【2h】

Cholesterol-induced fluid-phase immiscibility in membranes.

机译:胆固醇在膜中诱导的液相不混溶。

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摘要

The fluid-phase behavior of binary mixtures of cholesterol with phosphatidylcholines is investigated using magnetic resonance methods. Phospholipid biradicals provide the electron spin resonance spectroscopic resolution of two immiscible fluid phases in the dipalmitoylphosphatidylcholine-cholesterol system. Isotropic chemical shifts of the phospholipid carbonyl carbons in binary mixtures with cholesterol measured using solid-state high-resolution nuclear magnetic resonance methods furnish evidence for a putative hydrogen bond between the 3 beta-hydroxyl of cholesterol and the sn-2 carbonyl of the phospholipid. The location in the bilayer of cholesterol in the two fluid phases is determined by measuring spin label-enhanced spin-lattice relaxation rates of the 13C nuclei of both the phospholipid and cholesterol molecules. These results suggest, in a time-averaged sense, that in the cholesterol-poor fluid phase the cholesterol molecule essentially spans the bilayer, whereas in the cholesterol-rich fluid phase the molecule is present in both monolayers of the bilayer.
机译:使用磁共振方法研究了胆固醇与磷脂酰胆碱的二元混合物的液相行为。磷脂双自由基可提供二棕榈酰磷脂酰胆碱-胆固醇系统中两个不混溶流体相的电子自旋共振光谱解析。使用固态高分辨率核磁共振方法测得的与胆固醇的二元混合物中的磷脂羰基碳的各向同性化学位移,为胆固醇的3β-羟基与磷脂的sn-2羰基之间的假定氢键提供了证据。通过测量磷脂和胆固醇分子的13C核的自旋标记物增强的自旋晶格弛豫速率,可以确定两个流体相中胆固醇在双层中的位置。从时间平均的角度来看,这些结果表明,在胆固醇稀少的液相中,胆固醇分子基本上跨越了双层,而在胆固醇丰富的液相中,该分子存在于双层的两个单层中。

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