Calcium (Ca2+) is a versatile secondary messenger involved in the regulation of a plethora of different signaling pathways for cell maintenance. Specifically, intracellular Ca2+ homeostasis is mainly regulated by the endoplasmic reticulum and the mitochondria, whose Ca2+ exchange is mediated by appositions, termed endoplasmic reticulum–mitochondria-associated membranes (MAMs), formed by proteins resident in both compartments. These tethers are essential to manage the mitochondrial Ca2+ influx that regulates the mitochondrial function of bioenergetics, mitochondrial dynamics, cell death, and oxidative stress. However, alterations of these pathways lead to the development of multiple human diseases, including neurological disorders, such as a...
Mitochondria are essential for ensuring numerous fundamental physiological processes such as cellula...
Mitochondria contribute to shape intraneuronal Ca2+ signals. Excessive Ca2+ taken up by mitochondria...
Mitochondria are crucial in different intracellular pathways of signal transduction. Mitochondria ar...
Calcium is used in many cellular processes and is maintained within the cell as free calcium at low ...
The divalent cation calcium (Ca2+) is considered one of the main second messengers inside cells and ...
Calcium ions (Ca2+) are some of the most versatile signalling molecules, and they have many physiolo...
The high efficiency of the neuronal calcium signaling depends on the calcium distribution in intrace...
Calcium is utilised by cells in signalling and in regulating ATP production; it also contributes to ...
Dysregulation of mitochondrial Ca2+ homeostasis has been linked to neurodegenerative diseases. Mitoc...
Mitochondria are pivotal organelles in calcium (Ca2+) handling and signalling, constituting intracel...
Mitochondria play key roles in ATP supply, calcium homeostasis, redox balance control and apoptosis,...
The mitochondrial calcium uniporter (MCU)—a calcium uniporter on the inner membrane of mitochondria—...
Over recent years, a renewed interest in mitochondria in the field of Ca(2+) signalling has highligh...
Mitochondria play key roles in ATP supply, calcium homeostasis, redox balance control and apoptosis,...
The versatility of mitochondrial metabolism and its fine adjustments to specific physiological or pa...
Mitochondria are essential for ensuring numerous fundamental physiological processes such as cellula...
Mitochondria contribute to shape intraneuronal Ca2+ signals. Excessive Ca2+ taken up by mitochondria...
Mitochondria are crucial in different intracellular pathways of signal transduction. Mitochondria ar...
Calcium is used in many cellular processes and is maintained within the cell as free calcium at low ...
The divalent cation calcium (Ca2+) is considered one of the main second messengers inside cells and ...
Calcium ions (Ca2+) are some of the most versatile signalling molecules, and they have many physiolo...
The high efficiency of the neuronal calcium signaling depends on the calcium distribution in intrace...
Calcium is utilised by cells in signalling and in regulating ATP production; it also contributes to ...
Dysregulation of mitochondrial Ca2+ homeostasis has been linked to neurodegenerative diseases. Mitoc...
Mitochondria are pivotal organelles in calcium (Ca2+) handling and signalling, constituting intracel...
Mitochondria play key roles in ATP supply, calcium homeostasis, redox balance control and apoptosis,...
The mitochondrial calcium uniporter (MCU)—a calcium uniporter on the inner membrane of mitochondria—...
Over recent years, a renewed interest in mitochondria in the field of Ca(2+) signalling has highligh...
Mitochondria play key roles in ATP supply, calcium homeostasis, redox balance control and apoptosis,...
The versatility of mitochondrial metabolism and its fine adjustments to specific physiological or pa...
Mitochondria are essential for ensuring numerous fundamental physiological processes such as cellula...
Mitochondria contribute to shape intraneuronal Ca2+ signals. Excessive Ca2+ taken up by mitochondria...
Mitochondria are crucial in different intracellular pathways of signal transduction. Mitochondria ar...