Background/Aims: Mitochondrial ATP synthase, in addition to being involved in ATP synthesis, is involved in permeability transition pore (PTP) formation, which precedes apoptosis in mammalian cells and programmed cell death in yeast. Mutations in genes encoding ATP synthase subunits cause neuromuscular disorders and have been identified in cancer samples. PTP is also involved in pathology. We previously found that in Saccharomyces cerevisiae,two mutations in ATP synthase subunit a (atp6-P163S and atp6-K90E, equivalent to those detected in prostate and thyroid cancer samples, respectively) in the OM45-GFP background affected ROS and calcium homeostasis and delayed yeast PTP (yPTP) induction up...
AbstractSeveral human neurological disorders have been associated with various mutations affecting m...
Purified F-ATP synthase dimers of yeast mitochondria display Ca2+-dependent channel activity with pr...
Several human neurological disorders have been associated with various mutations affecting mitochond...
Purified F-ATP synthase dimers of yeast mitochondria display Ca(2+)-dependent channel activity with ...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca2+-dependent high condu...
The ATP synthase which provides aerobic eukaryotes with ATP, organizes into a membrane-extrinsic cat...
Purified F-ATP synthase dimers of yeast mitochondria display Ca 2+-dependent channel activity with p...
Purified F-ATP synthase dimers of yeast mitochondria display Ca 2+-dependent channel activity with p...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca2+-dependent high cond...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca 2+ -dependent high con...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca 2+ -dependent high con...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca2+-dependent high condu...
The f subunit is localized at the base of the ATP synthase peripheral stalk. Its function in the hum...
The f subunit is localized at the base of the ATP synthase peripheral stalk. Its function in the hum...
Abstract Background/Aims: The permeability transition pore (PTP) is an unselective, Ca2+-dependen...
AbstractSeveral human neurological disorders have been associated with various mutations affecting m...
Purified F-ATP synthase dimers of yeast mitochondria display Ca2+-dependent channel activity with pr...
Several human neurological disorders have been associated with various mutations affecting mitochond...
Purified F-ATP synthase dimers of yeast mitochondria display Ca(2+)-dependent channel activity with ...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca2+-dependent high condu...
The ATP synthase which provides aerobic eukaryotes with ATP, organizes into a membrane-extrinsic cat...
Purified F-ATP synthase dimers of yeast mitochondria display Ca 2+-dependent channel activity with p...
Purified F-ATP synthase dimers of yeast mitochondria display Ca 2+-dependent channel activity with p...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca2+-dependent high cond...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca 2+ -dependent high con...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca 2+ -dependent high con...
Background/Aims: The permeability transition pore (PTP) is an unselective, Ca2+-dependent high condu...
The f subunit is localized at the base of the ATP synthase peripheral stalk. Its function in the hum...
The f subunit is localized at the base of the ATP synthase peripheral stalk. Its function in the hum...
Abstract Background/Aims: The permeability transition pore (PTP) is an unselective, Ca2+-dependen...
AbstractSeveral human neurological disorders have been associated with various mutations affecting m...
Purified F-ATP synthase dimers of yeast mitochondria display Ca2+-dependent channel activity with pr...
Several human neurological disorders have been associated with various mutations affecting mitochond...