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玉米微管相关蛋白的特性,其中一种蛋白与tau蛋白存在免疫相关性。

Characterization of maize microtubule-associated proteins, one of which is immunologically related to tau.

作者信息

Vantard M, Schellenbaum P, Fellous A, Lambert A M

机构信息

Institut de Biologie Moléculaire des Plantes (IBMP), CNRS, Université Louis Pasteur, Strasbourg, France.

出版信息

Biochemistry. 1991 Sep 24;30(38):9334-40. doi: 10.1021/bi00102a028.

Abstract

Microtubule-associated proteins (MAPs) are identified as proteins that copurify with tubulin, promote tubulin assembly, and bind to microtubules in vitro. Higher plant MAPs remain mostly unknown. One example of non-tubulin carrot proteins, which bind to neural microtubules and induce bundling, has been reported so far [Cyr, R. J., & Palewitz, B. A. (1989) Planta 177, 245-260]. Using taxol, we developed an assay where higher plant microtubules were induced to self-assemble in cytosolic extracts of maize cultured cells and were used as the native matrix to isolate putative plant MAPs. Several polypeptides with an apparent molecular masses between 170 and 32 kDa copolymerized with maize microtubules. These putative maize MAPs also coassembled with pig brain tubulin through two cycles of temperature-dependent assembly-disassembly. They were able to initiate and promote MAP-free tubulin assembly under conditions of nonefficient self-assembly and induced bundling of both plant and neural microtubules. One of these proteins, of about 83 kDa, cross-reacted with affinity-purified antibodies against rat brain tau proteins, suggesting the presence of common epitope(s) between neural tau and maize proteins. This homology might concern the tubulin-binding domain, as plant and neural tubulins are highly conserved and the plant polypeptides coassembled with brain tubulin.

摘要

微管相关蛋白(MAPs)被鉴定为可与微管蛋白共同纯化、促进微管蛋白组装并在体外与微管结合的蛋白质。高等植物中的MAPs大多仍不为人知。迄今为止,已报道了一种非微管蛋白的胡萝卜蛋白,它能与神经微管结合并诱导微管束集[Cyr, R. J., & Palewitz, B. A. (1989) Planta 177, 245 - 260]。我们利用紫杉醇开发了一种检测方法,诱导高等植物微管在玉米培养细胞的胞质提取物中自组装,并将其作为天然基质来分离假定的植物MAPs。几种表观分子量在170至32 kDa之间的多肽与玉米微管共聚合。这些假定的玉米MAPs还通过两个温度依赖性组装 - 拆卸循环与猪脑微管蛋白共组装。在自组装效率不高的条件下,它们能够启动并促进无MAPs的微管蛋白组装,并诱导植物和神经微管的束集。其中一种约83 kDa的蛋白质与针对大鼠脑tau蛋白的亲和纯化抗体发生交叉反应,这表明神经tau蛋白和玉米蛋白之间存在共同表位。这种同源性可能涉及微管蛋白结合结构域,因为植物和神经微管蛋白高度保守,且植物多肽能与脑微管蛋白共组装。

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