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哺乳动物脑微管蛋白中20S组分的特性分析

Characterization of 20S component in tubulin from mammalian brain.

作者信息

Doenges K H, Biedert S, Paweletz N

出版信息

Biochemistry. 1976 Jul 13;15(14):2995-9. doi: 10.1021/bi00659a009.

Abstract

Tubulin from porcine brain, purified by at least two cycles of assembly and disassembly, was characerized at different pH values by sedimentation velocity analysis and turbidimetric measurements. At pH 6.4 the depolymerized material was composed of two major species sedimenting with so20,w values of 6 and 36 and a minor one of 20S. By raising the pH, the amount of the 20S component increased and that of the 36S decreased, whereas that of the 6S component was unaltered. At pH 7.6 the mixture contained 20S and 6S components but hardly any 36S. The 20S species can be separated from the 6S ones by gel filtration on agarose A-15m at pH 7.6. On electron microscopic examination this preparation contains far fewer double rings compared to the material at pH 6.4, but single rings could often be seen. Sodium dodecyl sulfate gel electrophoresis of the 20S and 36S components showed that they consist almost entirely of tubulin and some higher and lower molecular weight fractions. Turbidity measurements showed that the minimal protein concentration necessary for polymerization increases with increasing pH. The turbidity plateau reached at a given pH can be raised by decreasing the pH. From these results it is suggested that the 20S component is an intermediate of the 36S species. The results further indicate the existence of a pH-dependent equilibrium between the 20S species and the 36Soligomers.

摘要

通过至少两个组装和解聚循环纯化的猪脑微管蛋白,在不同pH值下通过沉降速度分析和比浊法测量进行了表征。在pH 6.4时,解聚的物质由两种主要成分组成,其沉降系数s20,w值分别为6和36,还有一种次要成分沉降系数为20S。随着pH值升高,20S成分的量增加,36S成分的量减少,而6S成分的量不变。在pH 7.6时,混合物包含20S和6S成分,但几乎没有36S成分。在pH 7.6时,通过琼脂糖A-15m凝胶过滤可将20S成分与6S成分分离。电子显微镜检查显示,与pH 6.4时的物质相比,该制剂中的双环要少得多,但经常可以看到单环。20S和36S成分的十二烷基硫酸钠凝胶电泳表明,它们几乎完全由微管蛋白以及一些分子量较高和较低的组分组成。比浊法测量表明,聚合所需的最低蛋白质浓度随pH值升高而增加。在给定pH值下达到的浊度平台可通过降低pH值来提高。从这些结果表明,20S成分是36S成分的中间体。结果进一步表明在20S成分和36S寡聚体之间存在pH依赖性平衡。

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