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糖原合酶激酶3β(GSK3β)介导的苏氨酸231位点tau蛋白的磷酸化在调节tau蛋白结合和稳定微管的能力中起关键作用。

Primed phosphorylation of tau at Thr231 by glycogen synthase kinase 3beta (GSK3beta) plays a critical role in regulating tau's ability to bind and stabilize microtubules.

作者信息

Cho Jae-Hyeon, Johnson Gail V W

机构信息

Department of Psychiatry, University of Alabama at Birmingham, Birmingham, Alabama 35294-0017, USA.

出版信息

J Neurochem. 2004 Jan;88(2):349-58. doi: 10.1111/j.1471-4159.2004.02155.x.

Abstract

Site-specific phosphorylation of tau negatively regulates its ability to bind and stabilize microtubule structure. Although tau is a substrate of glycogen synthase kinase 3beta (GSK3beta), the exact sites on tau that are phosphorylated by this kinase in situ have not yet been established, and the effect of these phosphorylation events on tau-microtubule interactions have not been fully elucidated. GSK3beta phosphorylates both primed and unprimed sites on tau, but only primed phosphorylation events significantly decrease the ability of tau to bind microtubules. The focus of the present study is on determining the importance of the GSK3beta-mediated phosphorylation of a specific primed site, Thr231, in regulating tau's function. Pre-phosphorylation of Ser235 primes tau for phosphorylation by GSK3beta at Thr231. Phosphorylation by GSK3beta of wild-type tau or tau with Ser235 mutated to Ala decreases tau-microtubule interactions. However, when Thr231 alone or Thr231 and Ser235 in tau were mutated to Ala, phosphorylation by GSK3beta did not decrease the association of tau with the cytoskeleton. Further, T231A tau was still able to efficiently bind microtubules after phosphorylation by GSK3beta. Expression of each tau construct alone increased tubulin acetylation, a marker of microtubule stability. However, when cells were cotransfected with wild-type tau and GSK3beta, the level of tubulin acetylation was decreased to vector-transfected levels. In contrast, coexpression of GSK3beta with mutated tau (T231A/S235A) did not significantly decrease the levels of acetylated tubulin. These results strongly indicate that phosphorylation of Thr231 in tau by GSK3beta plays a critical role in regulating tau's ability to bind and stabilize microtubules.

摘要

tau蛋白的位点特异性磷酸化会负向调节其结合并稳定微管结构的能力。尽管tau蛋白是糖原合酶激酶3β(GSK3β)的底物,但该激酶在原位磷酸化tau蛋白的确切位点尚未确定,且这些磷酸化事件对tau蛋白与微管相互作用的影响也尚未完全阐明。GSK3β会磷酸化tau蛋白上的引发位点和未引发位点,但只有引发的磷酸化事件会显著降低tau蛋白结合微管的能力。本研究的重点是确定GSK3β介导的特定引发位点Thr231的磷酸化在调节tau蛋白功能中的重要性。Ser235的预磷酸化为GSK3β在Thr231处对tau蛋白的磷酸化做好准备。野生型tau蛋白或Ser235突变为丙氨酸的tau蛋白经GSK3β磷酸化后,会减少tau蛋白与微管的相互作用。然而,当tau蛋白中单独的Thr231或Thr231和Ser235突变为丙氨酸时,GSK3β的磷酸化并未降低tau蛋白与细胞骨架的结合。此外,T231A tau蛋白在经GSK3β磷酸化后仍能有效结合微管。单独表达每种tau构建体都会增加微管蛋白乙酰化,这是微管稳定性的一个标志。然而,当细胞与野生型tau蛋白和GSK3β共转染时,微管蛋白乙酰化水平会降至载体转染水平。相比之下,GSK3β与突变型tau蛋白(T231A/S235A)的共表达并未显著降低乙酰化微管蛋白的水平。这些结果有力地表明,GSK3β对tau蛋白中Thr231的磷酸化在调节tau蛋白结合并稳定微管的能力中起关键作用。

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