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[tau蛋白的磷酸化]

[Phosphorylation of tau protein].

作者信息

Uchida T, Ishiguro K

机构信息

Mitsubishi Kasei Institute of Life Sciences.

出版信息

Nihon Ronen Igakkai Zasshi. 1990 May;27(3):280-6.

PMID:2120490
Abstract

In aged human brain and particularly in Alzheimer's disease brain, paired helical filaments (PHFs) accumulate in the neuronal cell. Recently, it has been found that the highly phosphorylated tau protein, one of the microtubule-associated proteins (MAPs), is a component of PHF. The authors attempted to clarify the mechanism underlying the accumulation of PHF from the following two aspects; 1) What is the mechanism of phosphorylation of tau protein? 2) Is the highly phosphorylated tau protein capable of forming PHFs? From rat or bovine microtubule proteins we partially purified and characterized a novel protein kinase that specifically phosphorylated tau and MAP2 among many proteins in the brain extract, and which formed a PHF epitope on the phosphorylated human tau. This enzyme was one of the protein serine/threonine kinases and was independent of known second messengers. The phosphorylation of tau by this enzyme was stimulated by tubulin under the condition of microtubule formation, suggesting that the phosphorylation of tau could occur concomitantly with microtubule formation in the brain. Since this kinase was usually bound to tau but not directly to tubulin, the enzyme was associated with microtubules through tau. From these properties related to tau, this kinase is designated as tau protein kinase. The tau that been phosphorylated with this kinase using [gamma-32P]ATP as a phosphate donor, was digested by endoprotinase Lys-C to produce three labeled fragments, K1, K2 and K3. These three fragments were sequenced and the phosphorylation sites on tau by this kinase were identified. The K2 fragment overlapped with the tau-1 site known to be one of the phosphorylation site in PHF. This result strengthens the possibility that tau protein phosphorylated by tau protein kinase is incorporated into PHF. Tubulin binding sites on tau were located between K1 and K3 fragments, while K2 fragment was located in the neighboring to N-terminus of K1. No phosphorylated sites were found on the tubulin-binding domain of tau, leading us to the idea that the interaction of tau with tubulin could induce conformational changes on tau making it accessible to effects of the kinase. We detected -SP- as a sequence common to three major phosphorylation sites on K1, K2 and K3 fragments. Neurofilament-specific kinase and growth-associated histone H1 kinase are known to recognize the consensus sequence including -SP-. These enzymes exhibit certain properties similar to tau protein kinase and seem to play a crucial role in the regulation of neurite outgrowth or cell growth, through the phosphorylation of a specific substrate, neurofilaments or histone H1, respectively.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在老年人大脑尤其是阿尔茨海默病患者的大脑中,成对螺旋丝(PHF)在神经元细胞中积累。最近,人们发现高度磷酸化的tau蛋白是微管相关蛋白(MAP)之一,是PHF的一个组成部分。作者试图从以下两个方面阐明PHF积累的潜在机制:1)tau蛋白磷酸化的机制是什么?2)高度磷酸化的tau蛋白是否能够形成PHF?我们从大鼠或牛的微管蛋白中部分纯化并鉴定了一种新型蛋白激酶,该激酶在脑提取物中的多种蛋白质中特异性地使tau和MAP2磷酸化,并在磷酸化的人tau上形成PHF表位。这种酶是蛋白丝氨酸/苏氨酸激酶之一,且不依赖于已知的第二信使。在微管形成的条件下,微管蛋白可刺激该酶对tau的磷酸化作用,这表明在大脑中tau的磷酸化可能与微管形成同时发生。由于这种激酶通常与tau结合而不直接与微管蛋白结合,所以该酶是通过tau与微管相关联的。基于这些与tau相关的特性,这种激酶被命名为tau蛋白激酶。使用[γ-32P]ATP作为磷供体,用这种激酶磷酸化的tau,经内肽酶Lys-C消化产生三个标记片段,K1、K2和K3。对这三个片段进行测序,并确定了该激酶在tau上的磷酸化位点。K2片段与已知为PHF中磷酸化位点之一的tau-1位点重叠。这一结果增强了被tau蛋白激酶磷酸化的tau蛋白被整合到PHF中的可能性。tau上的微管蛋白结合位点位于K1和K3片段之间,而K2片段位于K1的N端附近。在tau的微管蛋白结合结构域上未发现磷酸化位点,这使我们想到tau与微管蛋白的相互作用可能会诱导tau的构象变化,使其能够受到激酶的作用。我们检测到-SP-是K1、K2和K3片段上三个主要磷酸化位点共有的序列。已知神经丝特异性激酶和生长相关组蛋白H1激酶可识别包括-SP-在内的共有序列。这些酶表现出与tau蛋白激酶某些相似的特性,并且似乎分别通过对特定底物神经丝或组蛋白H1的磷酸化,在神经突生长或细胞生长的调节中起关键作用。(摘要截选至400字)

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