Where plants make oxygen: a structural model for the photosynthetic oxygen-evolving manganese cluster

In the photosynthetic evolution of oxygen, water oxidation occurs at a catalytic site that includes four manganese atoms together with the essential cofactors, the calcium and chlorine ions. A structural model and a determination of the manganese oxidation states based on X-ray absorption spectrosco...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 1993-04, Vol.260 (5108), p.675-679
Hauptverfasser: Yachandra, V.K. (University of California, Berkeley, CA), DeRose, V.J, Latimer, M.J, Mukerji, I, Sauer, K, Klein, M.P
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Sprache:eng
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Zusammenfassung:In the photosynthetic evolution of oxygen, water oxidation occurs at a catalytic site that includes four manganese atoms together with the essential cofactors, the calcium and chlorine ions. A structural model and a determination of the manganese oxidation states based on X-ray absorption spectroscopy are presented. The salient features, in both higher plants and cyanobacteria, are a pair of di-mu-oxo bridged manganese binuclear clusters linked by a mono-mu-oxo bridge, one proximal calcium atom, and one halide. In dark-adapted samples, manganese occurs in oxidation states (III) and (IV). Data from oriented membranes display distinct dichroism, precluding highly symmetrical structures for the manganese complex
ISSN:0036-8075
1095-9203
DOI:10.1126/science.8480177