首页> 外文期刊>Molecular Microbiology >Aspergillus nidulans HOG pathway is activated only by two-component signalling pathway in response to osmotic stress.
【24h】

Aspergillus nidulans HOG pathway is activated only by two-component signalling pathway in response to osmotic stress.

机译:构巢曲霉HOG途径仅响应于渗透胁迫而由两组分信号传导途径激活。

获取原文
获取原文并翻译 | 示例
           

摘要

Summary Genome sequencing analyses revealed that Aspergillus nidulans has orthologous genes to all those of the high-osmolarity glycerol (HOG) response mitogen-activated protein kinase (MAPK) pathway of Saccharomyces cerevisiae. A. nidulans mutant strains lacking sskA, sskB, pbsB, or hogA, encoding proteins orthologous to the yeast Ssk1p response regulator, Ssk2p/Ssk22p MAPKKKs, Pbs2p MAPKK and Hog1p MAPK, respectively, showed growth inhibition under high osmolarity, and HogA MAPK in these mutants was not phosphorylated under osmotic or oxidative stress. Thus, activation of the A. nidulans HOG (AnHOG) pathway depends solely on the two-component signalling system, and MAPKK activation mechanisms in the AnHOG pathway differ from those in the yeast HOG pathway, where Pbs2p is activated by two branches, Sln1p and Sho1p. Expression of pbsB complemented the high-osmolarity sensitivity of yeast pbs2Delta, and the complementation depended on Ssk2p/Ssk22p, but not on Sho1p. Pbs2p requires its Pro-rich motif forbinding to the Src-homology3 (SH3) domain of Sho1p, but PbsB lacks a typical Pro-rich motif. However, a PbsB mutant (PbsB(Pro)) with the yeast Pro-rich motif was activated by the Sho1p branch in yeast. In contrast, HogA in sskADelta expressing PbsB(Pro) was not phosphorylated under osmotic stress, suggesting that A. nidulans ShoA, orthologous to yeast Sho1p, is not involved in osmoresponsive activation of the AnHOG pathway. We also found that besides HogA, PbsB can activate another Hog1p MAPK orthologue, MpkC, in A. nidulans, although mpkC is dispensable in osmoadaptation. In this study, we discuss the differences between the AnHOG and the yeast HOG pathways.
机译:概述基因组测序分析表明,构巢曲霉与酿酒酵母的所有高渗透压甘油(HOG)反应有丝分裂原激活蛋白激酶(MAPK)途径的同源基因。缺少sskA,sskB,pbsB或hogA的nidulans突变株分别编码与酵母Ssk1p反应调节因子,Ssk2p / Ssk22p MAPKKKs,Pbs2p MAPKK和Hog1p MAPK直系同源的蛋白质,在高渗透压下和HogA MAPK中显示出生长抑制作用。突变体在渗透或氧化胁迫下不被磷酸化。因此,构巢曲霉HOG(AnHOG)途径的激活仅取决于两组分信号系统,并且AnHOG途径中的MAPKK激活机制不同于酵母HOG途径中的MAPKK激活机制,其中Pbs2p由两个分支Sln1p和Sln1p激活。 Sho1p。 pbsB的表达补充了酵母pbs2Delta的高渗透压敏感性,并且该补充取决于Ssk2p / Ssk22p,而不取决于Sho1p。 Pbs2p需要其富含Pro的基序才能绑定到Sho1p的Src-homology3(SH3)域,但是PbsB缺少典型的富含Pro的基序。但是,具有酵母Pro-丰富基序的PbsB突变体(PbsB(Pro))被酵母中的Sho1p分支激活。相反,在渗透胁迫下,表达PbsB(Pro)的sskADelta中的HogA不会被磷酸化,这表明与酵母Sho1p同源的构巢曲霉ShoA不参与AnHOG途径的渗透性激活。我们还发现,除了HogA以外,PbsB还可以激活构巢曲霉中的另一个Hog1p MAPK直向同源物MpkC,尽管mpkC在渗透适应中是必不可少的。在这项研究中,我们讨论了AnHOG和酵母HOG途径之间的差异。

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