Intracellular Ca2+ signals are well organized in all cell types, and trigger a variety of vital physiological processes. The temporal and spatial characteristics of cytosolic Ca2+ increases are mainly governed by the fluxes of this ion across the membrane of the endo-plasmic/sarcoplasmic reticulum and the plasma membrane. However, various Ca2+ transporters also allow for Ca2+ exchanges between the cytoplasm and mitochondria. Increases in mitochondrial Ca2+ stimulate the production of ATP, which allows the cells to cope with the increased energy demand created by the stimulus. Less widely appreciated is the fact that Ca2+ handling by mitochondria also shapes cytosolic Ca2+ signals. Indeed, the frequency, amplitude, and duration of cytosolic ...
The heterogenous subcellular distribution of a wide array of channels, pumps and exchangers allows e...
Upon physiological stimulation, mitochondria undergo a major rise in mitochondrial [Ca2+] ([Ca2+]m) ...
Calcium (Ca2+) homeostasis is fundamental for cell metabolism, proliferation, differentiation, and c...
AbstractIn this review we will attempt to summarise the complex and sometimes contradictory effects ...
Although it has been known for over three decades that mitochondria are endowed with a complex array...
Oscillations of cytosolic Ca2+ concentration are a widespread mode of signalling. Oscillatory spikes...
The heterogenous subcellular distribution of a wide array of channels, pumps and exchangers allows e...
Mitochondria may function as multiple separate organelles or as a single electrically coupled contin...
Mitochondria play a central role in cell biology, not only as producers of ATP but also as regulator...
Over recent years, a renewed interest in mitochondria in the field of Ca(2+) signalling has highligh...
AbstractMitochondria promptly respond to Ca2+-mediated cell stimulations with a rapid accumulation o...
AbstractThe heterogenous subcellular distribution of a wide array of channels, pumps and exchangers ...
Recent data shed light on two novel aspects of the mitochondria-Ca2+ liaison. First, it was extensi...
Recent data shed light on two novel aspects of the mitochondria-Ca2+ liaison. First, it was extensi...
AbstractThe literature suggests that the physiological functions for which mitochondria sequester Ca...
The heterogenous subcellular distribution of a wide array of channels, pumps and exchangers allows e...
Upon physiological stimulation, mitochondria undergo a major rise in mitochondrial [Ca2+] ([Ca2+]m) ...
Calcium (Ca2+) homeostasis is fundamental for cell metabolism, proliferation, differentiation, and c...
AbstractIn this review we will attempt to summarise the complex and sometimes contradictory effects ...
Although it has been known for over three decades that mitochondria are endowed with a complex array...
Oscillations of cytosolic Ca2+ concentration are a widespread mode of signalling. Oscillatory spikes...
The heterogenous subcellular distribution of a wide array of channels, pumps and exchangers allows e...
Mitochondria may function as multiple separate organelles or as a single electrically coupled contin...
Mitochondria play a central role in cell biology, not only as producers of ATP but also as regulator...
Over recent years, a renewed interest in mitochondria in the field of Ca(2+) signalling has highligh...
AbstractMitochondria promptly respond to Ca2+-mediated cell stimulations with a rapid accumulation o...
AbstractThe heterogenous subcellular distribution of a wide array of channels, pumps and exchangers ...
Recent data shed light on two novel aspects of the mitochondria-Ca2+ liaison. First, it was extensi...
Recent data shed light on two novel aspects of the mitochondria-Ca2+ liaison. First, it was extensi...
AbstractThe literature suggests that the physiological functions for which mitochondria sequester Ca...
The heterogenous subcellular distribution of a wide array of channels, pumps and exchangers allows e...
Upon physiological stimulation, mitochondria undergo a major rise in mitochondrial [Ca2+] ([Ca2+]m) ...
Calcium (Ca2+) homeostasis is fundamental for cell metabolism, proliferation, differentiation, and c...