Cohen C M, Jackson P L, Branton D
J Supramol Struct. 1978;9(1):113-24. doi: 10.1002/jss.400090111.
Chemically tritiated actin from rabbit skeletal muscle was used to investigate the association of G-actin with the red cell membrane. The tritiated actin was shown to be identical to unmodified actin in its ability to polymerize and to activate heavy meromyosin ATPase. Using sealed and unsealed red cell ghosts we have shown that G-actin binds to the cytoplasmic but not the extracellular membrane surface of ghosts. Inside-out vesicles which have been stripped of endogenous actin and spectrin by low-ionic-strength incubation bind little G-actin. However, when a crude spectrin extract containing primarily spectrin, actin, and band 4.1 is added back to stripped vesicles, subsequent binding of G-actin can be increased up to 40-fold. Further, this crude spectrin extract can compete for and abolish G-actin binding to unsealed ghosts. Actin binding to ghosts increases linearly with added G-actin and requires the presence of magnesium. In addition, actin binding is inhibited by cytochalasin B and DNAase I. Negative staining reveals an abundance of actin filaments formed when G-actin is added to reconstituted inside-out vesicles but none when it is added to unreconstituted vesicles. These observations indicate that added G-actin binds to the red cell membrane via filament formation nucleated by some membrane component at the cytoplasmic surface.
用来自兔骨骼肌的化学氚标记肌动蛋白研究G -肌动蛋白与红细胞膜的结合。结果表明,氚标记肌动蛋白在聚合能力和激活重酶解肌球蛋白ATP酶方面与未修饰的肌动蛋白相同。利用密封和未密封的红细胞血影,我们发现G -肌动蛋白结合在血影的细胞质膜表面而非细胞外膜表面。通过低离子强度孵育去除内源性肌动蛋白和血影蛋白的内翻囊泡几乎不结合G -肌动蛋白。然而,当将主要含有血影蛋白、肌动蛋白和带4.1的粗血影蛋白提取物重新添加到去除蛋白的囊泡中时,随后G -肌动蛋白的结合量可增加多达40倍。此外,这种粗血影蛋白提取物可以竞争并消除G -肌动蛋白与未密封血影的结合。肌动蛋白与血影的结合随添加的G -肌动蛋白呈线性增加,并且需要镁的存在。此外,肌动蛋白的结合受到细胞松弛素B和脱氧核糖核酸酶I的抑制。负染色显示,当将G -肌动蛋白添加到重构的内翻囊泡中时会形成大量肌动蛋白丝,而添加到未重构的囊泡中则不会形成。这些观察结果表明,添加的G -肌动蛋白通过由细胞质表面的某些膜成分成核形成丝而与红细胞膜结合。