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GCN4的翻译调控与酵母的一般氨基酸控制

Translational regulation of GCN4 and the general amino acid control of yeast.

作者信息

Hinnebusch Alan G

机构信息

Laboratory of Gene Regulation and Development, National Institute of Child Health and Human Development, Bethesda, Maryland 20892, USA.

出版信息

Annu Rev Microbiol. 2005;59:407-50. doi: 10.1146/annurev.micro.59.031805.133833.

Abstract

Cells reprogram gene expression in response to environmental changes by mobilizing transcriptional activators. The activator protein Gcn4 of the yeast Saccharomyces cerevisiae is regulated by an intricate translational control mechanism, which is the primary focus of this review, and also by the modulation of its stability in response to nutrient availability. Translation of GCN4 mRNA is derepressed in amino acid-deprived cells, leading to transcriptional induction of nearly all genes encoding amino acid biosynthetic enzymes. The trans-acting proteins that control GCN4 translation have general functions in the initiation of protein synthesis, or regulate the activities of initiation factors, so that the molecular events that induce GCN4 translation also reduce the rate of general protein synthesis. This dual regulatory response enables cells to limit their consumption of amino acids while diverting resources into amino acid biosynthesis in nutrient-poor environments. Remarkably, mammalian cells use the same strategy to downregulate protein synthesis while inducing transcriptional activators of stress-response genes under various stressful conditions, including amino acid starvation.

摘要

细胞通过动员转录激活因子来重新编程基因表达,以应对环境变化。酿酒酵母的激活蛋白Gcn4受一种复杂的翻译控制机制调节,这是本综述的主要关注点,并且还受其稳定性响应营养可用性的调节。在氨基酸缺乏的细胞中,GCN4 mRNA的翻译被解除抑制,导致几乎所有编码氨基酸生物合成酶的基因的转录诱导。控制Gcn4翻译的反式作用蛋白在蛋白质合成起始中具有一般功能,或调节起始因子的活性,因此诱导Gcn4翻译的分子事件也会降低一般蛋白质合成的速率。这种双重调节反应使细胞能够在营养匮乏的环境中限制氨基酸的消耗,同时将资源转移到氨基酸生物合成中。值得注意的是,哺乳动物细胞在包括氨基酸饥饿在内的各种应激条件下,使用相同的策略来下调蛋白质合成,同时诱导应激反应基因的转录激活因子。

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