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新型小分子抑制糖原合成酶激酶3(GSK3)并激活Wnt信号通路的特性研究与开发

Characterization and development of novel small-molecules inhibiting GSK3 and activating Wnt signaling.

作者信息

Zhong Hanbing, Zou Haixia, Semenov Mikhail V, Moshinsky Deborah, He Xi, Huang Haigen, Li Song, Quan Junmin, Yang Zhen, Lin Shuo

机构信息

Laboratory of Chemical Genomics, School of Chemical Biology and Biotechnology, Shenzhen Graduate School of Peking University, Shenzhen University Town, Shenzhen 518055, China.

出版信息

Mol Biosyst. 2009 Nov;5(11):1356-60. doi: 10.1039/b905752h. Epub 2009 Aug 12.

Abstract

Glycogen synthase kinase 3 (GSK3) is an essential component of the Wnt signaling pathway and plays important roles in regulating cell proliferation, differentiation, and apoptosis. As GSK3 is abnormally upregulated in several diseases including type II diabetes, Alzheimer's disease and cancer, it has been regarded as a potential drug target. During zebrafish development, inhibition of GSK3 leads to ectopic activation of the Wnt pathway, resulting in a headless embryo. Using this phenotype as an assay we screened a chemical library of 4000 compounds and identified one novel compound, 3F8, which specifically inhibits eye and forebrain formation in zebrafish embryos, resembling a typical Wnt overexpression phenotype. Cell reporter assays, chemical informatics analysis and in vitro kinase experiments revealed that 3F8 is a selective GSK3 inhibitor, which is more potent than SB216763, a commonly used GSK3 inhibitor. Based on the structure of 3F8, a new generation of compounds inhibiting GSK3 was synthesized and validated by biological assays. Together, 3F8 and its derivatives could be useful as new reagents and potential therapeutic candidates for GSK3 related diseases.

摘要

糖原合酶激酶3(GSK3)是Wnt信号通路的重要组成部分,在调节细胞增殖、分化和凋亡中发挥重要作用。由于GSK3在包括II型糖尿病、阿尔茨海默病和癌症在内的多种疾病中异常上调,它已被视为一个潜在的药物靶点。在斑马鱼发育过程中,抑制GSK3会导致Wnt通路的异位激活,从而产生无头胚胎。利用这一表型作为检测方法,我们筛选了一个包含4000种化合物的化学文库,并鉴定出一种新型化合物3F8,它能特异性抑制斑马鱼胚胎的眼睛和前脑形成,类似于典型的Wnt过表达表型。细胞报告基因检测、化学信息学分析和体外激酶实验表明,3F8是一种选择性GSK3抑制剂,其效力比常用的GSK3抑制剂SB216763更强。基于3F8的结构,合成了新一代抑制GSK3的化合物,并通过生物学检测进行了验证。总之,3F8及其衍生物可作为GSK3相关疾病的新试剂和潜在治疗候选物。

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