Blikstad I, Nelson W J, Moon R T, Lazarides E
Cell. 1983 Apr;32(4):1081-91. doi: 10.1016/0092-8674(83)90292-1.
The synthesis and assembly of spectrin was investigated in erythroid cells during chicken embryo development. Immunoprecipitation of Triton X-100-soluble and -insoluble cytoskeletal fractions with alpha- and beta-spectrin antisera show that, at steady state, alpha and beta spectrin are present in stoichiometric amounts, and exclusively, in the cytoskeleton. However, pulse labeling of cells and in vitro translation of total erythroid cell RNA reveal that alpha spectrin is synthesized in a two to three fold excess over beta spectrin. Pulse-chase experiments show that newly synthesized alpha and beta spectrin are present in both the cytoskeletal and soluble fractions, and that stoichiometric amounts are stably assembled in the cytoskeleton. On the other hand, there is a severalfold excess of alpha relative to beta spectrin in the soluble fraction, both of which turn over with a half-life of 50 min. In cells from 4 day old embryos, more than 80% of the newly synthesized beta spectrin, but only 10% of the alpha spectrin, are present in the cytoskeleton. Thus, early in development, the association of alpha and beta spectrin with the membrane-cytoskeleton may be rate-limited by the amount of beta spectrin synthesized. Later on in erythroid development, progressively lesser proportions of newly synthesized beta spectrin are present in the cytoskeleton, suggesting that during development, the rate of association of beta spectrin with the membrane-cytoskeleton becomes limited by some other membrane-cytoskeletal component.
在鸡胚发育过程中,研究了红细胞中血影蛋白的合成与组装。用α-和β-血影蛋白抗血清对Triton X-100可溶性和不溶性细胞骨架组分进行免疫沉淀,结果表明,在稳态下,α和β血影蛋白以化学计量比存在,且仅存在于细胞骨架中。然而,对细胞进行脉冲标记以及对总红细胞RNA进行体外翻译显示,α血影蛋白的合成量比β血影蛋白多2至3倍。脉冲追踪实验表明,新合成的α和β血影蛋白同时存在于细胞骨架和可溶性组分中,且化学计量比的量稳定地组装在细胞骨架中。另一方面,可溶性组分中α血影蛋白相对于β血影蛋白有几倍的过量,两者的半衰期均为50分钟。在4日龄胚胎的细胞中,新合成的β血影蛋白超过80%存在于细胞骨架中,而α血影蛋白只有10%。因此,在发育早期,α和β血影蛋白与膜细胞骨架的结合可能受β血影蛋白合成量的限制。在红细胞发育后期,新合成的β血影蛋白存在于细胞骨架中的比例逐渐降低,这表明在发育过程中,β血影蛋白与膜细胞骨架的结合速率受到其他一些膜细胞骨架成分的限制。