The dithiol reagents phenylarsine oxide (PAO) and dibromobimane (DBrB) have opposite effects on the F1FO-ATPase activity. PAO 20% increases ATP hydrolysis at 50 μM when the enzyme activity is activated by the natural cofactor Mg2+ and at 150 μM when it is activated by Ca2+. The PAO-driven F1FO-ATPase activation is reverted to the basal activity by 50 μM dithiothreitol (DTE). Conversely, 300 μM DBrB decreases the F1FO-ATPase activity by 25% when activated by Mg2+ and by 50% when activated by Ca2+. In both cases, the F1FO-ATPase inhibition by DBrB is insensitive to DTE. The mitochondrial permeability transition pore (mPTP) formation, related to the Ca2+-dependent F1FO-ATPase activity, is stimulated by PAO and desensitized by DBrB. Since PAO a...
none4noThe mitochondrial F1FO-ATPsynthase/ase is a bi-powered enzymatic engine, skilled for massive ...
AbstractIn this paper we introduce monobromobimane, a thiol reagent, as a selective blocker of the r...
In response to calcium mitochondria can undergo a permeability transition—a sudden increase of the p...
The dithiol reagents phenylarsine oxide (PAO) and dibromobimane (DBrB) have opposite effects on the ...
Phenylglyoxal (PGO), known to cause post-translational modifications of Arg residues, was used to hi...
Based on recent advances on the Ca2+-activated F1FO-ATPase features, a novel multistep mechanism inv...
: The F1FO-ATPase has Mg2+ cofactor as the natural divalent cation to support the bifunctional activ...
The properties of the mitochondrial F1FO-ATPase activated by the natural cofactor Mg2+ or by Ca2+, w...
The mitochondrial F1FO-ATPase is a reversible and biologically unique energy-transducing mechanism w...
The mitochondrial F-ATPase can be activated either by the classical cofactor Mg2+ or, with lower eff...
After accumulation of a Ca2+ load, the addition of uncoupler to respiring rat liver mitochondria is ...
The mitochondrial F1FO-ATPase in the presence of the natural cofactor Mg2+ acts as the enzyme of lif...
In order to assess the role of thiol groups in the Fo part of the ATP synthase in the coupling mecha...
Recently, the F1FO-ATP synthase, due to its dual role of life enzyme as main adenosine triphosphate ...
none4noThe ATP synthase or F1FO-ATPase is the key enzyme in cell bioenergetics, due to its main role...
none4noThe mitochondrial F1FO-ATPsynthase/ase is a bi-powered enzymatic engine, skilled for massive ...
AbstractIn this paper we introduce monobromobimane, a thiol reagent, as a selective blocker of the r...
In response to calcium mitochondria can undergo a permeability transition—a sudden increase of the p...
The dithiol reagents phenylarsine oxide (PAO) and dibromobimane (DBrB) have opposite effects on the ...
Phenylglyoxal (PGO), known to cause post-translational modifications of Arg residues, was used to hi...
Based on recent advances on the Ca2+-activated F1FO-ATPase features, a novel multistep mechanism inv...
: The F1FO-ATPase has Mg2+ cofactor as the natural divalent cation to support the bifunctional activ...
The properties of the mitochondrial F1FO-ATPase activated by the natural cofactor Mg2+ or by Ca2+, w...
The mitochondrial F1FO-ATPase is a reversible and biologically unique energy-transducing mechanism w...
The mitochondrial F-ATPase can be activated either by the classical cofactor Mg2+ or, with lower eff...
After accumulation of a Ca2+ load, the addition of uncoupler to respiring rat liver mitochondria is ...
The mitochondrial F1FO-ATPase in the presence of the natural cofactor Mg2+ acts as the enzyme of lif...
In order to assess the role of thiol groups in the Fo part of the ATP synthase in the coupling mecha...
Recently, the F1FO-ATP synthase, due to its dual role of life enzyme as main adenosine triphosphate ...
none4noThe ATP synthase or F1FO-ATPase is the key enzyme in cell bioenergetics, due to its main role...
none4noThe mitochondrial F1FO-ATPsynthase/ase is a bi-powered enzymatic engine, skilled for massive ...
AbstractIn this paper we introduce monobromobimane, a thiol reagent, as a selective blocker of the r...
In response to calcium mitochondria can undergo a permeability transition—a sudden increase of the p...