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酵母半乳糖系统gal3突变体中诱导物形成的机制独立于正常的半乳糖代谢和线粒体呼吸功能。

The mechanism of inducer formation in gal3 mutants of the yeast galactose system is independent of normal galactose metabolism and mitochondrial respiratory function.

作者信息

Bhat P J, Hopper J E

机构信息

Department of Biological Chemistry, Milton S. Hershey Medical Center, Pennsylvania State University, Hershey 17033.

出版信息

Genetics. 1991 Jun;128(2):233-9. doi: 10.1093/genetics/128.2.233.

Abstract

Saccharomyces cerevisiae cells defective in GAL3 function exhibit either one of two phenotypes. The gal3 mutation in an otherwise normal cell causes a 2-5-day delay in the galactose triggered induction of GAL/MEL gene transcription. This long term adaptation (LTA) phenotype has been ascribed to inefficient inducer formation. The gal3 mutation causes a noninducible phenotype for GAL/MEL transcription if cells are defective in Leloir pathway function, in glycolysis or in respiratory function. It was recently shown that multiple copies of the intact GAL1 gene partially suppress the LTA phenotype of gal3 cells. Here we report that constitutively expressed GAL1 restored gal3 mutants to the rapidly inducible phenotype characteristic of wild-type cells and conferred rapid inducibility to gal3 gal10, gal3 gal7 or gal3 rho- strains that are normally noninducible. As shown by immunoblot analysis, the GAL1-mediated induction exhibits phosphorylation of the GAL4 protein, suggesting a mechanism similar to GAL3-mediated induction. Altogether our results indicate that the deciding factor in the inducibility of the GAL/MEL genes in gal3 strains is the Gal3p-like activity of Gal1p. Based on the above we conclude that inducer formation does not require normal metabolism of galactose nor does it require mitochondrial respiratory function. These conclusions vitiate previous explanations for gal3 associated long-term adaptation and noninducible phenotypes.

摘要

在GAL3功能方面存在缺陷的酿酒酵母细胞表现出两种表型中的一种。在其他方面正常的细胞中,gal3突变会导致半乳糖触发的GAL/MEL基因转录诱导出现2 - 5天的延迟。这种长期适应(LTA)表型被归因于诱导剂形成效率低下。如果细胞在Leloir途径功能、糖酵解或呼吸功能方面存在缺陷,gal3突变会导致GAL/MEL转录出现不可诱导的表型。最近有研究表明,完整GAL1基因的多个拷贝可部分抑制gal3细胞的LTA表型。在此我们报告,组成型表达的GAL1可使gal3突变体恢复到野生型细胞特有的快速诱导表型,并赋予通常不可诱导的gal3 gal10、gal3 gal7或gal3 rho-菌株快速诱导能力。如免疫印迹分析所示,GAL1介导的诱导表现出GAL4蛋白的磷酸化,这表明其机制与GAL3介导的诱导相似。我们的结果总体表明,gal3菌株中GAL/MEL基因诱导能力的决定性因素是Gal1p的Gal3p样活性。基于上述内容,我们得出结论,诱导剂的形成既不需要半乳糖的正常代谢,也不需要线粒体呼吸功能。这些结论推翻了之前对gal3相关的长期适应和不可诱导表型的解释。

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