the...
During the past two decades calcium (Ca(2+)) accumulation in energized mitochondria has emerged as a...
Mitochondria promptly respond to Ca2+-mediated cell stimulations with a rapid accumulation of the ca...
Mitochondrial Ca(2+) homeostasis is an important component of the calcium-mediated cellular response...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
Although it has been known for over three decades that mitochondria are endowed with a complex array...
Mitochondria have long been known to accumulate Ca2+ down the electrical gradient established by the...
Mitochondria play a central role in cell biology, not only as producers of ATP but also as regulator...
Both the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the role of mit...
The notion that the agonist-dependent increases in intracellular Ca2+ concentration, on ubiquitous s...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
The notion that the agonist-dependent increases in intracellular Ca2+concentration, on ubiquitous si...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
Mitochondria have long been known to accumulate Ca2+ down the electrical gradient established by the...
Mitochondria have long been known to accumulate Ca2+ down the electrical gradient established by the...
During the past two decades calcium (Ca(2+)) accumulation in energized mitochondria has emerged as a...
Mitochondria promptly respond to Ca2+-mediated cell stimulations with a rapid accumulation of the ca...
Mitochondrial Ca(2+) homeostasis is an important component of the calcium-mediated cellular response...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
Although it has been known for over three decades that mitochondria are endowed with a complex array...
Mitochondria have long been known to accumulate Ca2+ down the electrical gradient established by the...
Mitochondria play a central role in cell biology, not only as producers of ATP but also as regulator...
Both the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the role of mit...
The notion that the agonist-dependent increases in intracellular Ca2+ concentration, on ubiquitous s...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
The notion that the agonist-dependent increases in intracellular Ca2+concentration, on ubiquitous si...
Mitochondria are now recognized as one of the main intracellular calcium-storing organelles which pl...
Mitochondria have long been known to accumulate Ca2+ down the electrical gradient established by the...
Mitochondria have long been known to accumulate Ca2+ down the electrical gradient established by the...