Mitochondrial calcium (Ca2+) import is a well-described phenomenon regulating cell survival and ATP production. Of multiple pathways allowing such entry, the mitochondrial Ca2+ uniporter is a highly Ca2+-selective channel complex encoded by several recently-discovered genes. However, the identity of the pore-forming subunit remains to be established, since knockdown of all the candidate uniporter genes inhibit Ca2+ uptake in imaging assays, and reconstitution experiments have been equivocal. To definitively identify the channel, we use whole-mitoplast voltage-clamping, the technique that originally established the uniporter as a Ca2+ channel. We show that RNAi-mediated knockdown of the mitochondrial calcium uniporter (MCU) gene reduces mito...
Summary: The mitochondrial uniporter is a Ca2+-selective ion-conducting channel in the inner mitocho...
Ca2+ uptake by energized mitochondria regulates bioenergetics, apoptosis, and global Ca2+ signaling....
Mitochondria from multiple, eukaryotic clades uptake and buffer large amounts of calcium (Ca2+) via ...
By buffering cytosolic calcium, mitochondria can shape the magnitude and duration of intracellular c...
Mitochondrial calcium uptake is present in nearly all vertebrate tissues and is believed to be criti...
Mitochondrial Ca(2+) homeostasis has a key role in the regulation of aerobic metabolism and cell sur...
AbstractThe mitochondrial calcium uniporter (MCU) is the critical protein of the inner mitochondrial...
AbstractThe molecular components of the mitochondrial Ca2+ uptake machinery have been only recently ...
Ca2+ influx into mitochondria is mediated by the mitochondrial calcium uniporter (MCU), whose identi...
The notion of mitochondria being involved in the decoding and shaping of intracellular Ca2+ signals ...
SummaryResting mitochondrial matrix Ca2+ is maintained through a mitochondrial calcium uptake 1 (MIC...
AbstractMitochondrial Ca2+ uptake regulates a wide array of cell functions, from stimulation of aero...
Mitochondrial calcium uniporter (MCU) channel is responsible for Ruthenium Red-sensitive mitochondri...
The influx of cytosolic Ca2+ into mitochondria is mediated primarily by the mitochondrial calcium un...
AbstractMitochondria process local and global Ca2+ signals. Thereby the spatiotemporal patterns of m...
Summary: The mitochondrial uniporter is a Ca2+-selective ion-conducting channel in the inner mitocho...
Ca2+ uptake by energized mitochondria regulates bioenergetics, apoptosis, and global Ca2+ signaling....
Mitochondria from multiple, eukaryotic clades uptake and buffer large amounts of calcium (Ca2+) via ...
By buffering cytosolic calcium, mitochondria can shape the magnitude and duration of intracellular c...
Mitochondrial calcium uptake is present in nearly all vertebrate tissues and is believed to be criti...
Mitochondrial Ca(2+) homeostasis has a key role in the regulation of aerobic metabolism and cell sur...
AbstractThe mitochondrial calcium uniporter (MCU) is the critical protein of the inner mitochondrial...
AbstractThe molecular components of the mitochondrial Ca2+ uptake machinery have been only recently ...
Ca2+ influx into mitochondria is mediated by the mitochondrial calcium uniporter (MCU), whose identi...
The notion of mitochondria being involved in the decoding and shaping of intracellular Ca2+ signals ...
SummaryResting mitochondrial matrix Ca2+ is maintained through a mitochondrial calcium uptake 1 (MIC...
AbstractMitochondrial Ca2+ uptake regulates a wide array of cell functions, from stimulation of aero...
Mitochondrial calcium uniporter (MCU) channel is responsible for Ruthenium Red-sensitive mitochondri...
The influx of cytosolic Ca2+ into mitochondria is mediated primarily by the mitochondrial calcium un...
AbstractMitochondria process local and global Ca2+ signals. Thereby the spatiotemporal patterns of m...
Summary: The mitochondrial uniporter is a Ca2+-selective ion-conducting channel in the inner mitocho...
Ca2+ uptake by energized mitochondria regulates bioenergetics, apoptosis, and global Ca2+ signaling....
Mitochondria from multiple, eukaryotic clades uptake and buffer large amounts of calcium (Ca2+) via ...