Pugh T A, Clancy M J
Department of Biological Sciences, University of Notre Dame, IN 46556.
Mol Gen Genet. 1990 Jun;222(1):87-96. doi: 10.1007/BF00283028.
The single glucoamylase gene (SGA1) of the yeast Saccharomyces cerevisiae is expressed exclusively during the sporulation phase of the life cycle. Enzymatic studies and nucleic acid sequence comparisons have shown that the SGA1 glucoamylase is closely related to the secreted enzymes of S. cerevisiae var. diastaticus. The latter are encoded by any of three unlinked STA genes, which have been proposed to derive from the ancestral SGA1 form by genomic rearrangement. We show that the regulation of SGA1 is distinct from that of the other members of the STA gene family. SGA1 expression did not respond to STA10, the primary determinant of glucoamylase expression from STA2. Unlike STA2, SGA1 was not regulated directly by the mating type locus. Expression of SGA1 depended on the function of the MAT products in supporting sporulation and not on the formation of haploid progeny spores or on the composition of the mating type locus per se. We conclude that the STA genes acquired regulation by STA10 and MAT by the genomic rearrangements that led to their formation. This regulation is thus distinct from that of the ancestral SGA1 gene.
酿酒酵母的单葡萄糖淀粉酶基因(SGA1)仅在生命周期的孢子形成阶段表达。酶学研究和核酸序列比较表明,SGA1葡萄糖淀粉酶与酿酒酵母变种糖化酵母的分泌酶密切相关。后者由三个不连锁的STA基因中的任何一个编码,有人提出这些基因是通过基因组重排从祖先SGA1形式衍生而来的。我们表明,SGA1的调控与STA基因家族的其他成员不同。SGA1的表达对STA10没有反应,STA10是STA2中葡萄糖淀粉酶表达的主要决定因素。与STA2不同,SGA1不受交配型位点的直接调控。SGA1的表达取决于MAT产物在支持孢子形成中的功能,而不取决于单倍体后代孢子的形成或交配型位点本身的组成。我们得出结论,STA基因通过导致其形成的基因组重排获得了由STA10和MAT进行的调控。因此,这种调控与祖先SGA1基因的调控不同。