Elgsaeter A, Shotton D M, Branton D
Biochim Biophys Acta. 1976 Feb 19;426(1):101-22. doi: 10.1016/0005-2736(76)90433-8.
Physicochemical properties of mixtures of spectrin and actin extracted from human erythrocyte ghosts have been correlated with ultrastructural changes observed in freeze-fractured erythrocyte membranes. (1) Extracted mixtures of spectrin and actin have a very low solubility (less than 30 mug/ml) near their isoelectric point, pH 4.8. These mixtures are also precipitated by low concentrations of Ca2+, Mg2+, polylysine or basic proteins. (2) All conditions which precipitate extracts of spectrin and actin also induce aggregation of the intramembrane particles in spectrin-depleted erythrocyte ghosts. Precipitation of the residual spectrin molecules into small patches on the cytoplasmic surface of the ghost membrane is thought to be the cause of particle aggregations, implying an association between the spectrin molecules and the intramembrane particles. (3) When fresh ghosts are exposed to conditions which precipitate extracts of spectrin and actin, only limited particle aggregation occurs. Instead, the contraction of the intact spectrin meshwork induced by the precipitation conditions compresses the lipid bilayer of the membrane, causing it to bleb off particle-free, protein-free vesicles. (4) The absence of protein in these lipid vesicles implies that all the proteins of the erythrocyte membrane are immobilized by association with either the spectrin meshwork or the intramembrane particles.
从人红细胞血影中提取的血影蛋白和肌动蛋白混合物的物理化学性质,已与在冷冻断裂的红细胞膜中观察到的超微结构变化相关联。(1)血影蛋白和肌动蛋白的提取混合物在其等电点pH 4.8附近的溶解度非常低(小于30微克/毫升)。这些混合物也会被低浓度的Ca2+、Mg2+、聚赖氨酸或碱性蛋白质沉淀。(2)所有使血影蛋白和肌动蛋白提取物沉淀的条件,也会诱导血影蛋白缺失的红细胞血影中的膜内颗粒聚集。残余血影蛋白分子在血影膜细胞质表面沉淀成小斑块被认为是颗粒聚集的原因,这意味着血影蛋白分子与膜内颗粒之间存在关联。(3)当新鲜血影暴露于使血影蛋白和肌动蛋白提取物沉淀的条件时,只会发生有限的颗粒聚集。相反,沉淀条件诱导的完整血影蛋白网络收缩会压缩膜的脂质双层,导致其形成无颗粒、无蛋白质的小泡。(4)这些脂质小泡中没有蛋白质,这意味着红细胞膜的所有蛋白质都通过与血影蛋白网络或膜内颗粒结合而被固定。