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Lateral pressure-mediated protein partitioning into liquid-ordered/liquid-disordered domains

机译:侧向压力介导的蛋白质划分为液体有序/液体无序域

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摘要

We have studied the contributions of stored elastic energies in liquid-ordered (Lo) and liquid-disordered (Ld) domains to transmembrane proteins using the lateral pressure concept. In particular we applied previously reported experimental data for the membrane thickness, intrinsic curvature and bending elasticities of coexisting Lo/Ld domains to calculate whether proteins of simple geometric shapes would preferentially diffuse into Lo or Ld domains and form oligomers of a certain size. For the studied lipid mixture we generally found that proteins with convex shapes prefer sorting to Ld phases and the formation of large clusters. Lo domains in turn would be enriched in monomers of concave shaped proteins. We further observed that proteins which are symmetric with respect to the bilayer center prefer symmetric Lo or Ld domains, while asymmetric proteins favor a location in domains with Lo/Ld asymmetry. In the latter case we additionally retrieved a strong dependence on protein directionality, thus providing a mechanism for transmembrane protein orientation.
机译:我们已经研究了使用侧向压力概念在液体有序(Lo)和液体无序(Ld)域中存储的弹性能对跨膜蛋白的贡献。特别是,我们使用先前报道的共存Lo / Ld域的膜厚度,固有曲率和弯曲弹性的实验数据来计算简单几何形状的蛋白质是否会优先扩散到Lo或Ld域并形成一定大小的寡聚物。对于所研究的脂质混合物,我们通常发现凸形的蛋白质比Ld相更易于分选,并形成大簇。 Lo结构域反过来会富集凹形蛋白的单体。我们进一步观察到,相对于双层中心对称的蛋白质更喜欢对称的Lo或Ld结构域,而非对称蛋白质更喜欢Lo / Ld不对称的结构域中的位置。在后一种情况下,我们还获得了对蛋白质方向性的强烈依赖性,从而提供了跨膜蛋白质取向的机制。

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