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Titlebook: Energy Conservation in Biological Membranes; 29. Colloquium, 6.-8 Günter Schäfer,Martin Klingenberg Conference proceedings 1978 Springer-Ve

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Evolutionary Aspects of Biological Energy Conversion for tackling some of the unsolved fundamental mechanistic problems still existing in the area of biological energy conversion, in particular in photosynthetic and respiratory electron transport phosphorylation.
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Low Temperature Electron Transport in Cytochrome , in the Cytochrome ,-Cytochrome Oxidase Reaction: enon before building hypothetical houses of ephemeral cards. So firstly, I will present what I consider to be “useful knowledge” in terms of the American Philosophical Society’s motto (1) before I can embark upon hypotheses of energy coupling mechanisms.
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The Plastoquinone Pool as Possible Hydrogen Pumpd, however, only if between system I and II a hydrogen (H. plus e) is translocated from the outside to the inside (Fig. 1). Based on the protolytic properties of redox reactions in quinone systems, the PQ pool was inferred to be a candidate for a “pump” for hydrogen (H. + e) from the membrane outsid
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Society, Work and Welfare in Europether cyclic photophosphorylation system, only ATP is formed without the net reduction of an electron acceptor. NADPH and ATP, so formed, are consumed in the dark during carbon assimilation by the enzymes in the matrix space of the chloroplast.
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