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多种全局调控因子控制酵母中HIS4基因的转录。

Multiple global regulators control HIS4 transcription in yeast.

作者信息

Arndt K T, Styles C, Fink G R

出版信息

Science. 1987 Aug 21;237(4817):874-80. doi: 10.1126/science.3303332.

Abstract

Gene expression is dependent on the interaction of DNA binding factors with distinct promoter control elements to activate RNA synthesis. The expression of the HIS4 gene in yeast is under two different control systems. One of these, general amino acid control, involves a DNA binding protein, GCN4, that stimulates transcription in response to amino acid starvation by binding to 5'-TGACTC-3' sequences in the HIS4 promoter region. A second system, the basal level control, stimulates HIS4 transcription in the absence of amino acid starvation. The basal level transcription of the HIS4 gene is under the control of two genes, BAS1 and BAS2, which are also required for the control of purine biosynthesis. In addition, BAS2 is required for the utilization of organic phosphates in the growth medium. Genetic mapping and DNA sequence analysis show that BAS2 is PHO2, a gene previously identified as a regulator of phosphate metabolism. Direct biochemical analysis shows that the BAS2 gene encodes a protein that binds to both the HIS4 and PHO5 promoters. The involvement of a single DNA binding protein in the regulation of histidine, adenine, and phosphate metabolism suggests that yeast may use a few key DNA binding proteins to coordinate the regulation of diverse metabolic pathways.

摘要

基因表达依赖于DNA结合因子与不同启动子控制元件的相互作用,以激活RNA合成。酵母中HIS4基因的表达受两种不同控制系统的调控。其中之一是一般氨基酸控制,涉及一种DNA结合蛋白GCN4,它通过与HIS4启动子区域的5'-TGACTC-3'序列结合,在氨基酸饥饿时刺激转录。第二个系统是基础水平控制,在不存在氨基酸饥饿的情况下刺激HIS4转录。HIS4基因的基础水平转录受两个基因BAS1和BAS2的控制,这两个基因也是嘌呤生物合成调控所必需的。此外,BAS2是生长培养基中有机磷酸盐利用所必需的。遗传图谱和DNA序列分析表明,BAS2是PHO2,一个先前被鉴定为磷酸盐代谢调节因子的基因。直接生化分析表明,BAS2基因编码一种与HIS4和PHO5启动子都结合的蛋白质。单个DNA结合蛋白参与组氨酸、腺嘌呤和磷酸盐代谢的调控,这表明酵母可能使用一些关键的DNA结合蛋白来协调不同代谢途径的调控。

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