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酿酒酵母MAL1位点的突变分析:三个基因的鉴定与功能表征

Mutational analysis of the MAL1 locus of Saccharomyces: identification and functional characterization of three genes.

作者信息

Cohen J D, Goldenthal M J, Buchferer B, Marmur J

出版信息

Mol Gen Genet. 1984;196(2):208-16. doi: 10.1007/BF00328052.

Abstract

Fermentation of maltose by Saccharomyces strains depends on the presence of any one of five unlinked MAL loci (MAL1, MAL2, MAL3, MAL4 or MAL6). Earlier mutational analyses of MAL2 and MAL6 containing strains have identified a single complementation group at each of these two loci. However complementation analysis between naturally occurring Mal- Saccharomyces strains isolated from the wild demonstrated the presence of two complementation groups (designated MALp and MALg) at the MAL1, MAL3 and MAL6 loci. The available evidence suggests that the MALp gene is functionally equivalent to the complementation group identified by mutational analysis at the MAL6 locus and that this gene encodes a protein involved in the regulation of the coordinate induction of both maltase and maltose permease synthesis. In this paper we report the isolation, in a well characterized MAL1 strain, of 47 mutants unable to ferment maltose. All the mutants, with one exception, map at the MAL1 locus. These mal1 mutants, except for one, are recessive to MAL1 and fall into two major complementation groups. Evidence is presented that these two classes of mutants identify both a gene involved in the regulation of maltose identify both a gene involved in the regulation of maltose fermentation (MAL1R) and a gene involved in maltose transport (MAL1T). We also report here the isolation of a temperature sensitive maltose nonfermenting mutant mapping at the MAL1 locus identifying a third gene (MAL1S) at this locus. The maltase synthesized by this mutant, when assayed in cell-free extracts, is significantly more thermolabile than the wild type enzyme.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

酿酒酵母菌株对麦芽糖的发酵取决于五个不连锁的MAL基因座(MAL1、MAL2、MAL3、MAL4或MAL6)中任意一个的存在。早期对含有MAL2和MAL6的菌株进行的突变分析已在这两个基因座中的每一个上鉴定出一个单一的互补群。然而,从野生环境中分离出的天然MAL-酿酒酵母菌株之间的互补分析表明,在MAL1、MAL3和MAL6基因座上存在两个互补群(命名为MALp和MALg)。现有证据表明,MALp基因在功能上等同于通过对MAL6基因座进行突变分析所鉴定的互补群,并且该基因编码一种参与麦芽糖酶和麦芽糖通透酶合成协同诱导调控的蛋白质。在本文中,我们报告了在一个特征明确的MAL1菌株中分离出47个不能发酵麦芽糖的突变体。除了一个例外,所有突变体都定位在MAL1基因座上。这些mal1突变体,除了一个之外,对MAL1是隐性的,并分为两个主要的互补群。有证据表明,这两类突变体分别鉴定出一个参与麦芽糖发酵调控的基因(MAL1R)和一个参与麦芽糖转运的基因(MAL1T)。我们还在此报告了在MAL1基因座上分离出一个温度敏感型麦芽糖非发酵突变体,该突变体鉴定出该基因座上的第三个基因(MAL1S)。当在无细胞提取物中进行检测时,该突变体合成的麦芽糖酶比野生型酶对热更不稳定。(摘要截短于250字)

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