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Mitochondrial Ca2+‐activated F1FO‐ATPase hydrolyzes ATP and promotes the permeability transition pore
- Source :
- Annals of the New York Academy of Sciences. 1457:142-157
- Publication Year :
- 2019
- Publisher :
- Wiley, 2019.
-
Abstract
- The properties of the mitochondrial F1 FO -ATPase catalytic site, which can bind Mg2+ , Mn2+ , or Ca2+ and hydrolyze ATP, were explored by inhibition kinetic analyses to cast light on the Ca2+ -activated F1 FO -ATPase connection with the permeability transition pore (PTP) that initiates cascade events leading to cell death. While the natural cofactor Mg2+ activates the F1 FO -ATPase in competition with Mn2+ , Ca2+ is a noncompetitive inhibitor in the presence of Mg2+ . Selective F1 inhibitors (Is-F1 ), namely NBD-Cl, piceatannol, resveratrol, and quercetin, exerted different mechanisms (mixed and uncompetitive inhibition) on either Ca2+ - or Mg2+ -activated F1 FO -ATPase, consistent with the conclusion that the catalytic mechanism changes when Mg2+ is replaced by Ca2+ . In a partially purified F1 domain preparation, Ca2+ -activated F1 -ATPase maintained Is-F1 sensitivity, and enzyme inhibition was accompanied by the maintenance of the mitochondrial calcium retention capacity and membrane potential. The data strengthen the structural relationship between Ca2+ -activated F1 FO -ATPase and the PTP, and, in turn, on consequences, such as physiopathological cellular changes.
- Subjects :
- 0301 basic medicine
ATPase
chemistry.chemical_element
inhibition kinetic
Calcium
General Biochemistry, Genetics and Molecular Biology
Cofactor
F1FO-ATPase
03 medical and health sciences
0302 clinical medicine
Non-competitive inhibition
History and Philosophy of Science
ATP hydrolysis
divalent cofactor
Membrane potential
biology
General Neuroscience
mitochondrial permeability transition pore
partially purified F1 fraction
ATP hydrolysi
030104 developmental biology
Mitochondrial permeability transition pore
chemistry
030220 oncology & carcinogenesis
biology.protein
Biophysics
Uncompetitive inhibitor
Subjects
Details
- ISSN :
- 17496632 and 00778923
- Volume :
- 1457
- Database :
- OpenAIRE
- Journal :
- Annals of the New York Academy of Sciences
- Accession number :
- edsair.doi.dedup.....36b9dc2def9e331c2418b993ba0781f0
- Full Text :
- https://doi.org/10.1111/nyas.14218