Nigavekar Shraddha S, Tan Yves S H, Cannon John F
Department of Molecular Microbiology and Immunology, University of Missouri, Columbia 65212, USA.
Arch Biochem Biophys. 2002 Aug 1;404(1):71-9. doi: 10.1016/s0003-9861(02)00231-x.
Regulation of Glc7 type 1 protein phosphatase stability and activity was studied in budding yeast. We found that the Glc7 protein has a half-life of over 180min, which is sufficient for several generations. Glc7 protein stability was constant during the cell cycle and in batch culture growth. Furthermore, deletion of regulatory subunit Gac1, Reg1, Reg2, Sds22, or Glc8 had no influence on Glc7 protein half-life. The activity of Glc7 assayed as okadaic acid-resistant phosphorylase phosphatase activity was constant during the cell cycle. Deletion of the aforementioned regulatory subunits revealed that only Glc8 deletion had a significant effect in reducing Glc7 activity. Glc7 activity was induced during stationary phase in a Glc8-dependent manner. In addition, extracellular glucose repressed the induction of Glc7 activity. These results are consistent with glucose repression of Glc8 expression and favor the role of Glc8 as a major Glc7 activator.
在芽殖酵母中研究了Glc7 1型蛋白磷酸酶的稳定性和活性调控。我们发现Glc7蛋白的半衰期超过180分钟,这足以维持几代细胞。Glc7蛋白稳定性在细胞周期和分批培养生长过程中保持恒定。此外,缺失调节亚基Gac1、Reg1、Reg2、Sds22或Glc8对Glc7蛋白半衰期没有影响。以冈田酸抗性磷酸化酶磷酸酶活性测定的Glc7活性在细胞周期中保持恒定。缺失上述调节亚基表明,只有缺失Glc8对降低Glc7活性有显著影响。Glc7活性在稳定期以Glc8依赖的方式被诱导。此外,细胞外葡萄糖抑制Glc7活性的诱导。这些结果与葡萄糖对Glc8表达的抑制作用一致,并支持Glc8作为主要Glc7激活剂的作用。