Gregori Christa, Schüller Christoph, Frohner Ingrid E, Ammerer Gustav, Kuchler Karl
Medical University of Vienna, Max F. Perutz Laboratories, Vienna, Austria.
University of Vienna, Max F. Perutz Laboratories, A-1030 Vienna, Austria.
J Biol Chem. 2008 Sep 12;283(37):25752-25764. doi: 10.1074/jbc.M803095200. Epub 2008 Jul 11.
The Saccharomyces cerevisiae zinc cluster regulator War1 mediates an essential transcriptional and adaptive response to weak organic acid stress. Here we investigate the mechanism of War1 activation upon weak acid stress. We identified several gain-of-function WAR1 alleles mapping to the central War1 region. These mutations constitutively increase levels of the plasma membrane ABC transporter Pdr12, the main War1 target mediating stress adaptation. Functional analysis of War1 reveals that the central region and its C-terminal activation domain are required for function. Notably, the native DNA-binding and dimerization domains appear dispensable for War1 activity, because they can be replaced by a LexA DNA-binding domain. Chromatin immunoprecipitation demonstrates elevated promoter affinity of activated War1, because its PDR12 promoter association increases upon stress. Hyperactive WAR1 alleles have constitutively high PDR12 promoter association. Furthermore, fluorescence resonance energy transfer of functional CFP-War1-YFP proteins also demonstrates conformational changes of stress-activated War1 in vivo. Our results suggest a mechanism whereby War1 activation is accompanied by conformational changes enhancing promoter association, thus initiating the adaptation process.
酿酒酵母锌簇调节因子War1介导了对弱有机酸胁迫的一种重要转录和适应性反应。在此,我们研究了弱酸性胁迫下War1激活的机制。我们鉴定了几个定位于War1中央区域的功能获得性WAR1等位基因。这些突变组成型地增加了质膜ABC转运蛋白Pdr12的水平,Pdr12是介导应激适应的主要War1靶标。对War1的功能分析表明,中央区域及其C端激活结构域是其功能所必需的。值得注意的是,天然的DNA结合和二聚化结构域对于War1的活性似乎是可有可无的,因为它们可以被LexA DNA结合结构域所取代。染色质免疫沉淀显示激活的War1的启动子亲和力升高,因为其与PDR12启动子的结合在胁迫时增加。超活性WAR1等位基因具有组成型的高PDR12启动子结合。此外,功能性CFP-War1-YFP蛋白的荧光共振能量转移也证明了应激激活的War1在体内的构象变化。我们的结果提示了一种机制,即War1激活伴随着构象变化,增强了启动子结合,从而启动了适应过程。