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人tau蛋白对微管的表面修饰

Surface-decoration of microtubules by human tau.

作者信息

Santarella Rachel A, Skiniotis Georgios, Goldie Kenneth N, Tittmann Peter, Gross Heinz, Mandelkow Eva-Maria, Mandelkow E, Hoenger Andreas

机构信息

European Molecular Biology Laboratory, Meyerhofstrasse 1, D-69117, Heidelberg, Germany.

出版信息

J Mol Biol. 2004 Jun 4;339(3):539-53. doi: 10.1016/j.jmb.2004.04.008.

Abstract

Tau is a neuronal, microtubule-associated protein that stabilizes microtubules and promotes neurite outgrowth. Tau is largely unfolded in solution and presumably forms mostly random coil. Because of its hydrophilic nature and flexible structure, tau complexed to microtubules is largely invisible by standard electron microscopy methods. We applied a combination of high-resolution metal-shadowing and cryo-electron microscopy to study the interactions between tau and microtubules. We used recombinant tau variants with different domain compositions, (1) full length tau, (2) the repeat domain that mediates microtubule binding (K19), and (3) two GFP-tau fusion proteins that contain a globular marker (GFP) attached to full-length tau at either end. All of these constructs bind exclusively to the outside of microtubules. Most of the tau-related mass appears randomly distributed, creating a "halo" of low-density mass spread across the microtubule surface. Only a small fraction of tau creates a periodic signal at an 8 nm interval, centered on alpha-tubulin subunits. Our data suggest that tau retains most of its disordered structure even when bound to the microtubule surface. Hence, it binds along, as well as across protofilaments. Nevertheless, even minute concentrations of tau have a strong stabilizing effect and effectively scavenge unpolymerized tubulin.

摘要

tau蛋白是一种与神经元微管相关的蛋白质,它能稳定微管并促进神经突生长。tau蛋白在溶液中大多处于未折叠状态,推测主要形成无规卷曲。由于其亲水性和灵活的结构,与微管结合的tau蛋白在标准电子显微镜方法下大多不可见。我们应用高分辨率金属阴影法和冷冻电子显微镜相结合的方法来研究tau蛋白与微管之间的相互作用。我们使用了具有不同结构域组成的重组tau蛋白变体,(1)全长tau蛋白,(2)介导微管结合的重复结构域(K19),以及(3)两种GFP - tau融合蛋白,它们在全长tau蛋白的两端都连接有一个球状标记物(GFP)。所有这些构建体都仅与微管外部结合。大多数与tau蛋白相关的物质似乎随机分布,在微管表面形成一个低密度物质的“晕圈”。只有一小部分tau蛋白在以α - 微管蛋白亚基为中心的8纳米间隔处产生周期性信号。我们的数据表明,即使与微管表面结合,tau蛋白仍保留其大部分无序结构。因此,它沿着原纤维以及跨原纤维结合。然而,即使是微量的tau蛋白也有很强的稳定作用,并能有效地清除未聚合的微管蛋白。

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