(1) The effects of membrane potential (delta psi) and nucleotides on the interaction between the F1-ATP synthase and its natural inhibitor protein (IF1) are studied in ox-heart submitochondrial vesicles. (2) Membrane potential causes displacement of IF1 from submitochondrial vesicles, as shown by measuring both delta psi-dependent stimulation of ATPase capacity and release of 125I-labelled IF1 from the vesicles. These effects are abolished if ATP is included in the incubation. (3) There is a linear increase in the steady-state ATPase capacity of oxidising vesicles as delta psi is increased from 100 mV to 135 mV. Increasing delta psi above 140 mV leads to no further change. (4) At a constant membrane potential, ATP suppresses the increase in...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
AbstractThe rate of inactivation of F1-ATPase, isolated from beef heart mitochondria, by the active ...
A phosphorylation potential deltaGp, where deltaGp = deltaGo' + RT2.303 log ([ATP]/([ADP][Pi])), of ...
(1) The effects of membrane potential (delta psi) and nucleotides on the interaction between the F1-...
(1) The kinetics of the release of the mitochondrial inhibitor protein (IF1) is studied in bovine he...
The H+ FoF1-ATP synthase complex of coupling membranes converts the proton-motive force into rotator...
The H+ FoF1-ATP synthase complex of coupling membranes converts the proton-motive force into rotator...
AbstractThe rate of inactivation of F1-ATPase, isolated from beef heart mitochondria, by the active ...
AbstractDerivatives of the inhibitor protein (IF1) of the mitochondrial H+-ATP synthase, bearing del...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
AbstractAlmost all ATPase molecules in submitochondrial particles, isolated from beef heart mitochon...
AbstractThis study shows that the natural inhibitor protein of mitochondrial H+-ATPase complex (IF1)...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
AbstractThe rate of inactivation of F1-ATPase, isolated from beef heart mitochondria, by the active ...
A phosphorylation potential deltaGp, where deltaGp = deltaGo' + RT2.303 log ([ATP]/([ADP][Pi])), of ...
(1) The effects of membrane potential (delta psi) and nucleotides on the interaction between the F1-...
(1) The kinetics of the release of the mitochondrial inhibitor protein (IF1) is studied in bovine he...
The H+ FoF1-ATP synthase complex of coupling membranes converts the proton-motive force into rotator...
The H+ FoF1-ATP synthase complex of coupling membranes converts the proton-motive force into rotator...
AbstractThe rate of inactivation of F1-ATPase, isolated from beef heart mitochondria, by the active ...
AbstractDerivatives of the inhibitor protein (IF1) of the mitochondrial H+-ATP synthase, bearing del...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
AbstractAlmost all ATPase molecules in submitochondrial particles, isolated from beef heart mitochon...
AbstractThis study shows that the natural inhibitor protein of mitochondrial H+-ATPase complex (IF1)...
When mitochondrial function is compromised and the mitochondrial membrane potential (Deltapsi(m)) fa...
AbstractThe rate of inactivation of F1-ATPase, isolated from beef heart mitochondria, by the active ...
A phosphorylation potential deltaGp, where deltaGp = deltaGo' + RT2.303 log ([ATP]/([ADP][Pi])), of ...