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Topologically Diverse Human Membrane Proteins Partitionto Liquid-Disordered Domains in Phase-Separated Lipid Vesicles

机译:拓扑多样的人类膜蛋白分区相分离脂质囊泡中的液体无序域

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摘要

The integration of membrane proteins into “lipid raft” membrane domains influences many biochemical processes. The intrinsic structural properties of membrane proteins are thought to mediate their partitioning between membrane domains. However, whether membrane topology influences the targeting of proteins to rafts remains unclear. To address this question, we examined the domain preference of three putative raft-associated membrane proteins with widely different topologies: human caveolin-3, C99 (the 99 residue C-terminal domain of the amyloid precursor protein), and peripheral myelin protein 22. We find that each of these proteins are excluded from the ordered domains of giant unilamellar vesicles containing coexisting liquid-ordered and liquid-disordered phases. Thus, the intrinsic structural properties of these three topologically distinct disease-linked proteins are insufficient to confer affinity for synthetic raft-like domains.
机译:膜蛋白整合到“脂筏”膜结构域中会影响许多生化过程。膜蛋白的固有结构特性被认为介导了它们在膜结构域之间的分配。然而,膜的拓扑结构是否影响蛋白质靶向筏的作用尚不清楚。为了解决这个问题,我们研究了三种假定的与筏相关的膜蛋白的结构域偏好,这些蛋白具有多种不同的拓扑结构:人caveolin-3,C99(淀粉样蛋白前体蛋白的99个残基C末端结构域)和外周髓磷脂蛋白22。我们发现,这些蛋白质中的每一种都被排除在含有液体并存和液体无序共存的巨大单层囊泡的有序域中。因此,这三种拓扑结构不同的疾病相关蛋白的固有结构特性不足以赋予对合成筏状结构域的亲和力。

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