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哺乳动物硒蛋白硫氧还蛋白还原酶1与细胞表型、生长及信号事件的关系调控

Regulation of the mammalian selenoprotein thioredoxin reductase 1 in relation to cellular phenotype, growth, and signaling events.

作者信息

Rundlöf Anna-Klara, Arnér Elias S J

机构信息

Medical Nobel Institute for Biochemistry, Department of Medical Biochemistry and Biophysics, Karolinska Institute, SE-171 77 Stockholm, Sweden.

出版信息

Antioxid Redox Signal. 2004 Feb;6(1):41-52. doi: 10.1089/152308604771978336.

Abstract

Reactive oxygen species (ROS) are generated as toxic by-products of aerobic metabolism, but are also essential biomolecules in cell signaling. The thioredoxin (Trx) system is a major enzymatic system modulating ROS levels and is important for redox regulation of cellular function. It consists of Trx and thioredoxin reductase (TrxR), which reduces Trx using NADPH. Most, if not all, of the functions of Trx depend on the activity of TrxR. Mammalian TrxR enzymes are selenoproteins with broad substrate specificities, and alteration of cytosolic TrxR1 expression and activity is likely to be an important determinant for the control of cellular redox regulation. TrxR1 activity in cells seems to be modulated by an intricate interplay, involving a housekeeping type promoter in combination with alternative splice variants and transcriptional start sites, posttranscriptional regulation through AU-rich elements, inactivation by electrophilic agents and by itself modulating the effects of several key signaling molecules. TrxR1 activity is also intimately linked with several aspects of selenium metabolism, and hence selenoprotein function in general. Here, we summarize the current knowledge of these different levels of TrxR1 regulation in diverse cell types and in response to growth and signaling events.

摘要

活性氧(ROS)作为有氧代谢的有毒副产物产生,但也是细胞信号传导中必不可少的生物分子。硫氧还蛋白(Trx)系统是调节ROS水平的主要酶系统,对细胞功能的氧化还原调节很重要。它由Trx和硫氧还蛋白还原酶(TrxR)组成,后者利用NADPH还原Trx。Trx的大部分(如果不是全部)功能取决于TrxR的活性。哺乳动物TrxR酶是具有广泛底物特异性的硒蛋白,胞质TrxR1表达和活性的改变可能是控制细胞氧化还原调节的重要决定因素。细胞中的TrxR1活性似乎受到复杂相互作用的调节,涉及管家型启动子与可变剪接变体和转录起始位点的组合、通过富含AU元件的转录后调节、亲电试剂的失活以及其自身对几种关键信号分子作用的调节。TrxR1活性还与硒代谢的几个方面密切相关,因此总体上与硒蛋白功能密切相关。在这里,我们总结了目前关于不同细胞类型中TrxR1调节的这些不同水平以及对生长和信号事件反应的知识。

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