open5noPhenylglyoxal (PGO), known to cause post-translational modifications of Arg residues, was used to highlight the role of arginine residues of the F1FO-ATPase, which may be crucial to yield the mitochondrial permeability transition pore (mPTP). In swine heart mitochondria PGO inhibits ATP hydrolysis by the F1FO-ATPase either sustained by the natural cofactor Mg2+ or by Ca2+ by a similar uncompetitive inhibition mechanism, namely the tertiary complex (ESI) only forms when the ATP substrate is already bound to the enzyme, and with similar strength, as shown by the similar K'i values (0.82 ± 0.07 mM in presence of Mg2+ and 0.64 ± 0.05 mM in the presence of Ca2+). Multiple inhibitor analysis indicates that fea...
The mitochondrial F1FO-ATPase in the presence of the natural cofactor Mg2+ acts as the enzyme of lif...
Recently, the F1FO-ATP synthase, due to its dual role of life enzyme as main adenosine triphosphate ...
none4noThe mitochondrial F1FO-ATPsynthase/ase is a bi-powered enzymatic engine, skilled for massive ...
Phenylglyoxal (PGO), known to cause post-translational modifications of Arg residues, was used to hi...
open8noThe properties of the mitochondrial F1FO-ATPase catalytic site, which can bind Mg2+, Mn2+, or...
The mitochondrial F-ATPase can be activated either by the classical cofactor Mg2+ or, with lower eff...
The properties of the mitochondrial F1FO-ATPase activated by the natural cofactor Mg2+ or by Ca2+, w...
The mitochondrial permeability transition (PT) is a Ca2+-dependent permeability increase of the inne...
Based on recent advances on the Ca2+-activated F1FO-ATPase features, a novel multistep mechanism inv...
Modification with arginine-specific glyoxals modulates the permeability transition (PT) of rat liver...
: The F1FO-ATPase has Mg2+ cofactor as the natural divalent cation to support the bifunctional activ...
The mitochondrial permeability transition pore (PTP), which drives regulated cell death when Ca2+ co...
The mitochondrial F1FO-ATPase is a reversible and biologically unique energy-transducing mechanism w...
The dithiol reagents phenylarsine oxide (PAO) and dibromobimane (DBrB) have opposite effects on the ...
In response to calcium mitochondria can undergo a permeability transition—a sudden increase of the p...
The mitochondrial F1FO-ATPase in the presence of the natural cofactor Mg2+ acts as the enzyme of lif...
Recently, the F1FO-ATP synthase, due to its dual role of life enzyme as main adenosine triphosphate ...
none4noThe mitochondrial F1FO-ATPsynthase/ase is a bi-powered enzymatic engine, skilled for massive ...
Phenylglyoxal (PGO), known to cause post-translational modifications of Arg residues, was used to hi...
open8noThe properties of the mitochondrial F1FO-ATPase catalytic site, which can bind Mg2+, Mn2+, or...
The mitochondrial F-ATPase can be activated either by the classical cofactor Mg2+ or, with lower eff...
The properties of the mitochondrial F1FO-ATPase activated by the natural cofactor Mg2+ or by Ca2+, w...
The mitochondrial permeability transition (PT) is a Ca2+-dependent permeability increase of the inne...
Based on recent advances on the Ca2+-activated F1FO-ATPase features, a novel multistep mechanism inv...
Modification with arginine-specific glyoxals modulates the permeability transition (PT) of rat liver...
: The F1FO-ATPase has Mg2+ cofactor as the natural divalent cation to support the bifunctional activ...
The mitochondrial permeability transition pore (PTP), which drives regulated cell death when Ca2+ co...
The mitochondrial F1FO-ATPase is a reversible and biologically unique energy-transducing mechanism w...
The dithiol reagents phenylarsine oxide (PAO) and dibromobimane (DBrB) have opposite effects on the ...
In response to calcium mitochondria can undergo a permeability transition—a sudden increase of the p...
The mitochondrial F1FO-ATPase in the presence of the natural cofactor Mg2+ acts as the enzyme of lif...
Recently, the F1FO-ATP synthase, due to its dual role of life enzyme as main adenosine triphosphate ...
none4noThe mitochondrial F1FO-ATPsynthase/ase is a bi-powered enzymatic engine, skilled for massive ...