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双层膜中的蛋白质 - 脂质相互作用:一种晶格模型。

Protein-lipid interactions in bilayer membranes: a lattice model.

作者信息

Pink D A, Chapman D

出版信息

Proc Natl Acad Sci U S A. 1979 Apr;76(4):1542-6. doi: 10.1073/pnas.76.4.1542.

Abstract

A lattice model has been developed to study the effects of intrinsic membrane proteins upon the thermodynamic properties of a lipid bilayer membrane. We assume that only nearest-neighbor van der Waals and steric interactions are important and that the polar group interactions can be represented by effective pressure-area terms. Phase diagrams, the temperature T(0), which locates the gel-fluid melting, the transition enthalpy, and correlations were calculated by mean field and cluster approximations. Average lipid chain areas and chain areas when the lipid is in a given protein environment were obtained. Proteins that have a "smooth" homogeneous surface ("cholesterol-like") and those that have inhomogeneous surfaces or that bind lipids specifically were considered. We find that T(0) can vary depending upon the interactions and that another peak can appear upon the shoulder of the main peak which reflects the melting of a eutectic mixture. The transition enthalpy decreases generally, as was found before, but when a second peak appears departures from this behavior reflect aspects of the eutectic mixture. We find that proteins have significant nonzero probabilities for being adjacent to one another so that no unbroken "annulus" of lipid necessarily exists around a protein. If T(0) does not increase much, or decreases, with increasing c, then lipids adjacent to a protein cannot all be all-trans on the time scale (10(-7) sec) of our system. Around a protein the lipid correlation depth is about one lipid layer, and this increases with c. Possible consequences of ignoring changes in polar group interactions due to clustering of proteins are discussed.

摘要

已开发出一种晶格模型来研究内在膜蛋白对脂质双分子层膜热力学性质的影响。我们假设只有最近邻的范德华相互作用和空间相互作用是重要的,并且极性基团相互作用可以用有效的压力 - 面积项来表示。通过平均场和团簇近似计算了相图、确定凝胶 - 流体熔化的温度T(0)、转变焓和相关性。获得了脂质在给定蛋白质环境中的平均脂质链面积和链面积。考虑了具有“光滑”均匀表面(“类胆固醇”)的蛋白质以及具有不均匀表面或特异性结合脂质的蛋白质。我们发现T(0)会根据相互作用而变化,并且在主峰的肩部可能会出现另一个峰,这反映了共晶混合物的熔化。如之前所发现的,转变焓通常会降低,但当出现第二个峰时,偏离这种行为反映了共晶混合物的某些方面。我们发现蛋白质彼此相邻的概率显著非零,因此在蛋白质周围不一定存在完整的脂质“环带”。如果T(0)不随c的增加而大幅增加或降低,那么在我们系统的时间尺度(10^(-7)秒)内,与蛋白质相邻的脂质不可能全部处于全反式构象。在蛋白质周围,脂质相关深度约为一个脂质层,并且随着c的增加而增加。讨论了忽略由于蛋白质聚集导致的极性基团相互作用变化的可能后果。

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