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Activity of the yeast zinc-finger transcription factor War1 is lost with alanine mutation of two putative phosphorylation sites in the activation domain

机译:酵母锌指转录因子War1的活性因激活域中两个假定的磷酸化位点的丙氨酸突变而丢失

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摘要

Saccharomyces cerevisiae acquires its resistance to carboxylate weak organic acids by inducing a plasma membrane ABC transporter, Pdr12. These acids activate a Zn(II)2Cys6 zinc-finger transcription factor, War1, which in turn induces the PDR12 gene. Mutation of the four potential sites of serine/threonine phosphorylation within the War1 activation domain revealed that Pdr12 induction was lost with mutations S923A or S930A, but not with the corresponding phosphomimetic mutations S923D or S930D. However, phosphorylation at these two sites has not been detected by mass spectrometry, so it still remains uncertain whether these are true sites of phosphorylation or merely serines whose side-chain hydroxyls are necessary for the proper structuring of the War1 activation domain. Mutation S923A prevented the sorbate-induced hyperphosphorylation of War1, while S930A caused War1 to be in a constitutively hyperphosphorylated state, irrespective of weak acid stress. Screening of non-essential protein kinase mutants of yeast failed to identify a kinase required for Pdr12 induction, or War1 hyperphosphorylation, in response to sorbate treatment. However, the mrk1? mutant was identified as having an elevated Pdr12 level in the absence of sorbate stress. Copyright (C) 2011 John Wiley & Sons, Ltd.
机译:酿酒酵母通过诱导质膜ABC转运蛋白Pdr12获得了对弱有机酸羧酸酯的抗性。这些酸激活Zn(II)2Cys6锌指转录因子War1,后者进而诱导PDR12基因。 War1激活域中丝氨酸/苏氨酸磷酸化的四个潜在位点的突变表明,突变S923A或S930A丢失了Pdr12诱导,但没有相应的拟磷酸酶突变S923D或S930D。但是,这两个位点的磷酸化尚未通过质谱检测到,因此仍然不确定这些是真正的磷酸化位点还是仅丝氨酸的丝氨酸,其侧链羟基对于War1激活域的正确结构是必需的。突变S923A阻止了山梨酸酯诱导的War1过度磷酸化,而S930A导致War1处于组成性的过度磷酸化状态,而与弱酸胁迫无关。酵母的非必需蛋白激酶突变体的筛选未能鉴定出响应于山梨酸盐处理而需要Pdr12诱导或War1超磷酸化的激酶。但是,mrk1?突变体被鉴定为在没有山梨酸酯胁迫的情况下具有升高的Pdr12水平。版权所有(C)2011 John Wiley&Sons,Ltd.

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