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Evidence of Cholesterol Accumulated in High Curvature Regions: Implication to the Curvature Elastic Energy for Lipid Mixtures

机译:胆固醇在高曲率区域积累的证据:对脂质混合物曲率弹性能的影响

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摘要

Recent experiments suggested that cholesterol and other lipid components of high negative spontaneous curvature facilitate membrane fusion. This is taken as evidence supporting the stalk-pore model of membrane fusion in which the lipid bilayers go through intermediate structures of high curvature. How do the high-curvature lipid components lower the free energy of the curved structure? Do the high-curvature lipid components modify the average spontaneous curvature of the relevant monolayer, thereby facilitate its bending, or do the lipid components redistribute in the curved structure so as to lower the free energy? This question is fundamental to the curvature elastic energy for lipid mixtures. Here we investigate the lipid distribution in a monolayer of a binary lipid mixture before and after bending, or more precisely in the lamellar, hexagonal, and distorted hexagonal phases. The lipid mixture is composed of 2:1 ratio of brominated di18:0PC and cholesterol. Using a newly developed procedure for the multiwavelength anomalous diffraction method, we are able to isolate the bromine distribution and reconstruct the electron density distribution of the lipid mixture in the three phases. We found that the lipid distribution is homogenous and uniform in the lamellar and hexagonal phases. But in the distorted hexagonal phase, the lipid monolayer has nonuniform curvature, and cholesterol almost entirely concentrates in the high curvature region. This finding demonstrates that the association energies between lipid molecules vary with the curvature of membrane. Thus, lipid components in a mixture may redistribute under conditions of nonuniform curvature, such as in the stalk structure. In such cases, the spontaneous curvature depends on the local lipid composition and the free energy minimum is determined by lipid distribution as well as curvature.
机译:最近的实验表明,高负自发曲率的胆固醇和其他脂质成分有助于膜融合。作为支持膜融合的茎-孔模型的证据,其中脂质双层穿过高曲率的中间结构。高曲率脂质成分如何降低弯曲结构的自由能?高曲率脂质成分会改变相关单层的平均自发曲率,从而促进其弯曲,还是脂质成分重新分布在弯曲结构中以降低自由能?这个问题对于脂质混合物的曲率弹性能至关重要。在这里,我们研究在弯曲之前和之后,或更确切地说在层状,六角形和扭曲的六角形相中二元脂质混合物的单层脂质分布。脂质混合物由2:1比例的溴化di18:0PC和胆固醇组成。使用新开发的用于多波长异常衍射方法的程序,我们能够分离溴的分布并重建脂质混合物在三相中的电子密度分布。我们发现脂质分布在层状和六角相中是均匀且均匀的。但是在扭曲的六角相中,脂质单层曲率不均匀,胆固醇几乎完全集中在高曲率区域。该发现表明脂质分子之间的缔合能随膜的曲率变化。因此,混合物中的脂质成分可能在曲率不均匀的条件下(例如在茎结构中)重新分布。在这种情况下,自发曲率取决于局部脂质组成,最小自由能由脂质分布和曲率决定。

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