Blank T E, Woods M P, Lebo C M, Xin P, Hopper J E
Department of Biochemistry and Molecular Biology, Pennsylvania State University College of Medicine, Hershey 17033, USA.
Mol Cell Biol. 1997 May;17(5):2566-75. doi: 10.1128/MCB.17.5.2566.
Gal4p-mediated activation of galactose gene expression in Saccharomyces cerevisiae normally requires both galactose and the activity of Gal3p. Recent evidence suggests that in cells exposed to galactose, Gal3p binds to and inhibits Ga180p, an inhibitor of the transcriptional activator Gal4p. Here, we report on the isolation and characterization of novel mutant forms of Gal3p that can induce Gal4p activity independently of galactose. Five mutant GAL3(c) alleles were isolated by using a selection demanding constitutive expression of a GAL1 promoter-driven HIS3 gene. This constitutive effect is not due to overproduction of Gal3p. The level of constitutive GAL gene expression in cells bearing different GAL3(c) alleles varies over more than a fourfold range and increases in response to galactose. Utilizing glutathione S-transferase-Gal3p fusions, we determined that the mutant Gal3p proteins show altered Gal80p-binding characteristics. The Gal3p mutant proteins differ in their requirements for galactose and ATP for their Gal80p-binding ability. The behavior of the novel Gal3p proteins provides strong support for a model wherein galactose causes an alteration in Gal3p that increases either its ability to bind to Gal80p or its access to Gal80p. With the Gal3p-Gal80p interaction being a critical step in the induction process, the Gal3p proteins constitute an important new reagent for studying the induction mechanism through both in vivo and in vitro methods.
在酿酒酵母中,Gal4p介导的半乳糖基因表达激活通常既需要半乳糖,也需要Gal3p的活性。最近的证据表明,在暴露于半乳糖的细胞中,Gal3p与转录激活因子Gal4p的抑制剂Gal80p结合并抑制它。在此,我们报告了新型Gal3p突变体形式的分离和特性,这些突变体能够在不依赖半乳糖的情况下诱导Gal4p活性。通过筛选要求组成型表达由GAL1启动子驱动的HIS3基因,分离出了五个突变的GAL3(c)等位基因。这种组成型效应并非由于Gal3p的过量产生。携带不同GAL3(c)等位基因的细胞中组成型GAL基因表达水平在四倍多的范围内变化,并对半乳糖有反应性增加。利用谷胱甘肽S-转移酶-Gal3p融合蛋白,我们确定突变的Gal3p蛋白表现出改变的Gal80p结合特性。Gal3p突变蛋白在结合Gal80p的能力上对半乳糖和ATP的需求不同。新型Gal3p蛋白的行为为一个模型提供了有力支持,即半乳糖会导致Gal3p发生改变,从而增加其与Gal80p结合的能力或与Gal80p的接触机会。由于Gal3p-Gal80p相互作用是诱导过程中的关键步骤,Gal3p蛋白构成了一种重要的新试剂,可通过体内和体外方法研究诱导机制。