首页> 外文期刊>Eukaryotic cell >Cdc37p Is Required for Stress-Induced High-Osmolarity Glycerol and Protein Kinase C Mitogen-Activated Protein Kinase Pathway Functionality by Interaction with Hog1p and Slt2p (Mpk1p)
【24h】

Cdc37p Is Required for Stress-Induced High-Osmolarity Glycerol and Protein Kinase C Mitogen-Activated Protein Kinase Pathway Functionality by Interaction with Hog1p and Slt2p (Mpk1p)

机译:通过与Hog1p和Slt2p(Mpk1p)相互作用,应力诱导的高渗透压甘油和蛋白激酶C丝裂素活化的蛋白激酶途径功能需要Cdc37p。

获取原文
           

摘要

The yeast Saccharomyces cerevisiae utilizes rapidly responding mitogen-activated protein kinase (MAPK) signaling cascades to adapt efficiently to a changing environment. Here we report that phosphorylation of Cdc37p, an Hsp90 cochaperone, by casein kinase 2 controls the functionality of two MAPK cascades in yeast. These pathways, the high-osmolarity glycerol (HOG) pathway and the cell integrity (protein kinase C) MAPK pathway, mediate adaptive responses to high osmotic and cell wall stresses, respectively. Mutation of the phosphorylation site Ser14 in Cdc37p renders cells sensitive to osmotic stress and cell wall perturbation by calcofluor white. We found that levels of the MAPKs Hog1p and Slt2p (Mpk1p) in cells are reduced in a cdc37-S14A mutant, and consequently downstream responses mediated by Hog1p and Slt2p are compromised. Furthermore, we present evidence that Hog1p and Slt2p both interact in a complex with Cdc37p in vivo, something that has not been reported previously. The interaction of Hsp90, Slt2p, and Hog1p with Cdc37p depends on the phosphorylation status of Cdc37p. In fact, our biochemical data show that the osmosensitive phenotype of the cdc37-S14A mutant is due to the loss of the interaction between Cdc37p, Hog1p, and Hsp90. Likewise, during cell wall stress, the interaction of Slt2p with Cdc37p and Hsp90 is crucial for Slt2p-dependent downstream responses, such as the activation of the transcription factor Rlm1p. Interestingly, phosphorylated Slt2p, but not phosphorylated Hog1p, has an increased affinity for Cdc37p. Together these observations suggest that Cdc37p acts as a regulator of MAPK signaling.
机译:酵母酿酒酵母利用快速响应的促分裂原活化蛋白激酶(MAPK)信号级联反应来有效适应不断变化的环境。在这里,我们报道酪蛋白激酶2对Cdc37p(一种Hsp90伴侣蛋白)的磷酸化控制了酵母中两个MAPK级联的功能。这些途径,高渗透压甘油(HOG)途径和细胞完整性(蛋白激酶C)MAPK途径,分别介导对高渗透压和细胞壁压力的适应性反应。 Cdc37p中磷酸化位点Ser14的突变使细胞对渗透压和钙氟荧光白引起的细胞壁扰动敏感。我们发现, cdc37 -S14A突变体中细胞中MAPKs Hog1p和Slt2p(Mpk1p)的水平降低,因此损害了Hog1p和Slt2p介导的下游反应。此外,我们提供的证据表明,Hog1p和Slt2p都在体内与Cdc37p形成复合体相互作用,这在以前没有报道。 Hsp90,Slt2p和Hog1p与Cdc37p的相互作用取决于Cdc37p的磷酸化状态。实际上,我们的生化数据表明, cdc37 -S14A突变体的渗透敏感性表型是由于Cdc37p,Hog1p和Hsp90之间相互作用的丧失所致。同样,在细胞壁压力期间,Slt2p与Cdc37p和Hsp90的相互作用对于依赖Slt2p的下游响应(例如转录因子Rlm1p的激活)至关重要。有趣的是,磷酸化的Slt2p,而不是磷酸化的Hog1p,对Cdc37p的亲和力增加。这些观察结果共同表明,Cdc37p充当MAPK信号的调节剂。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号