Feng Z H, Wilson S E, Peng Z Y, Schlender K K, Reimann E M, Trumbly R J
Department of Biochemistry and Molecular Biology, Medical College of Ohio, Toledo 43699-0008.
J Biol Chem. 1991 Dec 15;266(35):23796-801.
The glc7 mutant of the yeast Saccharomyces cerevisiae does not accumulate glycogen due to a defect in glycogen synthase activation (Peng, Z., Trumbly, R. J., and Reimann, E.M. (1990) J. Biol. Chem. 265, 13871-13877) whereas wild-type strains accumulate glycogen as the cell cultures approach stationary phase. We isolated the GLC7 gene by complementation of the defect in glycogen accumulation and found that the GLC7 gene is the same as the DIS2S1 gene (Ohkura, H., Kinoshita, N., Miyatani, S., Toda, T., and Yanagida, M. (1989) Cell 57, 997-1007). The protein product predicted by the GLC7 DNA sequence has a sequence that is 81% identical with rabbit protein phosphatase 1 catalytic subunit. Protein phosphatase 1 activity was greatly diminished in extracts from glc7 mutant cells. Two forms of protein phosphatase 1 were identified after chromatography of extracts on DEAE-cellulose. Both forms were diminished in the glc7 mutant and were partly restored by transformation with a plasmid carrying the GLC7 gene. Southern blots indicate the presence of a single copy of GLC7 in S. cerevisiae, and gene disruption experiments showed that the GLC7 gene is essential for cell viability. The GLC7 mRNA was identified as a 1.4-kilobase RNA that increases 4-fold at the end of exponential growth in wild-type cells, suggesting that activation of glycogen synthase is mediated by increased expression of protein phosphatase 1 as cells reach stationary phase.
由于糖原合酶激活存在缺陷,酿酒酵母的glc7突变体不会积累糖原(Peng, Z., Trumbly, R. J., and Reimann, E.M. (1990) J. Biol. Chem. 265, 13871 - 13877),而野生型菌株在细胞培养接近稳定期时会积累糖原。我们通过互补糖原积累缺陷分离出了GLC7基因,发现GLC7基因与DIS2S1基因相同(Ohkura, H., Kinoshita, N., Miyatani, S., Toda, T., and Yanagida, M. (1989) Cell 57, 997 - 1007)。GLC7 DNA序列预测的蛋白质产物与兔蛋白磷酸酶1催化亚基有81%的序列同一性。glc7突变体细胞提取物中的蛋白磷酸酶1活性大大降低。在DEAE - 纤维素柱上对提取物进行层析后,鉴定出了两种形式的蛋白磷酸酶1。在glc7突变体中这两种形式都减少了,并且通过用携带GLC7基因的质粒转化部分得以恢复。Southern杂交表明酿酒酵母中存在单个拷贝的GLC7,基因破坏实验表明GLC7基因对细胞活力至关重要。GLC7 mRNA被鉴定为一种1.4千碱基的RNA,在野生型细胞指数生长末期增加4倍,这表明随着细胞进入稳定期,糖原合酶的激活是由蛋白磷酸酶1表达增加介导的。