Erickson J R, Johnston M
Department of Genetics, Washington University School of Medicine, St. Louis, Missouri 63110.
Genetics. 1993 Nov;135(3):655-64. doi: 10.1093/genetics/135.3.655.
Expression of the GAL genes of Saccharomyces cerevisiae is subject to glucose repression, a global regulatory mechanism that requires several gene products. We have isolated GAL83, one of these genes required for glucose repression. The sequence of the predicted Gal83 protein is homologous to two other yeast proteins, Sip1p and Sip2p, which are known to interact with the SNF1 gene product, a protein kinase required for expression of the GAL genes. High-copy clones of SIP1 and SIP2 cross-complement the GAL83-2000 mutation (as well as GAL82-1, a mutation in another gene involved in glucose repression), suggesting that these four genes may perform similar functions in glucose repression. Consistent with this hypothesis, a gal83 null mutation does not affect glucose repression, and only dominant or partially dominant mutations exist in GAL83 (and GAL82). Two other observations were made that suggests that GAL83 functions interdependently with GAL82 and REG1 (another gene involved in glucose repression) to effect glucose repression: 1) REG1 on a low-copy plasmid cross-complements GAL82-1 and GAL83-2000 mutations, and 2) all pairwise combinations of reg1, GAL82-1 and GAL83-2000 fail to complement one another. Such unlinked noncomplementation suggests that Gal83p, Gal82p and Reg1p may interact with one another. Possible roles for GAL83, GAL82 and REG1 are discussed in relation to SNF1, SIP1 and SIP2.
酿酒酵母GAL基因的表达受到葡萄糖阻遏的调控,这是一种需要多种基因产物参与的全局调控机制。我们分离出了GAL83,它是葡萄糖阻遏所需的基因之一。预测的Gal83蛋白序列与另外两种酵母蛋白Sip1p和Sip2p同源,已知这两种蛋白与SNF1基因产物相互作用,SNF1是一种蛋白激酶,对于GAL基因的表达是必需的。SIP1和SIP2的高拷贝克隆可交叉互补GAL83 - 2000突变(以及GAL82 - 1,另一个参与葡萄糖阻遏的基因中的突变),这表明这四个基因在葡萄糖阻遏中可能执行相似的功能。与该假设一致,gal83缺失突变不影响葡萄糖阻遏,并且GAL83(和GAL82)中仅存在显性或部分显性突变。还进行了另外两项观察,表明GAL83与GAL82和REG1(另一个参与葡萄糖阻遏的基因)相互依赖发挥作用以实现葡萄糖阻遏:1)低拷贝质粒上的REG1可交叉互补GAL82 - 1和GAL83 - 2000突变,2)reg1、GAL82 - 1和GAL83 - 2000的所有两两组合均不能相互互补。这种非连锁的非互补现象表明Gal83p、Gal82p和Reg1p可能相互作用。文中讨论了GAL83、GAL82和REG1相对于SNF1、SIP1和SIP2可能的作用。