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血小板微管蛋白的巯基:它们在聚合作用及秋水仙碱结合中的作用

Sulfhydryls of platelet tubulin: their role in polymerization and colchicine binding.

作者信息

Ikeda Y, Steiner M

出版信息

Biochemistry. 1978 Aug 22;17(17):3454-9. doi: 10.1021/bi00610a005.

Abstract

Sulfhydryls and disulfides of platelet tubulin have been quantified, their accessibility and reactivity measured, and their role in polymerization and colchicine binding evaluated. Platelet tubulin isolated by two cycles of temperature-dependent polymerization--depolymerization was found to contain 12 free sulfhydryl groups per tubulin monomer all of which reacted rapidly with p-chloromercuribenzoate. One sulfhydryl was inaccessible to dithiobis(nitrobenzoic acid). Under anaerobic conditions of tubulin extraction, one intrachain disulfide bridge was found per tubulin monomer. Polymerization of tubulin reduced the number of sulfhydryls by one which were able to react with p-chloromercuribenzoate or dithiobis(nicotinic acid) but did not affect the disulfide bridge. Polymerizability of platelet tubulin was very sensitive to blocking of free sulfhydryl groups. Complete inhibition of microtubule assembly was obtained when the number of free sulfhydryls per tubulin was reduced by 3 but could be reversed by the addition of dithiothreitol. Colchicine binding, on the other hand, was only minimally influenced by blocking of sulfhydryls.

摘要

已对血小板微管蛋白中的巯基和二硫键进行了定量,测定了它们的可及性和反应性,并评估了它们在聚合作用和秋水仙碱结合中的作用。通过两轮温度依赖性聚合-解聚分离得到的血小板微管蛋白,发现每个微管蛋白单体含有12个游离巯基,所有这些巯基都能与对氯汞苯甲酸迅速反应。一个巯基对二硫代双(硝基苯甲酸)不可及。在微管蛋白提取的厌氧条件下,每个微管蛋白单体发现一个链内二硫键。微管蛋白的聚合作用使能够与对氯汞苯甲酸或二硫代双(烟酸)反应的巯基数量减少了一个,但不影响二硫键。血小板微管蛋白的聚合能力对游离巯基的封闭非常敏感。当每个微管蛋白的游离巯基数量减少3个时,微管组装完全受到抑制,但加入二硫苏糖醇后可逆转。另一方面,秋水仙碱结合仅受到巯基封闭的最小影响。

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