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酵母中GAL4激活基因的调控表达为葡萄糖阻遏提供了一个灵敏的遗传开关。

Regulated expression of the GAL4 activator gene in yeast provides a sensitive genetic switch for glucose repression.

作者信息

Griggs D W, Johnston M

机构信息

Department of Genetics, Washington University School of Medicine, St. Louis, MO 63110.

出版信息

Proc Natl Acad Sci U S A. 1991 Oct 1;88(19):8597-601. doi: 10.1073/pnas.88.19.8597.

Abstract

Glucose (catabolite) repression is mediated by multiple mechanisms that combine to regulate transcription of the GAL genes over at least a thousandfold range. We have determined that this is due predominantly to modest glucose repression (4- to 7-fold) of expression of GAL4, the gene encoding the transcriptional activator of the GAL genes. GAL4 regulation is affected by mutations in several genes previously implicated in the glucose repression pathway; it is not dependent on GAL4 or GAL80 protein function. GAL4 promoter sequences that mediate glucose repression were found to lie downstream of positively acting elements that may be "TATA boxes." Two nearly identical sequences (10/12 base pairs) in this region that may be binding sites for the MIG1 protein were identified as functional glucose-control elements. A 4-base-pair insertion in one of these sites causes constitutive GAL4 synthesis and leads to substantial relief (50-fold) of glucose repression of GAL1 expression. Furthermore, promoter deletions that modestly reduce GAL4 expression, and therefore presumably the amount of GAL4 protein synthesized, cause much greater reductions in GAL1 expression. These results suggest that GAL4 works synergistically to activate GAL1 expression. Thus, glucose repression of GAL1 expression is due largely to a relatively small reduction of GAL4 protein levels caused by reduced GAL4 transcription. This illustrates how modest regulation of a weakly expressed regulatory gene can act as a sensitive genetic switch to produce greatly amplified responses to environmental changes.

摘要

葡萄糖(分解代谢物)阻遏是由多种机制介导的,这些机制共同作用,在至少一千倍的范围内调节GAL基因的转录。我们已经确定,这主要是由于GAL4(编码GAL基因转录激活因子的基因)表达受到适度的葡萄糖阻遏(4至7倍)。GAL4的调控受到先前与葡萄糖阻遏途径相关的几个基因中的突变影响;它不依赖于GAL4或GAL80蛋白的功能。发现介导葡萄糖阻遏的GAL4启动子序列位于可能是“TATA盒”的正向作用元件的下游。在该区域中两个几乎相同的序列(10/12个碱基对)可能是MIG1蛋白的结合位点,被鉴定为功能性葡萄糖控制元件。其中一个位点的4个碱基对插入导致GAL4组成型合成,并导致GAL1表达的葡萄糖阻遏得到显著缓解(50倍)。此外,适度降低GAL4表达的启动子缺失,因此推测合成的GAL4蛋白量减少,会导致GAL1表达更大程度的降低。这些结果表明,GAL4协同作用以激活GAL1表达。因此,GAL1表达的葡萄糖阻遏很大程度上是由于GAL4转录减少导致GAL4蛋白水平相对较小的降低。这说明了对弱表达调控基因的适度调控如何作为一个敏感的遗传开关,对环境变化产生大幅放大的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa84/52556/3a318f5a1e6e/pnas01069-0327-a.jpg

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