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Titlebook: Structure of Biological Membranes; Sixten Abrahamsson,Irmin Pascher Book 1977 Plenum Press, New York 1977 Chloroplast.Lipid.Oligosaccharid

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Dynamics of Membrane-Associated Energy-Transducing Catalysts. A Study with Mitochondrial Adenosine ng units — electron-transport catalysts, ATP-synthesizing enzymes and ion-translocators of mitochondria, chloroplasts and prokaryotes — can take place via a transmembrane proton gradient and/or a membrane potential, in accordance with the chemiosmotic hypothesis of Mitchell (1961, 1966). The mechani
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Regulation of Pancreatic Phospholipase A2 Activity by Different Lipid-Water Interfaces,ably penetrates to a certain extent into the hydrophobic interior of the lipid phase. This process causes a dramatic increase in the rate of hydrolysis. The IRS embraces at least the rather apolar N-terminal sequence of the polypeptide chain: Ala. Leu. Trp. Gln. Phe. Arg. Ser. Met and its most effec
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Molecular Organization and the Fluid Nature of the Mitochondrial Energy Transducing Membrane,ons along a chain of respiratory proteins and the coupling of the free energy derived from such transfer to the phosphorylation of ADP. Electron transfer between the heme protein components of the membrane is rapid and can be expected to require protein-protein interactions equal to the half times o
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Aspects on Structure and Function of Sphingolipids in Cell Surface Membranes,culation that sphingolipid is a major part of the surface monolayer, in addition to protein, cholesterol and phosphatidylcholine. The lipophilic part, ceramide, has, beside a hydro-carbon chain variation as found for other membrane lipids, characteristic structural features (amide, hydroxyls) with a
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