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Membranes of Rhodopseudomonas sphaeroides VII. Photochemical properties of a fraction enriched in newly synthesized bacteriochlorophyll a-protein complexes
Authors:CNeil Hunter  Nigel G Holmes  Owen TG Jones  Robert A Niederman
Institution:Department of Biochemistry, University of Bristol, Medical School, Bristol, BS8 1TD U.K.
Abstract:Previous pulse-chase studies have shown that bacteriochlorophyll a-protein complexes destined eventually for the photosynthetic (chromatophore) membrane of Rhodopseudomonas sphaeroides appear first in a distinct pigmented fraction. This rapidly labeled material forms an upper band when extracts of phototrophically grown cells are subjected directly to rate-zone sedimentation. In the present investigation, flash-induced absorbance changes at 605 nm have demonstrated that the upper fraction is enriched two-fold in photochemical reaction center activity when compared to chromatophores; a similar enrichment in the reaction center-associated B-875 antenna bacteriochlorophyll complex was also observed. Although b- and c-type cytochromes were present in the upper pigmented band, no photoreduction of the b-type components could be demonstrated. The endogenous c-type cytochrome (Em = +345 mV) was photooxidized slowly upon flash illumination. The extent of the reaction was increased markedly with excess exogenous ferrocytochrome c but only slightly in chromatophores. Only a small light-induced carotenoid band shift was observed. These results indicate that the rapidly labeled fraction contains photochemically competent reaction centers associated loosely with c-type and unconnected to b-type cytochrome. It is suggested that this fraction arises from new sites of cytoplasmic membrane invagination which fragment to form leaky vesicles upon cell disruption.
Keywords:Chromatophore  Bacteriochlorophyll-protein complex  Cytochrome  Reaction center  light-harvesting bacteriochlorophyll complexes absorbing maximally near 875  850 nm  respectively  reaction center absorption band which upon oxidation  exhibits a maximal absorbance decrease near 605 nm  reaction center absorption band with a maximum near 870 nm  Mops  BChl  bacteriochlorophyll
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