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鞭毛和纤毛外纤维微管蛋白在体外聚合成微管。

In vitro polymerization of flagellar and ciliary outer fiber tubulin into microtubules.

作者信息

Kuriyama R

出版信息

J Biochem. 1976 Jul;80(1):153-65. doi: 10.1093/oxfordjournals.jbchem.a131247.

Abstract

About 10--20% of the total protein in the outer fiber fraction was solubilized by sonication in a solution containing 5 mM MES, 0.5 mM MgSO4, 1.0 mM EGTA, 1.0 mM GTP, and 0 or 50 mM KC1 at pH 6.7. The sonicated extract was shown by analytical centrifugation to consist largely of a 6 S component (tubulin dimer), having a molecular weight of 103,000, as determined by gel filtration, and possessing a colchicine-binding activity of 0.8 mole per tubulin dimer. The tubulin fraction failed to polymerize into microtubules by itself. Addition of a small amount of the ciliary outer fiber fragments or reconstituted short brain microtubules, however, induced polymerization, as demonstrated by viscosity of flow birefringence changes as well as light or electron microscopic observations. The growth of heterogeneous microtubules upon mixing outer fiber tubulin with DEAE-dextran-decorated brain microtubules was observed by electron microscopy. Microtubules were reconstituted from outer fiber tubulin without addition of any nuclei fraction when a concentrated tubulin fraction was warmed at 35degree. A few doublet-like microtubules or pairs of parallel singlet microtubules that were closely aligned longitudinally could be observed among many singlet microtubules. Unlike other fiber microtubules, the reconstituted polymers were depolymerized by exposure to Ca2+ ions, high or low ionic strength, colchicine, low temperature or SH reagents. No microtubules were assembled under these conditions.

摘要

在外纤维部分的总蛋白中,约10%-20%在pH 6.7、含有5 mM MES、0.5 mM MgSO₄、1.0 mM EGTA、1.0 mM GTP以及0或50 mM KCl的溶液中通过超声处理而溶解。通过分析离心显示,超声提取物主要由一个6S组分(微管蛋白二聚体)组成,经凝胶过滤测定其分子量为103,000,并且每个微管蛋白二聚体具有0.8摩尔的秋水仙碱结合活性。微管蛋白部分自身无法聚合成微管。然而,添加少量睫状外纤维片段或重构的短脑微管会诱导聚合,这通过流动双折射变化的粘度以及光学或电子显微镜观察得以证明。通过电子显微镜观察到,将外纤维微管蛋白与DEAE-葡聚糖修饰的脑微管混合后,异质微管的生长情况。当浓缩的微管蛋白部分在35℃加热时,无需添加任何核部分即可从外纤维微管蛋白重构微管。在许多单微管中可以观察到一些纵向紧密排列的双联体样微管或平行单微管对。与其他纤维微管不同,重构的聚合物在暴露于Ca²⁺离子、高或低离子强度、秋水仙碱、低温或SH试剂时会解聚。在这些条件下没有微管组装。

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