González Asier, Ruiz Amparo, Serrano Raquel, Ariño Joaquín, Casamayor Antonio
Departament de Bioquímica i Biologia Molecular, Edificio V, Universitat Autònoma de Barcelona, 08193 Cerdanyola del Vallès, Barcelona, Catalonia, Spain.
J Biol Chem. 2006 Nov 17;281(46):35057-69. doi: 10.1074/jbc.M607919200. Epub 2006 Sep 14.
Type 2C protein phosphatases are encoded in Saccharomyces cerevisiae by several related genes (PTC1-5 and PTC7). To gain insight into the functions attributable to specific members of this gene family, we have investigated the transcriptional profiles of ptc1-5 mutants. Two main patterns were obtained as follows: the one generated by the ptc1 mutation and the one resulting from the lack of Ptc2-5. ptc4 and ptc5 profiles were quite similar, whereas that of ptc2 was less related to this group. Mutation of PTC1 resulted in increased expression of numerous genes that are also induced by cell wall damage, such as YKL161c, SED1, or CRH1, as well as in higher amounts of active Slt2 mitogen-activated protein kinase, indicating that lack of the phosphatase activates the cell wall integrity pathway. ptc1 cells were even more sensitive than slt2 mutants to a number of cell wall-damaging agents, and both mutations had additive effects. The sensitivity of ptc1 cells was not dependent on Hog1. Besides these phenotypes, we observed that calcineurin was hyperactivated in ptc1 cells, which were also highly sensitive to calcium ions, heavy metals, and alkaline pH, and exhibited a random haploid budding pattern. Remarkably, many of these traits are found in certain mutants with impaired vacuolar function. As ptc1 cells also display fragmented vacuoles, we hypothesized that lack of Ptc1 would primarily cause vacuolar malfunction, from which other phenotypes would derive. In agreement with this scenario, overexpression of VPS73, a gene of unknown function involved in vacuolar protein sorting, largely rescues not only vacuolar fragmentation but also sensitivity to cell wall damage, high calcium, alkaline pH, as well as other ptc1-specific phenotypes.
2C型蛋白磷酸酶在酿酒酵母中由几个相关基因(PTC1 - 5和PTC7)编码。为了深入了解该基因家族特定成员的功能,我们研究了ptc1 - 5突变体的转录谱。得到了两种主要模式如下:一种由ptc1突变产生,另一种由缺乏Ptc2 - 5导致。ptc4和ptc5的谱非常相似,而ptc2的谱与该组的相关性较小。PTC1的突变导致许多也由细胞壁损伤诱导的基因表达增加,如YKL161c、SED1或CRH1,以及更高量的活性Slt2丝裂原活化蛋白激酶,表明磷酸酶的缺乏激活了细胞壁完整性途径。ptc1细胞比slt2突变体对多种细胞壁损伤剂更敏感,并且两种突变具有累加效应。ptc1细胞的敏感性不依赖于Hog1。除了这些表型外,我们观察到钙调神经磷酸酶在ptc1细胞中过度活化,这些细胞对钙离子、重金属和碱性pH也高度敏感,并表现出随机的单倍体出芽模式。值得注意的是,在某些液泡功能受损的突变体中也发现了许多这些特征。由于ptc1细胞也显示出碎片化的液泡,我们推测缺乏Ptc1主要会导致液泡功能障碍,其他表型将由此产生。与这种情况一致,VPS73(一个参与液泡蛋白分选的功能未知的基因)的过表达不仅在很大程度上挽救了液泡碎片化,还挽救了对细胞壁损伤、高钙、碱性pH以及其他ptc1特异性表型的敏感性。