Sakumoto N, Yamashita H, Mukai Y, Kaneko Y, Harashima S
Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Biochem Biophys Res Commun. 2001 Nov 30;289(2):608-15. doi: 10.1006/bbrc.2001.6021.
The Saccharomyces cerevisiae dual-specificity protein phosphatase Yvh1p, identified as vaccinia VH1 homolog, regulates cell growth, sporulation, and glycogen accumulation. Transcription of YVH1 is induced by lowering temperature and nitrogen starvation. Using the yeast two-hybrid system, we searched for Yvh1p-interacting proteins, including substrates and regulatory subunits of Yvh1p. Two clones were identified encoding a segment of YPH1 (yeast pescadillo homolog), which is essential for cell cycle progression in yeast. Deletion analysis revealed that the catalytic domain of Yvh1p and the BRCT domain of Yph1p are sufficient for this interaction. We found that the multicopy of YPH1 not only suppressed slow growth but also decreased IME2 expression in the yvh1 disruptant. These observations indicate that Yph1p plays a role in sporulation in addition to cell cycle progression, and is a candidate for a substrate or a regulatory subunit of Yvh1p.
酿酒酵母双特异性蛋白磷酸酶Yvh1p,被鉴定为痘苗病毒VH1同源物,可调节细胞生长、孢子形成和糖原积累。YVH1的转录由降低温度和氮饥饿诱导。利用酵母双杂交系统,我们寻找与Yvh1p相互作用的蛋白质,包括Yvh1p的底物和调节亚基。鉴定出两个克隆,它们编码YPH1(酵母pescadillo同源物)的一段序列,该序列对酵母细胞周期进程至关重要。缺失分析表明,Yvh1p的催化结构域和Yph1p的BRCT结构域足以实现这种相互作用。我们发现YPH1的多拷贝不仅抑制了生长缓慢,还降低了yvh1缺失突变体中IME2的表达。这些观察结果表明,Yph1p除了在细胞周期进程中发挥作用外,还在孢子形成中发挥作用,并且是Yvh1p的底物或调节亚基的候选者。