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首页> 外文期刊>Molecular Microbiology >CK2-dependent inhibitory phosphorylation is relieved by Ppt1 phosphatase for the ethanol stress-specific activation of Hsf1 in Saccharomyces cerevisiae
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CK2-dependent inhibitory phosphorylation is relieved by Ppt1 phosphatase for the ethanol stress-specific activation of Hsf1 in Saccharomyces cerevisiae

机译:Ppt1磷酸酶可减轻CK2依赖性抑制磷酸化作用,从而在酿酒酵母中对Hsf1进行乙醇胁迫特异性活化

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摘要

Ethanol, the major fermentation product of Saccharomyces cerevisiae, has long been known as an inducer of heat shock response, but the underlying mechanisms by which ethanol activates heat shock transcription factor (HSF) are not well understood. We demonstrate that CK2-dependent phosphorylation on S608 is an ethanol stress-specific repression mechanism of Hsf1, which does not affect the basal or heat-induced activity of Hsf1. This repression is relieved by dephosphorylation by Ppt1 which directly interacts with Hsf1 via its tetratricopeptide repeat (TPR) domain. In response to ethanol stress, PPT1 deletion and CK2 overexpression exert synergistic inhibitory effects on Hsf1 activation, whereas Hsf1(S608A) mutant shows enhanced activation. Therefore, regulation of the Hsf1 S608 phosphorylation status by reciprocal actions of CK2 and Ppt1 might play an important role to determine Hsf1 sensitivity towards ethanol stress.
机译:长期以来,乙醇是酿酒酵母(Saccharomyces cerevisiae)的主要发酵产物,它是热休克反应的诱导剂,但乙醇激活热休克转录因子(HSF)的潜在机制尚不清楚。我们证明,在S608上依赖CK2的磷酸化是Hsf1的乙醇胁迫特异性抑制机制,它不影响Hsf1的基础或热诱导的活性。这种抑制通过Ppt1的去磷酸化而得以缓解,Ppt1通过其四三肽重复(TPR)结构域与Hsf1直接相互作用。响应乙醇胁迫,PPT1缺失和CK2过表达对Hsf1激活产生协同抑制作用,而Hsf1(S608A)突变体显示增强的激活。因此,通过CK2和Ppt1的相互作用来调节Hsf1 S608的磷酸化状态可能对确定Hsf1对乙醇胁迫的敏感性起重要作用。

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