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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Lipid tail chain asymmetry and the strength of membrane-induced interactions between membrane proteins.
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Lipid tail chain asymmetry and the strength of membrane-induced interactions between membrane proteins.

机译:脂质尾链的不对称性和膜诱导的膜蛋白之间相互作用的强度。

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Many lipids are composed of asymmetric tail chains that differ by their molecular weight (MW) and/or degree of saturation. Previous studies found that membrane moduli vary with the degree of lipid tail asymmetry. However, to date little is known regarding the effect (if any) of tail asymmetry on the membrane-induced interactions between embedded proteins. In this paper we use a self-consistent field model to examine the effect of lipid tail asymmetry on membrane proteins. We first examine the case where the overall tail length (sum of both chains) is held constant, which implies that the membrane thickness remains constant as well, independent of tail asymmetry. We find that, in these systems, the membrane area stretch and bending moduli decrease with increasing chain asymmetry, thereby reducing the magnitude of the membrane-induced barrier to protein aggregation. Since in symmetric lipid bilayers the energy barrier is typically of order approximately 1-2 times the thermal energy kT, the asymmetry-induced reduction in barrier height may increase the probability of protein aggregation significantly. In systems where one tail chain is held constant, increasing asymmetry involves changes in the bilayer thickness which are found to dominate any effect arising from the asymmetry.
机译:许多脂质由不对称的尾链组成,它们的分子量(MW)和/或饱和度不同。先前的研究发现,膜模量随脂质尾部不对称程度的变化而变化。然而,迄今为止,关于尾部不对称性对嵌入蛋白之间的膜诱导相互作用的影响(如果有的话)知之甚少。在本文中,我们使用自洽场模型检查脂质尾部不对称性对膜蛋白的影响。我们首先检查整体尾部长度(两条链之和)保持恒定的情况,这意味着膜厚度也保持恒定,与尾部不对称无关。我们发现,在这些系统中,膜面积的拉伸和弯曲模量随链不对称性的增加而降低,从而降低了膜诱导的蛋白质聚集屏障的幅度。由于在对称脂质双层中,能量屏障通常约为热能kT的1-2倍,因此不对称诱导的屏障高度降低可能会显着增加蛋白质聚集的可能性。在一个尾链保持恒定的系统中,不对称性的增加会导致双层厚度的变化,而这种变化会主导由不对称性引起的任何影响。

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