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大西洋鳕鱼(Gadus morhua)脑中乙酰化冷不稳定微管的微管相关蛋白依赖性秋水仙碱稳定性

Microtubule-associated proteins-dependent colchicine stability of acetylated cold-labile brain microtubules from the Atlantic cod, Gadus morhua.

作者信息

Billger M, Strömberg E, Wallin M

机构信息

Department of Zoophysiology, University of Göteborg, Sweden.

出版信息

J Cell Biol. 1991 Apr;113(2):331-8. doi: 10.1083/jcb.113.2.331.

Abstract

Assembly of brain microtubule proteins isolated from the Atlantic cod, Gadus morhua, was found to be much less sensitive to colchicine than assembly of bovine brain microtubules, which was completely inhibited by low colchicine concentrations (10 microM). The degree of disassembly by colchicine was also less for cod microtubules. The lack of colchicine effect was not caused by a lower affinity of colchicine to cod tubulin, as colchicine bound to cod tubulin with a dissociation constant, Kd, and a binding ratio close to that of bovine tubulin. Cod brain tubulin was highly acetylated and mainly detyrosinated, as opposed to bovine tubulin. When cod tubulin, purified by means of phosphocellulose chromatography, was assembled by addition of DMSO in the absence of microtubule-associated proteins (MAPs), the microtubules became sensitive to low concentrations of colchicine. They were, however, slightly more stable to disassembly, indicating that posttranslational modifications induce a somewhat increased stability to colchicine. The stability was mainly MAPs dependent, as it increased markedly in the presence of MAPs. The stability was not caused by an extremely large amount of cod MAPs, since there were slightly less MAPs in cod than in bovine microtubules. When "hybrid" microtubules were assembled from cod tubulin and bovine MAPs, these microtubules became less sensitive to colchicine. This was not a general effect of MAPs, since bovine MAPs did not induce a colchicine stability of microtubules assembled from bovine tubulin. We can therefore conclude that MAPs can induce colchicine stability of colchicine labile acetylated tubulin.

摘要

从大西洋鳕鱼(Gadus morhua)分离出的脑微管蛋白的组装,被发现对秋水仙碱的敏感性远低于牛脑微管的组装,后者在低秋水仙碱浓度(10 microM)下会被完全抑制。秋水仙碱对鳕鱼微管的拆解程度也较低。秋水仙碱效应的缺乏并非由于其对鳕鱼微管蛋白的亲和力较低,因为秋水仙碱与鳕鱼微管蛋白结合的解离常数Kd以及结合比例与牛微管蛋白相近。与牛微管蛋白不同,鳕鱼脑微管蛋白高度乙酰化且主要是去酪氨酸化的。当通过磷酸纤维素色谱法纯化的鳕鱼微管蛋白在没有微管相关蛋白(MAPs)的情况下通过添加二甲基亚砜进行组装时,微管对低浓度秋水仙碱变得敏感。然而,它们对拆解的稳定性略高,这表明翻译后修饰会使对秋水仙碱的稳定性有所增加。这种稳定性主要依赖于MAPs,因为在有MAPs存在时稳定性会显著增加。稳定性并非由鳕鱼MAPs的极大量引起,因为鳕鱼中的MAPs略少于牛微管中的MAPs。当从鳕鱼微管蛋白和牛MAPs组装“杂交”微管时,这些微管对秋水仙碱的敏感性降低。这不是MAPs的普遍效应,因为牛MAPs不会诱导由牛微管蛋白组装的微管对秋水仙碱的稳定性。因此我们可以得出结论,MAPs可以诱导对秋水仙碱不稳定的乙酰化微管蛋白对秋水仙碱的稳定性。

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