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Hog1和Yaf9在酿酒酵母对氯化铯转录反应中的作用

Role of Hog1 and Yaf9 in the transcriptional response of Saccharomyces cerevisiae to cesium chloride.

作者信息

Del Vescovo Valerio, Casagrande Viviana, Bianchi Michele M, Piccinni Eugenia, Frontali Laura, Militti Cristina, Fardeau Vivienne, Devaux Frédéric, Di Sanza Claudio, Presutti Carlo, Negri Rodolfo

机构信息

Istituto Pasteur Fondazione Cenci-Bolognetti, Dipartimento di Biologia Cellulare e dello Sviluppo, Università degli Studi di Roma, La Sapienza, Rome, Italy.

出版信息

Physiol Genomics. 2008 Mar 14;33(1):110-20. doi: 10.1152/physiolgenomics.00251.2007. Epub 2008 Jan 15.

Abstract

We analyzed the global transcriptional response of Saccharomyces cerevisiae cells exposed to different concentrations of CsCl in the growth medium and at different times after addition. Early responsive genes were mainly involved in cell wall structure and biosynthesis. About half of the induced genes were previously shown to respond to other alkali metal cations in a Hog1-dependent fashion. Western blot analysis confirmed that cesium concentrations as low as 100 mM activate Hog1 phosphorylation. Another important fraction of the cesium-modulated genes requires Yaf9p for full responsiveness as shown by the transcriptome of a yaf9-deleted strain in the presence of cesium. We showed that a cell wall-restructuring process promptly occurs in response to cesium addition, which is dependent on the presence of both Hog1 and Yaf9 proteins. Moreover, the sensitivity to low concentration of cesium of the yaf9-deleted strain is not observed in a strain carrying the hog1/yaf9 double deletion. We conclude that the observed early transcriptional modulation of cell wall genes has a crucial role in S. cerevisiae adaptation to cesium.

摘要

我们分析了酿酒酵母细胞在生长培养基中暴露于不同浓度氯化铯以及添加后不同时间的全局转录反应。早期反应基因主要参与细胞壁结构和生物合成。约一半的诱导基因先前已被证明以Hog1依赖的方式对其他碱金属阳离子作出反应。蛋白质免疫印迹分析证实,低至100 mM的铯浓度可激活Hog1磷酸化。如在铯存在下yaf9缺失菌株的转录组所示,铯调节基因的另一个重要部分需要Yaf9p才能完全响应。我们表明,响应铯的添加会迅速发生细胞壁重塑过程,这依赖于Hog1和Yaf9蛋白的存在。此外,在携带hog1/yaf9双缺失的菌株中未观察到yaf9缺失菌株对低浓度铯的敏感性。我们得出结论,观察到的细胞壁基因早期转录调节在酿酒酵母对铯的适应中起关键作用。

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