AbstractFOF1-ATP synthase converts two energetic “currencies” of the cell (ATP and protonmotive force, pmf) by coupling two rotary motors/generators. Their coupling efficiency is usually very high. Uncoupled proton leakage (slip) has only been observed in chloroplast enzyme at unphysiologically low nucleotide concentration.We investigated the properties of proton slip in chromatophores (sub-bacterial vesicles) from Rhodobacter capsulatus in the single-enzyme-per-vesicle mode. The membrane was energized by excitation with flashing light and the relaxation of the transmembrane voltage and pH difference was photometrically detected. We found that: (1) Proton slip occurred only at low nucleotide concentration (<1 μM) and after pre-illumination ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
This article reviews proton intake, charge transfer and proton release by F-ATPases, based in part o...
AbstractH+-FOF1-ATP synthase couples proton flow through its membrane portion, FO, to the synthesis ...
AbstractA stepwise increasing membrane potential was generated in chromatophores of the phototrophic...
AbstractF0F1-ATP synthase (H+-ATP synthase, F0F1) utilizes the transmembrane protonmotive force to c...
ABSTRACT The membrane portion of F 0 F 1 -ATP synthase, F 0 , translocates protons by a rotary mecha...
AbstractATP synthase is a unique rotary machine that uses the transmembrane electrochemical potentia...
AbstractThe ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a tran...
none5noThe ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a trans...
The ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a transmembra...
AbstractThe membrane portion of F0F1-ATP synthase, F0, translocates protons by a rotary mechanism. P...
AbstractATP synthase, CFoCF1, is both activated and driven by protonmotive force. Composed of more t...
AbstractElectron transport, the proton gradient and ATP synthesis were determined in thylakoids that...
In ATP synthases from several sources an uncoupling between ATP hydrolysis and proton pumping has be...
The correlation between the rate of ATP synthesis and light-induced proton flux was investigated in ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
This article reviews proton intake, charge transfer and proton release by F-ATPases, based in part o...
AbstractH+-FOF1-ATP synthase couples proton flow through its membrane portion, FO, to the synthesis ...
AbstractA stepwise increasing membrane potential was generated in chromatophores of the phototrophic...
AbstractF0F1-ATP synthase (H+-ATP synthase, F0F1) utilizes the transmembrane protonmotive force to c...
ABSTRACT The membrane portion of F 0 F 1 -ATP synthase, F 0 , translocates protons by a rotary mecha...
AbstractATP synthase is a unique rotary machine that uses the transmembrane electrochemical potentia...
AbstractThe ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a tran...
none5noThe ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a trans...
The ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a transmembra...
AbstractThe membrane portion of F0F1-ATP synthase, F0, translocates protons by a rotary mechanism. P...
AbstractATP synthase, CFoCF1, is both activated and driven by protonmotive force. Composed of more t...
AbstractElectron transport, the proton gradient and ATP synthesis were determined in thylakoids that...
In ATP synthases from several sources an uncoupling between ATP hydrolysis and proton pumping has be...
The correlation between the rate of ATP synthesis and light-induced proton flux was investigated in ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
This article reviews proton intake, charge transfer and proton release by F-ATPases, based in part o...
AbstractH+-FOF1-ATP synthase couples proton flow through its membrane portion, FO, to the synthesis ...