Chang Y S, Dubin R A, Perkins E, Forrest D, Michels C A, Needleman R B
Department of Biochemistry, Wayne State University School of Medicine, Detroit, MI 48201.
Curr Genet. 1988 Sep;14(3):201-9. doi: 10.1007/BF00376740.
Genetic analysis of the MAL6 locus has previously yielded mal6 mutants which fall into a single complementation group and which are noninducible for maltase and maltose permease. However, the strains used in these studies contained additional partially functional copies of MAL1 (referred to as MAL1g) and MAL3 (referred to as MAL3g). Using a strain lacking MALg genes, we have isolated two classes of mutants and these classes correspond to mutations in MAL63 and MAL61, two genes of the MAL6 complex. Disruptions of MAL63 are noninducible for maltase and maltose permease and for their corresponding mRNAs. The mal6 mutants are shown to map to MAL63. Inducer exclusion as a cause of the noninducible phenotype of the mal63 mutations has been eliminated by constructing a mal63 mutant in a strain constitutive for maltose permease; the strain remains noninducible. These results rigorously demonstrate that MAL63 is a regulatory gene which plays a positive role in the regulation of maltose fermentation.
先前对MAL6位点的遗传分析产生了mal6突变体,这些突变体属于单一互补群,且麦芽糖酶和麦芽糖通透酶不可诱导。然而,这些研究中使用的菌株含有MAL1(称为MAL1g)和MAL3(称为MAL3g)的其他部分功能拷贝。使用缺乏MALg基因的菌株,我们分离出了两类突变体,这些类别对应于MAL6复合体的两个基因MAL63和MAL61中的突变。MAL63的破坏导致麦芽糖酶、麦芽糖通透酶及其相应mRNA不可诱导。已证明mal6突变体定位于MAL63。通过在麦芽糖通透酶组成型的菌株中构建mal63突变体,排除了诱导物排除作为mal63突变不可诱导表型原因的可能性;该菌株仍然不可诱导。这些结果严格证明MAL63是一个调控基因,在麦芽糖发酵调控中起积极作用。