AbstractATP synthase is a unique rotary machine that uses the transmembrane electrochemical potential difference of proton (Δμ˜H+) to synthesize ATP from ADP and inorganic phosphate. Charge translocation by the enzyme can be most conveniently followed in chromatophores of phototrophic bacteria (vesicles derived from invaginations of the cytoplasmic membrane). Excitation of chromatophores by a short flash of light generates a step of the proton-motive force, and the charge transfer, which is coupled to ATP synthesis, can be spectrophotometrically monitored by electrochromic absorption transients of intrinsic carotenoids in the coupling membrane. We assessed the average number of functional enzyme molecules per chromatophore vesicle. Kinetic ...
AbstractElectron transport, the proton gradient and ATP synthesis were determined in thylakoids that...
AbstractThe flash-induced proton release into the lumen of chromatophores from Rhodobacter capsulatu...
AbstractThe membrane-embedded F0 part of ATP synthases is responsible for ion translocation during A...
AbstractATP synthase is a unique rotary machine that uses the transmembrane electrochemical potentia...
AbstractF0F1-ATP synthase (H+-ATP synthase, F0F1) utilizes the transmembrane protonmotive force to c...
AbstractA stepwise increasing membrane potential was generated in chromatophores of the phototrophic...
none6Abstract The density distribution of photosynthetic membrane vesicles (chromatophores) from Rh...
AbstractThe density distribution of photosynthetic membrane vesicles (chromatophores) from Rhodobact...
AbstractFOF1-ATP synthase converts two energetic “currencies” of the cell (ATP and protonmotive forc...
AbstractThe rate of ATP synthesis and the rate of pyridine nucleotide transhydrogenase were recorded...
AbstractThe ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a tran...
AbstractThe membrane portion of F0F1-ATP synthase, F0, translocates protons by a rotary mechanism. P...
AbstractIt is possible to obtain synthesis of PPi by artifical ion potentials in Rhodospirillum rubr...
The correlation between the rate of ATP synthesis and light-induced proton flux was investigated in ...
The ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a transmembra...
AbstractElectron transport, the proton gradient and ATP synthesis were determined in thylakoids that...
AbstractThe flash-induced proton release into the lumen of chromatophores from Rhodobacter capsulatu...
AbstractThe membrane-embedded F0 part of ATP synthases is responsible for ion translocation during A...
AbstractATP synthase is a unique rotary machine that uses the transmembrane electrochemical potentia...
AbstractF0F1-ATP synthase (H+-ATP synthase, F0F1) utilizes the transmembrane protonmotive force to c...
AbstractA stepwise increasing membrane potential was generated in chromatophores of the phototrophic...
none6Abstract The density distribution of photosynthetic membrane vesicles (chromatophores) from Rh...
AbstractThe density distribution of photosynthetic membrane vesicles (chromatophores) from Rhodobact...
AbstractFOF1-ATP synthase converts two energetic “currencies” of the cell (ATP and protonmotive forc...
AbstractThe rate of ATP synthesis and the rate of pyridine nucleotide transhydrogenase were recorded...
AbstractThe ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a tran...
AbstractThe membrane portion of F0F1-ATP synthase, F0, translocates protons by a rotary mechanism. P...
AbstractIt is possible to obtain synthesis of PPi by artifical ion potentials in Rhodospirillum rubr...
The correlation between the rate of ATP synthesis and light-induced proton flux was investigated in ...
The ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a transmembra...
AbstractElectron transport, the proton gradient and ATP synthesis were determined in thylakoids that...
AbstractThe flash-induced proton release into the lumen of chromatophores from Rhodobacter capsulatu...
AbstractThe membrane-embedded F0 part of ATP synthases is responsible for ion translocation during A...