Pedelini Leda, Marquina Maribel, Ariño Joaquin, Casamayor Antonio, Sanz Libia, Bollen Mathieu, Sanz Pascual, Garcia-Gimeno Maria Adelaida
Instituto de Biomedicina de Valencia, Consejo Superior de Investigaciones Científicas (CSIC), Jaime Roig 11, 46010 Valencia, Spain.
J Biol Chem. 2007 Feb 2;282(5):3282-92. doi: 10.1074/jbc.M607171200. Epub 2006 Dec 1.
We have recently characterized Ypi1 as an inhibitory subunit of yeast Glc7 PP1 protein phosphatase. In this work we demonstrate that Ypi1 forms a complex with Glc7 and Sds22, another Glc7 regulatory subunit that targets the phosphatase to substrates involved in cell cycle control. Interestingly, the combination of equimolar amounts of Ypi1 and Sds22 leads to an almost full inhibition of Glc7 activity. Because YPI1 is an essential gene, we have constructed conditional mutants that demonstrate that depletion of Ypi1 leads to alteration of nuclear localization of Glc7 and cell growth arrest in mid-mitosis with aberrant mitotic spindle. These phenotypes mimic those produced upon inactivation of Sds22. The fact that progressive depletion of either Ypi1 or Sds22 resulted in similar physiological phenotypes and that both proteins inhibit the phosphatase activity of Glc7 strongly suggest a common role of these two proteins in regulating Glc7 nuclear localization and function.
我们最近将Ypi1鉴定为酵母Glc7蛋白磷酸酶1(PP1)的抑制亚基。在这项工作中,我们证明Ypi1与Glc7和Sds22形成复合物,Sds22是Glc7的另一个调节亚基,可将磷酸酶靶向参与细胞周期控制的底物。有趣的是,等摩尔量的Ypi1和Sds22组合几乎完全抑制了Glc7的活性。由于YPI1是一个必需基因,我们构建了条件突变体,结果表明Ypi1的缺失会导致Glc7的核定位改变,并使细胞在有丝分裂中期因异常有丝分裂纺锤体而生长停滞。这些表型与Sds22失活时产生的表型相似。Ypi1或Sds22的逐步缺失导致相似的生理表型,并且这两种蛋白都强烈抑制Glc7的磷酸酶活性,这一事实强烈表明这两种蛋白在调节Glc7核定位和功能方面具有共同作用。