ATP-synthase of Rhodobacter capsulatus: coupling of proton flow through F-0 to reactions in F-1 under the ATP synthesis and slip conditions

Autor(en): Feniouk, BA
Cherepanov, DA
Junge, W 
Mulkidjanian, AY
Stichwörter: (Rhodobacter capsulatus); ATP synthesis; BINDING; Biochemistry & Molecular Biology; Biophysics; CATALYSIS; Cell Biology; CHLOROPLAST ATPASE; CHROMATOPHORES; elasticity; F1-ATPASE; membrane potential; proton transfer; RESOLUTION; ROTATION; THERMOPHILIC BACILLUS PS3
Erscheinungsdatum: 1999
Herausgeber: ELSEVIER SCIENCE BV
Journal: FEBS LETTERS
Volumen: 445
Ausgabe: 2-3
Startseite: 409
Seitenende: 414
Zusammenfassung: 
A stepwise increasing membrane potential was generated in chromatophores of the phototrophic bacterium Rhodobacter capsulatus by illumination with short flashes of light, Proton transfer through ATP-synthase (measured by electrochromic carotenoid bandshift and by pH-indicators) and ATP release (measured by luminescence of luciferin-luciferase) mere monitored. The ratio between the amount of protons translocated by F0F1 and the ATP yield decreased,vith the flash number from an apparent value of 13 after the first flash to about 5 when averaged over three flashes, In the absence of ADP, protons slipped through F0F1, The proton transfer through F0F1 after the first flash contained two kinetic components, of about 6 ms and 20 ms both under the ATP synthesis conditions and under slip, The slower component of proton transfer was substantially suppressed in the absence of ADP, We attribute our observations to the mechanism of energy storage in the ATP-synthase needed to couple the transfer of four protons with the synthesis of one molecule of ATP, Most probably, the transfer of initial protons of each tetrad creates a strain in the enzyme that slows the translocation of the following protons, (C) 1999 Federation of European Biochemical Societies.
ISSN: 00145793
DOI: 10.1016/S0014-5793(99)00160-X

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