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Studies of the function of the membrane-bound iron-sulfur centers of the photosynthetic bacterium Chromatium vinosum
Authors:R Malkin  RK Chain  S Kraichoke  DB Knaff
Institution:1. Department of Plant and Soil Biology, University of California, Berkeley, CA 94720, U.S.A.;2. Department of Chemistry, Texas Tech University, Lubbock, TX 79409 U.S.A.
Abstract:Chromatophores from the photosynthetic bacterium, Chromatium vinosum, have been prepared which photoreduce NAD+ with either succinate or reduced dichlorophenolindophenol as electron donors. NAD+ reduction is inhibited by uncouplers as well as inhibitors of cyclic photophosphorylation. These chromatophores contain several bound iron-sulfur centers which have been detected by low-temperature EPR spectroscopy. One center, having a g 2.01 EPR signal in the oxidized state, has Em7.5 = +50 mV and is partially reduced by succinate in the dark. Three iron-sulfur centers having g 1.93 EPR signals have been resolved by redox titration, and the Em7.5 values of these centers are ?50, ?175 and ?250 mV, respectively. Studies of the involvement of these centers in electron transfer from donors to NAD+ have indicated that the center with Em = ?50 mV is succinate reducible in the dark and appears to be analogous to center S-1 of succinic dehydrogenase in other systems. An additional g 1.93 iron-sulfur center can be photoreduced in the presence of electron donors and this reduction is inhibited by uncouplers. The possible role of the two low-potential iron-sulfur centers in relation to the dehydrogenases functioning in NAD+ reduction is considered.
Keywords:Chromatophore  Iron-sulfur center  Dehydrogenase  Bacterial photosynthesis  (Chromatium vinosum)  BChl  bacteriochlorophyll  DCIP  dichlorophenolindophenol  TTFA  2-thenoyltrifluoroacetone
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