Tani Y, Kurokui T, Masaki C, Hayakawa M, Ekino K, Tomohiro Y, Miyata A, Furukawa K, Hayashida S
Fukutokucho Co., Ltd. Fukuoka, Japan.
Biosci Biotechnol Biochem. 1994 Dec;58(12):2228-31. doi: 10.1271/bbb.58.2228.
Saccharomyces cerevisiae wy2 segregated to 2 mater and 2 non-mater in relation to mating ability. The non-mater segregants behaved as the normal type of homothallic life cycle. On the other hand, the mater segregants gradually formed spores during successive subcultures, indicating that slow interconversion of mating-type happened to occur during subcultures. We termed this novel type of life cycle "delayed homothallism". The results of complementation tests with standard ho strains and introduction of a wild type HO gene showed that delayed homothallism was caused by a defective HO gene. The amino acid sequence deduced from the nucleotide sequence of the wy2 HO gene differed from the wild type HO gene in three amino acid residues. In the carboxy terminus of HO protein, there are three repeats of cysteine and histidine that are postulated to play a role in binding of HO protein to DNA. However, wy2 HO protein lacked one such repeat at residues Cys470-His475, where His was replaced by Leu.
酿酒酵母wy2在交配能力方面分离为2个母型和2个非母型。非母型分离株表现为正常类型的同宗配合生命周期。另一方面,母型分离株在连续传代培养过程中逐渐形成孢子,这表明在传代培养过程中发生了交配型的缓慢相互转变。我们将这种新型的生命周期称为“延迟同宗配合”。用标准的ho菌株进行互补试验以及导入野生型HO基因的结果表明,延迟同宗配合是由缺陷的HO基因引起的。从wy2 HO基因的核苷酸序列推导的氨基酸序列在三个氨基酸残基上与野生型HO基因不同。在HO蛋白的羧基末端,有三个半胱氨酸和组氨酸的重复序列,推测它们在HO蛋白与DNA的结合中起作用。然而,wy2 HO蛋白在残基Cys470 - His475处缺少一个这样的重复序列,其中His被Leu取代。