Ashburner B P, Lopes J M
Program in Molecular Biology, Loyola University of Chicago, Maywood, IL 60153, USA.
Proc Natl Acad Sci U S A. 1995 Oct 10;92(21):9722-6. doi: 10.1073/pnas.92.21.9722.
Transcription of phospholipid biosynthetic genes in the yeast Saccharomyces cerevisiae is maximally derepressed when cells are grown in the absence of inositol and repressed when the cells are grown in its presence. We have previously suggested that this response to inositol may be dictated by regulating transcription of the cognate activator gene, INO2. However, it was also known that cells which harbor a mutant opi1 allele express constitutively derepressed levels of target genes (INO1 and CHO1), implicating the OPI1 negative regulatory gene in the response to inositol. These observations suggested that the response to inositol may involve both regulation of INO2 transcription as well as OPI1-mediated repression. We investigated these possibilities by examining the effect of inositol on target gene expression in a strain containing the INO2 gene under control of the GAL1 promoter. In this strain, transcription of the INO2 gene was regulated in response to galactose but was insensitive to inositol. The expression of the INO1 and CHO1 target genes was still responsive to inositol even though expression of the INO2 gene was unresponsive. However, the level of expression of the INO1 and CHO1 target genes correlated with the level of INO2 transcription. Furthermore, the effect of inositol on target gene expression was eliminated by deleting the OPI1 gene in the GAL1-INO2-containing strain. These data suggest that the OPI1 gene product is the primary target (sensor) of the inositol response and that derepression of INO2 transcription determines the degree of expression of the target genes.
在酿酒酵母中,当细胞在缺乏肌醇的情况下生长时,磷脂生物合成基因的转录受到最大程度的去抑制,而当细胞在有肌醇的情况下生长时则受到抑制。我们之前曾提出,这种对肌醇的反应可能是通过调节同源激活基因INO2的转录来决定的。然而,也已知携带opi1突变等位基因的细胞组成性地表达去抑制水平的靶基因(INO1和CHO1),这表明OPI1负调控基因参与了对肌醇的反应。这些观察结果表明,对肌醇的反应可能涉及INO2转录的调节以及OPI1介导的抑制作用。我们通过研究肌醇对含有受GAL1启动子控制的INO2基因的菌株中靶基因表达的影响来探究这些可能性。在该菌株中,INO2基因的转录受半乳糖调节,但对肌醇不敏感。尽管INO2基因的表达无反应,但INO1和CHO1靶基因的表达仍然对肌醇有反应。然而,INO1和CHO1靶基因的表达水平与INO2转录水平相关。此外,通过在含GAL1 - INO2的菌株中删除OPI1基因,消除了肌醇对靶基因表达的影响。这些数据表明,OPI1基因产物是肌醇反应的主要靶点(传感器),并且INO2转录的去抑制决定了靶基因的表达程度。