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  • 1
    ISSN: 1432-072X
    Keywords: PMS photoinhibition ; Photophosphorylation ; Chromatophores ; Bacteriochlorophyll ; Coupling factor ; Structural changes
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Preillumination of R. rubrum membranes in the presence of 50μM phenazine methosulfate produces an inhibition of their photophosphorylating capacity. At low pH's phosphate protects against this photo-inhibition, whereas increasing the pH eliminates this protective effect. The inhibition can be produced not only by preillumination at high pH in the presence of phenazine methosulfate, but also by preillumination at low pH (5.0) and then shifting the pH to 8.0 in the dark. We have also measured the effect of preillumination in the presence of an uncoupler such as carbonylcyanide p-trifluoromethoxyphenylhydrazone, and found that at normal pH's while photophosphorylation was protected, the uncoupler activated ATPase was inhibited pointing to a clear difference for both reactions and perhaps different structural requirements for their activities. The purified coupling factor protein isolated from either normal or photoinactivated membrane will reconstitute normal photophosphorylation in previously uncoupled membranes but not in uncoupled membranes which were inactivated by preillumination with phenazine methosulfate prior to uncoupling.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-072X
    Keywords: Key words Protein phosphorylation ; ATP-Pi exchange ; Light-harvesting complexes ; Reaction center ; Photosynthesis ; Photomorphogenesis ; Membrane ; growth ; Polypeptide insertion ; Phospho-amino esters
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Membranes of Rhodobacter capsulatus strain U43 (pTX35) showed qualitatively very similar phosphorylation patterns under in vitro and in vivo conditions. In vitro, it was irrelevant whether the phosphate source was orthophosphate or ATP. Inhibitors of electron transport did not inhibit light-harvesting complex I (LHIα) (B870) polypeptide phosphorylation, except for o-phenanthroline, which was strongly inhibitory. Redox conditions regulated the amount of protein phosphorylated; external redox potentials between +200 and +300 mV promoted the reaction. Phosphorylation was inhibited by uncouplers such as carbonyl cyanide m-chlorophenyl hydrazone and nigericin plus valinomycin plus potassium ions. Inhibitors of the H+-ATPase were also inhibitory when the phosphate source was [32P]Pi or [γ-32P]ATP. From these results, it was concluded that an operative reaction center, a coupled membrane, and external redox potentials higher than +200 mV are required for optimum LHIα phosphorylation. We also demonstrated that phosphorylation of LHIα polypeptide occurs before insertion into the membrane and that phosphate is preferentially incorporated into specific domains within the cytoplasmic membrane. Intracytoplasmic membranes, identified here as light membranes, were found to contain a dephosphorylated LHIα polypeptide.
    Type of Medium: Electronic Resource
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