Doenges K H, Weissinger M, Fritzsche R, Schroeter D
Biochemistry. 1979 May 1;18(9):1698-702. doi: 10.1021/bi00576a010.
Microtubule protein from Ehrlich ascites tumor cells purified by an in vitro polymerization process in the absence of glycerol and calcium chelators contains several accessory proteins but lacks the high molecular weight proteins which are present in neurotubulin. DEAE-Sephadex chromatography of two-times cycled tubulin removes these nontubulin proteins, resulting in pure tubulin, as critically examined by sodium dodecyl sulfate gel electrophoresis. This tubulin can readily assemble into microtubules in assembly buffer, at low magnesium concentrations, without glycerol and at tubulin concentrations above 0.8 mg/mL. Electron microscopy shows that the tubules are identical with normal microtubules. When the purified tubulin fraction was reduced and carboxymethylated, a significant minor protein component could be observed electrophoretically, migrating between alpha- and beta-tubulin. At present, the identity and function of this protein are not known. The results demonstrate that the in vitro assembly of tubulin from Ehrlich ascites tumor cells does not require high molecular weight proteins or gamma-like factor(s) as has been proposed for the neurotubulin system.
通过在无甘油和钙螯合剂的情况下进行体外聚合过程从艾氏腹水瘤细胞中纯化得到的微管蛋白含有几种辅助蛋白,但缺乏存在于神经微管蛋白中的高分子量蛋白。对经过两次循环的微管蛋白进行二乙氨基乙基葡聚糖凝胶(DEAE - Sephadex)层析可去除这些非微管蛋白,通过十二烷基硫酸钠凝胶电泳严格检测,得到纯微管蛋白。这种微管蛋白在低镁浓度、无甘油且微管蛋白浓度高于0.8mg/mL的组装缓冲液中能很容易地组装成微管。电子显微镜显示这些微管与正常微管相同。当对纯化的微管蛋白组分进行还原和羧甲基化处理后,电泳时可观察到一个明显的次要蛋白成分,它在α - 微管蛋白和β - 微管蛋白之间迁移。目前,这种蛋白的身份和功能尚不清楚。结果表明,艾氏腹水瘤细胞微管蛋白的体外组装不需要如神经微管蛋白系统所提出的高分子量蛋白或γ样因子。