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The Hog1 SAPK controls the Rtg1/Rtg3 transcriptional complex activity by multiple regulatory mechanisms

机译:Hog1 SAPK通过多种调节机制控制Rtg1 / Rtg3转录复合物活性

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摘要

Cells modulate expression of nuclear genes in response to alterations in mitochondrial function, a response termed retrograde (RTG) regulation. In budding yeast, the RTG pathway relies on Rtg1 and Rtg3 basic helix-loop-helix leucine Zipper transcription factors. Exposure of yeast to external hyperosmolarity activates the Hog1 stress-activated protein kinase (SAPK), which is a key player in the regulation of gene expression upon stress. Several transcription factors, including Sko1, Hot1, the redundant Msn2 and Msn4, and Smp1, have been shown to be directly controlled by the Hog1 SAPK. The mechanisms by which Hog1 regulates their activity differ from one to another. In this paper, we show that Rtg1 and Rtg3 transcription factors are new targets of the Hog1 SAPK. In response to osmostress, RTG-dependent genes are induced in a Hog1-dependent manner, and Hog1 is required for Rtg1/3 complex nuclear accumulation. In addition, Hog1 activity regulates Rtg1/3 binding to chromatin and transcriptional activity. Therefore Hog1 modulates Rtg1/3 complex activity by multiple mechanisms in response to stress. Overall our data suggest that Hog1, through activation of the RTG pathway, contributes to ensure mitochondrial function as part of the Hog1-mediated osmoadaptive response.
机译:细胞响应线粒体功能的改变来调节核基因的表达,这种反应称为逆行(RTG)调节。在发芽酵母中,RTG途径依赖于Rtg1和Rtg3基本螺旋-环-螺旋亮氨酸拉链转录因子。酵母暴露于外部高渗会激活Hog1应激激活的蛋白激酶(SAPK),后者是在应激时调节基因表达的关键因素。几个转录因子,包括Sko1,Hot1,冗余Msn2和Msn4以及Smp1,已显示它们直接受Hog1 SAPK控制。 Hog1调节其活动的机制彼此不同。在本文中,我们显示Rtg1和Rtg3转录因子是Hog1 SAPK的新靶标。响应压力,RTG依赖的基因诱导Hog1依赖的方式,和Hog1是Rtg1 / 3复杂核积累所必需的。此外,Hog1活性调节Rtg1 / 3与染色质的结合和转录活性。因此,Hog1通过多种机制调节Rtg1 / 3复杂的活动,以应对压力。总体而言,我们的数据表明,Hog1通过激活RTG途径,有助于确保线粒体功能作为Hog1介导的渗透适应性反应的一部分。

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