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The sequential activation of the yeast HOG and SLT2 pathways is required for cell survival to cell wall stress

机译:酵母HOG和SLT2途径的顺序激活是细胞存活至细胞壁应激所必需的

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摘要

Yeast mitogen-activated protein kinase (MAPK) signaling pathways transduce external stimuli into cellular responses very precisely. The MAPKs Slt2/Mpk1 and Hog1 regulate transcriptional responses of adaptation to cell wall and osmotic stresses, respectively. Unexpectedly, we observe that the activation of a cell wall integrity (CWI) response to the cell wall damage caused by zymolyase (beta-1,3 glucanase) requires both the HOG and SLT2 pathways. Zymolyase activates both MAPKs and Slt2 activation depends on the Sho1 branch of the HOG pathway under these conditions. Moreover, adaptation to zymolyase requires essential components of the CWI pathway, namely the redundant MAPKKs Mkk1/Mkk2, the MAPKKK Bck1, and Pkc1, but it does not require upstream elements, including the sensors and the guanine nucleotide exchange factors of this pathway. In addition, the transcriptional activation of genes involved in adaptation to cell wall stress, like CRH1, depends on the transcriptional factor Rlm1 regulated by Slt2, but not on the transcription factors regulated by Hog1. Consistent with these findings, both MAPK pathways are essential for cell survival under these circumstances because mutant strains deficient in different components of both pathways are hypersensitive to zymolyase. Thus, a sequential activation of two MAPK pathways is required for cellular adaptation to cell wall damage.
机译:酵母促有丝分裂原激活的蛋白激酶(MAPK)信号通路非常精确地将外部刺激转化为细胞反应。 MAPK Slt2 / Mpk1和Hog1分别调节对细胞壁和渗透压的适应性转录反应。出乎意料的是,我们观察到对细胞壁完整性(CWI)的激活对由酶解酶(β-1,3葡聚糖酶)引起的细胞壁损伤的激活需要HOG和SLT2途径。在这些条件下,酶合酶激活MAPKs,Slt2激活取决于HOG途径的Sho1分支。此外,对酶解酶的适应需要CWI途径的基本组成部分,即多余的MAPKKs Mkk1 / Mkk2,MAPKKK Bck1和Pkc1,但不需要上游元件,包括该途径的传感器和鸟嘌呤核苷酸交换因子。此外,参与细胞壁应激适应的基因的转录激活(如CRH1)取决于Slt2调控的转录因子Rlm1,而不取决于Hog1调控的转录因子。与这些发现一致,在这些情况下,两个MAPK途径对于细胞存活都是必不可少的,因为在两种途径中不同成分均缺乏的突变株对酶解酶非常敏感。因此,细胞对细胞壁损伤的适应需要两个MAPK途径的顺序激活。

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