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鸟苷三磷酸(GTP)再生在体外影响微管、神经丝和微管相关蛋白之间的相互作用。

GTP regeneration influences interactions of microtubules, neurofilaments, and microtubule-associated proteins in vitro.

作者信息

Flynn G, Purich D L

机构信息

Department of Biochemistry and Molecular Biology, University of Florida College of Medicine, Gainesville 32610.

出版信息

J Biol Chem. 1987 Nov 15;262(32):15443-7.

PMID:3680206
Abstract

Interactions of microtubules, neurofilaments, and microtubule-associated proteins were investigated by turbidity and falling-ball viscometry measurements. We found evidence of endogenous GTPase activity in neurofilaments and microtubule-associated proteins (MAPs) in preparations that do not include urea or heat treatment, respectively. The absence or presence of either adenyl-5'-yl imidodiphosphonic acid or a GTP-regenerating system markedly influenced observed polymerization and gelation characteristics. Most significantly, the apparent viscosity of neurofilament and microtubule samples did not display a biphasic optimal MAP concentration profile when a GTP-regenerating system was operant. Likewise, GTP regeneration promoted the recovery of gelation following mechanical disruption of neurofilament/MAP/microtubule mixtures. These and other observations require some reassessment of proposed roles for microtubule-associated proteins in modulating neurofilament-microtubule interactions in vitro.

摘要

通过比浊法和落球粘度测定法研究了微管、神经丝和微管相关蛋白之间的相互作用。我们分别在不包括尿素或热处理的制剂中发现了神经丝和微管相关蛋白(MAPs)中内源性GTP酶活性的证据。腺苷-5'-亚氨二磷酸或GTP再生系统的存在与否显著影响了观察到的聚合和凝胶化特性。最显著的是,当GTP再生系统起作用时,神经丝和微管样品的表观粘度并未显示出双相最佳MAP浓度曲线。同样,GTP再生促进了神经丝/MAP/微管混合物机械破坏后凝胶化的恢复。这些以及其他观察结果需要对微管相关蛋白在体外调节神经丝-微管相互作用中所提出的作用进行一些重新评估。

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