The Ca(2+)-sensitive dehydrogenases of the mitochondrial matrix are, so far, the only known effectors to allow Ca2+ signals to couple the activation of plasma membrane receptors to the stimulation of aerobic metabolism. In this study, we demonstrate a novel mechanism, based on Ca(2+)-sensitive metabolite carriers of the inner membrane. We expressed in Chinese hamster ovary cells aralar1 and citrin, aspartate/glutamate exchangers that have Ca(2+)-binding sites in their sequence, and measured mitochondrial Ca2+ and ATP levels as well as cytosolic Ca2+ concentration with targeted recombinant probes. The increase in mitochondrial ATP levels caused by cell stimulation with Ca(2+)-mobilizing agonists was markedly larger in cells expressing aralar...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractThe heart is capable of balancing the rate of mitochondrial ATP production with utilization ...
Intracellular Ca2+ signals are well organized in all cell types, and trigger a variety of vital phys...
The Ca(2+)-sensitive dehydrogenases of the mitochondrial matrix are, so far, the only known effector...
AbstractDespite extensive research, the regulation of mitochondrial function is still not understood...
Neuronal respiration is controlled by ATP demand and Ca2++ but the roles played by each are unknown,...
Mitochondria play a central role in cell biology, not only as producers of ATP but also as regulator...
In recent years, mitochondria have emerged as important targets of agonist-dependent increases in cy...
AbstractMitochondrial Ca2+ transport was initially considered important only in buffering of cytosol...
We present unexpected and novel results revealing that glutamate-dependent oxidative phosphorylation...
The possibility of specifically addressing recombinant probes to mitochondria is a novel, powerful w...
AbstractCalcium is thought to regulate respiration but it is unclear whether this is dependent on th...
Although it has been known for over three decades that mitochondria are endowed with a complex array...
SummaryMitochondrial Ca2+ signals have been proposed to accelerate oxidative metabolism and ATP prod...
Mitochondrial oxidative phosphorylation (OXPHOS) and cellular workload are tightly balanced by the k...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractThe heart is capable of balancing the rate of mitochondrial ATP production with utilization ...
Intracellular Ca2+ signals are well organized in all cell types, and trigger a variety of vital phys...
The Ca(2+)-sensitive dehydrogenases of the mitochondrial matrix are, so far, the only known effector...
AbstractDespite extensive research, the regulation of mitochondrial function is still not understood...
Neuronal respiration is controlled by ATP demand and Ca2++ but the roles played by each are unknown,...
Mitochondria play a central role in cell biology, not only as producers of ATP but also as regulator...
In recent years, mitochondria have emerged as important targets of agonist-dependent increases in cy...
AbstractMitochondrial Ca2+ transport was initially considered important only in buffering of cytosol...
We present unexpected and novel results revealing that glutamate-dependent oxidative phosphorylation...
The possibility of specifically addressing recombinant probes to mitochondria is a novel, powerful w...
AbstractCalcium is thought to regulate respiration but it is unclear whether this is dependent on th...
Although it has been known for over three decades that mitochondria are endowed with a complex array...
SummaryMitochondrial Ca2+ signals have been proposed to accelerate oxidative metabolism and ATP prod...
Mitochondrial oxidative phosphorylation (OXPHOS) and cellular workload are tightly balanced by the k...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractThe heart is capable of balancing the rate of mitochondrial ATP production with utilization ...
Intracellular Ca2+ signals are well organized in all cell types, and trigger a variety of vital phys...