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Physiological Ligands ADP and P<sub>i</sub> Modulate the Degree of Intrinsic Coupling in the ATP Synthase of the Photosynthetic Bacterium <i>Rhodobacter capsulatus</i>
21
Citations
15
References
2004
Year
BiochemistryPhotosystemsBioenergeticsNatural SciencesEnzyme CatalysisMolecular BiologyIntrinsic CouplingAtp SynthaseMicrobial PhysiologyStructure-function Enzyme KineticsMicrobiologyPhysiological Ligands AdpAtp Hydrolysis ActivitiesProton PumpingMedicinePhotosynthesisMolecular Microbiology
The proton-pumping and the ATP hydrolysis activities of the ATP synthase of Rhodobacter capsulatus have been compared as a function of the ADP and P(i) concentrations. The proton pumping was measured either with the transmembrane pH difference probe, 9-amino-6-chloro-2-methoxyacridine, or with the transmembrane electric potential difference probe, bis(3-propyl-5-oxoisoxazol-4-yl)pentamethine oxonol, obtaining consistent results. The comparison indicates that an intrinsic uncoupling of ATP synthase is induced when the concentration of either ligand is decreased. The half-maximal effect was found in the submicromolar range for ADP and at about 70 microM for P(i). It is proposed that a switch from a partially uncoupled state of ATP synthase to the coupled state is induced by the simultaneous binding of ADP and P(i).
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