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tau蛋白过度磷酸化的结构和功能影响:来自模拟磷酸化的突变tau蛋白的信息。

Structural and functional implications of tau hyperphosphorylation: information from phosphorylation-mimicking mutated tau proteins.

作者信息

Eidenmüller J, Fath T, Hellwig A, Reed J, Sontag E, Brandt R

机构信息

Department of Neurobiology, IZN, University of Heidelberg, INF 345, 69120 Heidelberg, Germany.

出版信息

Biochemistry. 2000 Oct 31;39(43):13166-75. doi: 10.1021/bi001290z.

Abstract

Abnormal tau-immunoreactive filaments are a hallmark of tauopathies, including Alzheimer's disease (AD). A higher phosphorylation ("hyperphosphorylation") state of tau protein may represent a critical event. To determine the potential role of tau hyperphosphorylation in these disorders, mutated tau proteins were produced where serine/threonine residues known to be highly phosphorylated in tau filaments isolated from AD patients were substituted for glutamate to simulate a paired helical filament (PHF)-like tau hyperphosphorylation. We demonstrate that, like hyperphosphorylation, glutamate substitutions induce compact structure elements and SDS-resistant conformational domains in tau protein. Hyperphosphorylation-mimicking glutamate-mutated tau proteins display a complete functional loss in its ability to promote microtubule nucleation which can partially be overcome by addition of the osmolyte trimethylamine N-oxide (TMAO), which is similar to phosphorylated tau. In addition, glutamate-mutated tau proteins fail to interact with the dominant brain protein phosphatase 2A isoform ABalphaC, and exhibit a reduced ability to assemble into filaments. Interestingly, wild-type tau and phosphorylation-mimicking tau similarly bind to microtubules when added alone, but the mutated tau is almost completely displaced from the microtubule surface by equimolar concentrations of wild-type tau. The data indicate that glutamate-mutated tau proteins provide a useful model for analyzing the functional consequences of tau hyperphosphorylation. They suggest that several mechanisms contribute to the abnormal tau accumulation observed during tauopathies, in particular a selective displacement of hyperphosphorylated tau from microtubules, a functional loss in promoting microtubule nucleation, and a failure to interact with phosphatases.

摘要

异常的tau免疫反应性细丝是包括阿尔茨海默病(AD)在内的tau蛋白病的一个标志。tau蛋白的较高磷酸化(“过度磷酸化”)状态可能代表一个关键事件。为了确定tau过度磷酸化在这些疾病中的潜在作用,制备了突变的tau蛋白,其中已知在从AD患者分离的tau细丝中高度磷酸化的丝氨酸/苏氨酸残基被谷氨酸取代,以模拟成对螺旋丝(PHF)样的tau过度磷酸化。我们证明,与过度磷酸化一样,谷氨酸取代会在tau蛋白中诱导紧密结构元件和抗SDS的构象域。模拟过度磷酸化的谷氨酸突变tau蛋白在促进微管成核的能力上表现出完全的功能丧失,添加渗透剂三甲胺N-氧化物(TMAO)可以部分克服这种丧失,TMAO与磷酸化的tau相似。此外,谷氨酸突变的tau蛋白不能与主要的脑蛋白磷酸酶2A同工型ABalphaC相互作用,并且组装成细丝的能力降低。有趣的是,野生型tau和模拟磷酸化的tau单独添加时与微管的结合方式相似,但等摩尔浓度的野生型tau几乎能将突变的tau从微管表面完全取代。数据表明,谷氨酸突变的tau蛋白为分析tau过度磷酸化的功能后果提供了一个有用的模型。它们表明,有几种机制导致了在tau蛋白病中观察到的异常tau积累,特别是过度磷酸化的tau从微管上的选择性取代、促进微管成核的功能丧失以及与磷酸酶相互作用的失败。

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