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谷胱甘肽S-转移酶:基因结构与表达调控

Glutathione S-transferases: gene structure and regulation of expression.

作者信息

Daniel V

机构信息

Department of Biochemistry, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Crit Rev Biochem Mol Biol. 1993;28(3):173-207. doi: 10.3109/10409239309086794.

Abstract

The current knowledge about the structure of GST genes and the molecular mechanisms involved in regulation of their expression are reviewed. Information derived from the study of rat and mouse GST Alpha-class, Ya genes, and a rat GST Pi-class gene seems to indicate that a single cis-regulatory element, composed of two adjacent AP-1-like binding sites in the 5'-flanking region of these GST genes, is responsible for their basal and xenobiotic-inducible activity. The identification of Fos/Jun (AP-1) complex as the trans-acting factor that binds to this element and mediates the basal and inducible expression of GST genes offers a basis for an understanding of the molecular processes involved in GST regulation. The induction of expression of Fos and Jun transcriptional regulatory proteins by a variety of extracellular stimuli is known to mediate the activation of target genes via the AP-1 binding sites. The modulation of the AP-1 activity may account for the changes induced by growth factors, hormones, chemical carcinogens, transforming oncogenes, and cellular stress-inducing agents in the pattern of GST expression. Recent observations implying reactive oxygen as the transduction signal that mediates activation of c-fos and c-jun genes are presently considered to provide an explanation for the induction of GST gene expression by chemical agents of diverse structure. The possibility that these agents may all induce conditions of oxidative stress by various pathways to activate expression of GST genes that are regulated by the AP-1 complex is discussed.

摘要

本文综述了目前关于谷胱甘肽S-转移酶(GST)基因结构及其表达调控分子机制的知识。来自对大鼠和小鼠GSTα类、Ya基因以及大鼠GSTπ类基因研究的信息表明,在这些GST基因5'-侧翼区域由两个相邻的AP-1样结合位点组成的单一顺式调控元件,负责其基础活性和外源性诱导活性。鉴定出Fos/Jun(AP-1)复合物作为与该元件结合并介导GST基因基础表达和诱导表达的反式作用因子,为理解GST调控中涉及的分子过程提供了基础。已知多种细胞外刺激诱导Fos和Jun转录调节蛋白的表达,通过AP-1结合位点介导靶基因的激活。AP-1活性的调节可能解释生长因子、激素、化学致癌物、转化癌基因和细胞应激诱导剂在GST表达模式中引起的变化。最近的观察结果表明活性氧作为介导c-fos和c-jun基因激活的转导信号,目前被认为可以解释结构多样的化学试剂诱导GST基因表达的现象。本文还讨论了这些试剂可能通过各种途径诱导氧化应激条件以激活由AP-1复合物调控的GST基因表达的可能性。

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