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首页> 外文期刊>FEMS Yeast Research >Zinc starvation induces a stress response in Saccharomyces cerevisiae that is mediated by the Msn2p and Msn4p transcriptional activators
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Zinc starvation induces a stress response in Saccharomyces cerevisiae that is mediated by the Msn2p and Msn4p transcriptional activators

机译:锌饥饿诱导酿酒酵母中的应激反应,该应激反应由Msn2p和Msn4p转录激活因子介导

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摘要

During the production of wine and beer, the yeast Saccharomyces cerevisiae can encounter an environment that is deficient in zinc, resulting in a 'sluggish' or a 'stuck' ferment. It has been shown that the Zap1p-transcription factor induces the expression of a regulon in response to zinc deficiency; however, it was evident that a separate regulon was also activated during zinc deficiency in a Zap1p-independent manner. This study discovered the Msn2p and Msn4p (Msn2/4p) transcriptional activator proteins to be an additional control mechanism inducing the stress response during zinc deficiency. Promoter sequence analysis identified the stress-response element (STRE) motif, recognized by Msn2/4p, and was significantly enriched in the promoters of genes induced by zinc deficiency. An investigation using genome-wide analyses revealed a distinct regulon consisting of STRE-containing genes whose zinc-responsive expression was abolished in an msn2 msn4 double mutant. An STRE-driven lacZ reporter construct confirmed that expression of the genes within this regulon was perturbed by the deletion of MSN2 and MSN4 and also implicated Hog1p as a contributing factor. This research provides a better understanding of the molecular mechanisms involved in the yeast response to zinc deficiency during fermentation.
机译:在葡萄酒和啤酒的生产过程中,酿酒酵母会遇到锌缺乏的环境,从而导致发酵“缓慢”或“卡滞”。已经表明,Zap1p转录因子响应锌缺乏而诱导调节子的表达。然而,很明显,在缺锌期间,一个独立的调节子也以Zap1p独立的方式被激活。这项研究发现Msn2p和Msn4p(Msn2 / 4p)转录激活蛋白是诱导锌缺乏时应激反应的另一种控制机制。启动子序列分析确定了由Msn2 / 4p识别的应激反应元件(STRE)基序,并显着丰富了锌缺乏诱导基因的启动子。使用全基因组分析进行的一项调查显示,一个独特的调控子由含STRE的基因组成,这些基因的锌响应性表达在msn2 msn4双突变体中被取消。一个STRE驱动的lacZ报告基因构建体证实该调控区中的基因表达受到MSN2和MSN4缺失的干扰,并且还暗示Hog1p是一个促成因素。这项研究提供了对酵母发酵过程中锌缺乏反应所涉及的分子机制的更好理解。

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