Takada Hirofumi, Nishimura Masayuki, Asayama Yuta, Mannse Yoshiaki, Ishiwata Shunji, Kita Ayako, Doi Akira, Nishida Aiko, Kai Naoyuki, Moriuchi Sayako, Tohda Hideki, Giga-Hama Yuko, Kuno Takayoshi, Sugiura Reiko
Laboratory of Molecular Pharmacogenomics, School of Pharmaceutical Sciences, Kinki University, Higashi-Osaka, 577-8502, Japan.
Mol Biol Cell. 2007 Dec;18(12):4794-802. doi: 10.1091/mbc.e07-03-0282. Epub 2007 Sep 19.
In fission yeast, knockout of the calcineurin gene resulted in hypersensitivity to Cl(-), and the overexpression of pmp1(+) encoding a dual-specificity phosphatase for Pmk1 mitogen-activated protein kinase (MAPK) or the knockout of the components of the Pmk1 pathway complemented the Cl(-) hypersensitivity of calcineurin deletion. Here, we showed that the overexpression of ptc1(+) and ptc3(+), both encoding type 2C protein phosphatase (PP2C), previously known to inactivate the Wis1-Spc1-Atf1 stress-activated MAPK signaling pathway, suppressed the Cl(-) hypersensitivity of calcineurin deletion. We also demonstrated that the mRNA levels of these two PP2Cs and pyp2(+), another negative regulator of Spc1, are dependent on Pmk1. Notably, the deletion of Atf1, but not that of Spc1, displayed hypersensitivity to the cell wall-damaging agents and also suppressed the Cl(-) hypersensitivity of calcineurin deletion, both of which are characteristic phenotypes shared by the mutation of the components of the Pmk1 MAPK pathway. Moreover, micafungin treatment induced Pmk1 hyperactivation that resulted in Atf1 hyperphosphorylation. Together, our results suggest that PP2C is involved in a negative feedback loop of the Pmk1 signaling, and results also demonstrate that Atf1 is a key component of the cell integrity signaling downstream of Pmk1 MAPK.
在裂殖酵母中,钙调神经磷酸酶基因的敲除导致对Cl(-)超敏,而编码Pmk1丝裂原活化蛋白激酶(MAPK)双特异性磷酸酶的pmp1(+)的过表达或Pmk1途径组分的敲除可弥补钙调神经磷酸酶缺失引起的Cl(-)超敏。在此,我们表明,编码2C型蛋白磷酸酶(PP2C)的ptc1(+)和ptc3(+)的过表达可抑制钙调神经磷酸酶缺失引起的Cl(-)超敏,PP2C此前已知可使Wis1-Spc1-Atf1应激激活的MAPK信号通路失活。我们还证明,这两种PP2C和Spc1的另一种负调节因子pyp2(+)的mRNA水平依赖于Pmk1。值得注意的是,Atf1的缺失而非Spc1的缺失表现出对细胞壁损伤剂超敏,并且也抑制了钙调神经磷酸酶缺失引起的Cl(-)超敏,这两种都是Pmk1 MAPK途径组分突变共有的特征性表型。此外,米卡芬净处理诱导Pmk1过度激活,导致Atf1过度磷酸化。总之,我们的结果表明PP2C参与Pmk1信号的负反馈回路,结果还证明Atf1是Pmk1 MAPK下游细胞完整性信号的关键组分。