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Titlebook: Membrane Organization and Dynamics; Amitabha Chattopadhyay Book 2017 Springer International Publishing AG 2017 membrane dynamics.membrane

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Dynamics and Organization of Archaeal Tetraether Lipid Membranes,resence of the unusual structural features, such as macrocyclic structures, cyclopentane rings, isoprenoid units, tetraether linkages, and a variety of polar head groups, archaeal BTL membranes possess physical properties distinctly different from those found in conventional diester lipid membranes.
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Effects of Oxidative Stress, Hyperglycemia, and Hypercholesterolemia on Membrane Structural Organiz dependent on relative lipid (including cholesterol) and protein levels, which are known to change with aging and in different disease processes. The plasma membrane is organized into microdomains that have distinct biophysical and biochemical characteristics that mediate specific cellular activitie
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Interaction of Amphiphilic Molecules with Lipid Bilayers: Kinetics of Insertion, Desorption and Trambranes. Often, the quantitative description of the rate of permeation is based on a single kinetic parameter, the permeability coefficient. However, the nature of the interactions between amphiphilic molecules and lipid bilayers is complex and involves different steps (insertion, translocation and
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Investigating the Dynamics and Organization of Membrane Proteins and Lipids by Imaging Fluorescence enigma. Especially bilayers with multiple lipid components, not to mention peptides and proteins, are difficult to characterize as they often exhibit fast molecular dynamics and structural organization that presumably are on the nanometer scale. Therefore, biophysical techniques are required that m
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Determining Oligomerization of Membrane Proteins by Single Molecule Methods, is not trivial, however, to experimentally quantify oligomerization of molecules, particularly when different oligomeric states coexist. For this, our group developed a single molecule technique called .hinning .ut .lusters .hile .onserving .toichiometry of .abelling (TOCCSL) (Moertelmaier et al.,
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Spatiotemporal Dynamics of Nicotinic Acetylcholine Receptors and Lipid Platforms, Some of these relationships are established with subsets of the membrane lipid population, in the form of lipid platforms, lateral heterogeneities of the bilayer lipid having a dynamic chemical composition distinct from that of the bulk membrane. In addition to the equilibrium between the biosynthe
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G-Protein-Coupled Receptors: Membrane Diffusion and Organization Matter,regulation of these signaling events depend on the organization of the receptors with their different partners in the plasma membrane, and the way this organization influences the encounters between them. By studying the dynamics of the receptors and their partners in the plasma membrane, important
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