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Composition fluctuations, correlated response, and protein solvation in membranes

机译:膜中的成分波动,相关反应和蛋白质溶解

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Membrane composition fluctuations are deduced from the deuterium NMR relaxation data of S. L. Veatch [Proc. Natl. Acad. Sci. U.S.A. 104, 17650 (2007)]. A theoretical model for these fluctuations is used to determine the parameters of a correlation function. A fluctuation-response relation is then derived to infer the response of a lipid bilayer membrane to perturbations, such as the presence of a protein. The energy of the correlated response is shown to decrease as a bilayer miscibility critical point is approached from higher temperatures. Near the critical temperature the low energy of the composition response facilitates the lipid solvation of membrane proteins and minimizes lipid-mediated nonspecific protein-protein interactions. This facilitated lipid solvation of membrane proteins may be the basis of reports that at the growth temperature, the lipids of animal cell membranes have compositions such that they are within ~10° of a miscibility critical point.
机译:从S.L.Veatch [Proc.Natl.Acad.Sci.USA,89:3587-8877]的氘核NMR弛豫数据推导膜组成波动。 Natl。学院科学[U.S.A. 104,17650(2007)]。这些波动的理论模型用于确定相关函数的参数。然后导出波动-响应关系以推断脂质双层膜对摄动(例如蛋白质的存在)的响应。当从较高温度接近双层可混溶性临界点时,相关响应的能量显示降低。在临界温度附近,组合物响应的低能量促进了膜蛋白的脂质溶解,并使脂质介导的非特异性蛋白-蛋白相互作用最小化。促进膜蛋白的脂类溶解可能是报道的依据,即在生长温度下,动物细胞膜的脂类具有在互溶性临界点约10°范围内的组成。

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