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Red Cells Iron and Erythropoiesis: Adducin forms a bridge between the erythrocyte membrane and its cytoskeleton and regulates membrane cohesion

机译:红细胞铁和促红细胞生成:Adducin在红细胞膜与其细胞骨架之间形成桥梁并调节膜的凝聚力

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摘要

The erythrocyte membrane skeleton is the best understood cytoskeleton. Because its protein components have homologs in virtually all other cells, the membrane serves as a fundamental model of biologic membranes. Modern textbooks portray the membrane as a 2-dimensional spectrin-based membrane skeleton attached to a lipid bilayer through 2 linkages: band 3–ankyrin–β-spectrin and glycophorin C–protein 4.1–β-spectrin. Although evidence supports an essential role for the first bridge in regulating membrane cohesion, rupture of the glycophorin C–protein 4.1 interaction has little effect on membrane stability. We demonstrate the existence of a novel band 3–adducin–spectrin bridge that connects the spectrin/actin/protein 4.1 junctional complex to the bilayer. As rupture of this bridge leads to spontaneous membrane fragmentation, we conclude that the band 3–adducin–spectrin bridge is important to membrane stability. The required relocation of part of the band 3 population to the spectrin/actin junctional complex and its formation of a new bridge with adducin necessitates a significant revision of accepted models of the erythrocyte membrane.
机译:红细胞膜骨架是最了解的细胞骨架。由于其蛋白质成分实际上在所有其他细胞中都具有同源物,因此该膜可作为生物膜的基本模型。现代教科书将这种膜描绘成一种基于血影蛋白的二维膜骨架,该膜骨架通过2个连接连接到脂质双层:带3–锚蛋白–β-血影蛋白和糖蛋白C–蛋白4.1–β-血影蛋白。尽管有证据表明第一个桥在调节膜内聚力中起着至关重要的作用,但是糖蛋白C-蛋白4.1相互作用的破裂对膜的稳定性影响很小。 我们证明了新型3带-adducin的存在–血影蛋白桥,将血影蛋白/肌动蛋白/蛋白质4.1连接复合物连接至双层。由于该桥的断裂会导致自发性膜碎片,因此我们得出结论:3-adducin-spectrin谱带对膜的稳定性很重要。带3人口的一部分需要重新定位到血影蛋白/肌动蛋白连接复合物,并与新葡聚糖形成一个新的桥梁,需要对公认的红细胞膜模型进行重大修订。

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