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构象转变状态负责tau蛋白微管结合结构域的组装。

Conformational transition state is responsible for assembly of microtubule-binding domain of tau protein.

作者信息

Hiraoka Shuko, Yao Tian-Ming, Minoura Katsuhiko, Tomoo Koji, Sumida Miho, Taniguchi Taizo, Ishida Toshimasa

机构信息

Osaka University of Pharmaceutical Sciences, 4-20-1 Nasahara, Takatsuki, Osaka 569-1094, Japan.

出版信息

Biochem Biophys Res Commun. 2004 Mar 12;315(3):659-63. doi: 10.1016/j.bbrc.2004.01.107.

Abstract

In the brains of Alzheimer's disease patients, the tau protein dissociates from the axonal microtubule and abnormally aggregates to form a paired helical filament (PHF). One of the priorities in Alzheimer research is to clarify the mechanism of PHF formation. Although several reports on the regulation of tau assembly have been published, it is not yet clear whether in vivo PHFs are composed of beta-structures or alpha-helices. Since the four-repeat microtubule-binding domain (4RMBD) of the tau protein has been considered to play an essential role in PHF formation, its heparin-induced assembly propensity was investigated by the thioflavin fluorescence method to clarify what conformation is most preferred for the assembly. We analyzed the assembly propensity of 4RMBD in Tris-HCl buffer with different trifluoroethanol (TFE) contents, because TFE reversibly induces the transition of the random structure to the alpha-helical structure in an aqueous solution. Consequently, it was observed that the 4RMBD assembly is most significantly favored to proceed in the 10-30% TFE solution, the concentration of which corresponds to the activated transition state of 4RMBD from a random structure to an alpha-helical structure, as determined from the circular dichroism (CD) spectral changes. Since such an assembly does not occur in a buffer containing TFE of < 10% or > 40%, the intermediate conformation between the random and alpha-helical structures could be most responsible for the PHF formation of 4RMBD. This is the first report to clarify that the non-native alpha-helical intermediate in transition from random coil is directly associated with filament formation at the start of PHF formation.

摘要

在阿尔茨海默病患者的大脑中,tau蛋白从轴突微管上解离并异常聚集形成双螺旋丝(PHF)。阿尔茨海默病研究的首要任务之一是阐明PHF形成的机制。尽管已经发表了几篇关于tau组装调控的报告,但尚不清楚体内的PHF是由β结构还是α螺旋组成。由于tau蛋白的四重复微管结合结构域(4RMBD)被认为在PHF形成中起关键作用,因此通过硫黄素荧光法研究了其肝素诱导的组装倾向,以阐明哪种构象最有利于组装。我们分析了4RMBD在含有不同三氟乙醇(TFE)含量的Tris-HCl缓冲液中的组装倾向,因为TFE可在水溶液中可逆地诱导随机结构向α螺旋结构的转变。结果发现,4RMBD组装在10%-30%的TFE溶液中最显著地倾向于进行,根据圆二色性(CD)光谱变化确定,该浓度对应于4RMBD从随机结构向α螺旋结构的活化转变状态。由于在含有<10%或>40%TFE的缓冲液中不会发生这种组装,随机结构和α螺旋结构之间的中间构象可能最负责4RMBD的PHF形成。这是第一份阐明从无规卷曲转变过程中的非天然α螺旋中间体在PHF形成开始时直接与细丝形成相关的报告。

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