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Titlebook: Biological Membranes: Structure, Biogenesis and Dynamics; Jos A. F. Op den Kamp Conference proceedings 1994 Springer-Verlag Berlin Heidelb

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Magnetic Resonance Studies of Protein-Lipid Interactions,protein hydrophobic surface area, and hence protein size. Both the exchange rates of lipids into and out of the protein-lipid interface, as well as any selectivity of lipid-protein associations, has been determined for a number (>15) of integral membrane proteins. Such physical properties do have functional significance in many cases.
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Co-translational Modification, Stability and Turnover of Eukaryotic Proteins,ruction of proteins is as important as synthesis in determining the level of a biological activity, it represents a major cellular activity whose dissection is essential for the full appreciation of the regulation of eukaryotic cell function.
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Structure and Mechanism of Porins,Nikaido, 1992). Specific porins show a comparatively large permeability at low, and saturation effects at high concentrations of the concerning solute. In contrast, non-specific porins function like inert holes showing diffusion rates that are proportional to the solute concentration at all levels.
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Kleine ontwikkelingspsychologie I NMR. I will only discuss integral membrane proteins of the helix-bundle class, ., proteins whose membrane spanning segments are formed from long stretch of hydrophobic amino acids that fold into transmembrane α-helices. The so-called ß-barrel membrane proteins are dealt with in the chapter by Schulz in this volume.
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Structural and Functional Consequences of Acylation of a Transmembrane Peptide,w closely that of the phospholipids in a liquid crystalline bilayer. In contrast, the carboxyl part of the acyl chain is highly ordered and takes up a defined conformation. The results are discussed in the light of the structural and functional consequences of acylation of transmembrane proteins.
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