Pinder J C, Clark S E, Baines A J, Morris E, Gratzer W B
Prog Clin Biol Res. 1981;55:343-61.
The state of actin in the erythrocyte membrane cytoskeleton has been examined. The presence of ADP, rather than ATP, as the predominant nucleotide species reinforces the view that actin occurs in the polymerized form. Redeterminations of the amounts of the three cytoskeletal proteins, spectrin, actin and 4.1, present in the cell allow evaluation of some of the stoichiometric constraints on the construction of the cytoskeleton. The available evidence is compatible with a network consisting of spectrin tetramers as the structural members, attached at both ends to junctions consisting of 4.1 and short filaments (or 'protofilaments') of actin. Electron micrographs of isolated cytoskeletons support such a picture. The dynamic state of the actin has been studied, using the DNAase assay method. The results indicate that whereas native monomeric actin is present in the cell, only a small proportion of the subunits of the protofilament can enter into an equilibrium with this pool. A considerable proportion of the cytoskeletal actin is not liberated under conditions that dissociate F-actin and is evidently tightly associated with spectrin and 4.1. Attention is drawn to the possible consequences of ATP depletion on the state of the actin and thus of the cytoskeleton.
对红细胞膜细胞骨架中肌动蛋白的状态进行了研究。作为主要核苷酸种类的是ADP而非ATP,这强化了肌动蛋白以聚合形式存在的观点。对细胞中三种细胞骨架蛋白(血影蛋白、肌动蛋白和4.1)含量的重新测定,有助于评估细胞骨架构建过程中的一些化学计量学限制因素。现有证据与一个由血影蛋白四聚体作为结构成分组成的网络相符,血影蛋白四聚体两端连接由4.1和肌动蛋白短丝(或“原丝”)组成的连接点。分离出的细胞骨架的电子显微镜照片支持了这样一幅图景。利用脱氧核糖核酸酶检测法研究了肌动蛋白的动态状态。结果表明,虽然细胞中存在天然单体肌动蛋白,但原丝中只有一小部分亚基能与这个库达到平衡。相当一部分细胞骨架肌动蛋白在使F-肌动蛋白解离的条件下不会释放出来,显然它与血影蛋白和4.1紧密结合。人们注意到ATP耗竭对肌动蛋白状态进而对细胞骨架状态可能产生的后果。