The interaction of the reaction center secondary quinone with the ubiquinone-cytochrome c2 oxidoreductase in Rhodopseudomonas sphaeroides chromatophores |
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Authors: | Daniel P. O Keefe,Roger C. Prince,P.Leslie Dutton |
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Affiliation: | Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia, PA 19104 U.S.A. |
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Abstract: | ![]() (1) Two populations of reaction centers in the chromatophore membrane can be distinguished under some conditions of initial redox poise (300 mV < Eh < 400 mV): those which transfer a reducing equivalent after the first flash from the secondary quinone (QII) of the reaction center to cytochrome b of the ubiquinone-cytochrome c2 oxidoreductase; and those which retain the reducing equivalent on Q?II until a second flash is given. These two populations do not exchange on a time scale of tens of seconds. (2) At redox potentials higher than 400 mV, Q?II generated after the first flash is no longer able to reduce cytochrome b-560 even in those reaction centers associated with an oxidoreductase. Under these conditions, doubly reduced QII generated by a second flash is required for cytochrome b reduction, so that the QII effectively functions as a two-electron gate into the oxidoreductase at these high potentials. (3) At redox potentials below 300 mV, although the two populations of QII are no longer distinguishable, cytochrome b reduction is still dependent on only part of the reaction center population. (4) Proton binding does not oscillate under any condition tested. |
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Keywords: | Ubiquinone Reaction center Bacterial photosynthesis (Rps. sphaeroides) BChl bacterio chlorophyll Tricine Mops 4-morpholinepropanesulfonic acid Mes 4-morpholineethanesulfonic acid |
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