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糖原合酶激酶-3是肌醇从头合成达到最佳状态所必需的。

Glycogen synthase kinase-3 is required for optimal de novo synthesis of inositol.

作者信息

Azab Abed N, He Quan, Ju Shulin, Li Guiling, Greenberg Miriam L

机构信息

Department of Biological Sciences, Wayne State University, Detroit, MI 48202, USA.

出版信息

Mol Microbiol. 2007 Feb;63(4):1248-58. doi: 10.1111/j.1365-2958.2007.05591.x.

Abstract

Studies have shown that the inositol biosynthetic pathway and the enzyme glycogen synthase kinase-3 (GSK-3) are targets of the mood-stabilizing drugs lithium and valproate. However, a relationship between these targets has not been previously described. We hypothesized that GSK-3 may play a role in inositol synthesis, and that loss of GSK-3 may lead to inositol depletion, thus providing a mechanistic link between the two drug targets. Utilizing a yeast Saccharomyces cerevisiae gsk-3Delta quadruple-null mutant, in which all four genes encoding homologues of mammalian GSK-3 are disrupted, we tested the hypothesis that GSK-3 is required for de novo inositol biosynthesis. The gsk-3Delta mutant exhibited multiple features of inositol depletion, including defective growth in inositol-lacking medium, decreased intracellular inositol, increased INO1 and ITR1 expression, and decreased levels of phosphatidylinositol. Treatment of wild-type cells with a highly specific GSK-3 inhibitor led to a significant increase in INO1 expression. Supplementation with inositol alleviated the temperature sensitivity of gsk-3Delta. Activity of myo-inositol-3 phosphate synthase, the rate-limiting enzyme in inositol de novo biosynthesis, was decreased in gsk-3Delta. These results demonstrate for the first time that GSK-3 is required for optimal myo-inositol-3 phosphate synthase activity and de novo inositol biosynthesis, and that loss of GSK-3 activity causes inositol depletion.

摘要

研究表明,肌醇生物合成途径以及糖原合酶激酶-3(GSK-3)是心境稳定剂锂盐和丙戊酸盐的作用靶点。然而,此前尚未描述过这些靶点之间的关系。我们推测GSK-3可能在肌醇合成中发挥作用,并且GSK-3的缺失可能导致肌醇耗竭,从而在这两个药物靶点之间建立一种机制性联系。利用酿酒酵母gsk-3Δ四重缺失突变体,其中编码哺乳动物GSK-3同源物的所有四个基因均被破坏,我们测试了GSK-3是从头合成肌醇所必需的这一假设。gsk-3Δ突变体表现出肌醇耗竭的多个特征,包括在缺乏肌醇的培养基中生长缺陷、细胞内肌醇减少、INO1和ITR1表达增加以及磷脂酰肌醇水平降低。用高度特异性的GSK-3抑制剂处理野生型细胞导致INO1表达显著增加。补充肌醇可减轻gsk-3Δ的温度敏感性。肌醇从头生物合成中的限速酶肌醇-3-磷酸合酶的活性在gsk-3Δ中降低。这些结果首次证明,GSK-3是最佳肌醇-3-磷酸合酶活性和从头合成肌醇所必需的,并且GSK-3活性的丧失会导致肌醇耗竭。

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