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早老素-1是一种未磷酸化的糖原合酶激酶-3β底物。

Presenilin-1 is an unprimed glycogen synthase kinase-3beta substrate.

作者信息

Twomey Ciara, McCarthy Justin V

机构信息

Signal Transduction Laboratory, Biochemistry Department, National University of Ireland, Cork, Ireland.

出版信息

FEBS Lett. 2006 Jul 24;580(17):4015-20. doi: 10.1016/j.febslet.2006.06.035. Epub 2006 Jun 22.

Abstract

Previously we described presenilin-1 (PS1) as a GSK-3beta substrate [Kirschenbaum, F., Hsu, S.C., Cordell, B. and McCarthy, J.V. (2001) Substitution of a glycogen synthase kinase-3beta phosphorylation site in presenilin 1 separates presenilin function from beta-catenin signalling. J. Biol. Chem. 276, 7366-7375; Kirschenbaum, F., Hsu, S.C., Cordell, B. and McCarthy, J.V. (2001) Glycogen synthase kinase-3beta regulates presenilin 1 C-terminal fragment levels. J. Biol. Chem. 276, 30701-30707], though it has not been determined whether PS1 is a primed or unprimed GSK-3beta substrate. A means of separating GSK-3beta activity toward primed and unprimed substrates was identified in the GSK-3beta-R96A phosphate binding pocket mutant [Frame, S., Cohen, P. and Biondi, R.M. (2001) A common phosphate binding site explains the unique substrate specificity of GSK3 and its inactivation by phosphorylation. Mol. Cell 7, 1321-1327], which is unable to phosphorylate primed but retains the ability to phosphorylate unprimed GSK-3beta substrates. By using wild type GSK-3beta, GSK-3beta-R96A, and a pharmacological modulator of GSK-3beta activity, we demonstrate that PS1 is an unprimed GSK-3beta substrate. These findings have important implications for regulation of PS1 function and the pathogenesis of Alzheimer's disease.

摘要

此前我们将早老素-1(PS1)描述为糖原合酶激酶-3β(GSK-3β)的底物[基尔申鲍姆,F.,许,S.C.,科德尔,B.和麦卡锡,J.V.(2001年)早老素1中糖原合酶激酶-3β磷酸化位点的取代将早老素功能与β-连环蛋白信号传导分离。《生物化学杂志》276,7366 - 7,375;基尔申鲍姆,F.,许,S.C.,科德尔,B.和麦卡锡,J.V.(2001年)糖原合酶激酶-3β调节早老素1 C末端片段水平。《生物化学杂志》276,30701 - 30707],不过尚未确定PS1是已磷酸化的还是未磷酸化的GSK-3β底物。在GSK-3β-R96A磷酸结合口袋突变体[弗雷姆,S.,科恩,P.和比昂迪,R.M.(2001年)一个共同的磷酸结合位点解释了GSK3独特的底物特异性及其磷酸化失活。《分子细胞》7,1321 - 1327]中发现了一种区分GSK-3β对已磷酸化和未磷酸化底物活性的方法,该突变体无法磷酸化已磷酸化的底物,但保留了磷酸化未磷酸化的GSK-3β底物的能力。通过使用野生型GSK-3β、GSK-3β-R96A以及一种GSK-3β活性的药理学调节剂,我们证明PS1是一种未磷酸化的GSK-3β底物。这些发现对PS1功能的调节以及阿尔茨海默病的发病机制具有重要意义。

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