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Snf1蛋白激酶和Sit4蛋白磷酸酶在调节TATA结合蛋白与酿酒酵母INO1启动子的结合中具有相反的功能。

The Snf1 protein kinase and Sit4 protein phosphatase have opposing functions in regulating TATA-binding protein association with the Saccharomyces cerevisiae INO1 promoter.

作者信息

Shirra Margaret K, Rogers Sarah E, Alexander Diane E, Arndt Karen M

机构信息

Department of Biological Sciences, University of Pittsburgh, Pennsylvania 15260, USA.

出版信息

Genetics. 2005 Apr;169(4):1957-72. doi: 10.1534/genetics.104.038075. Epub 2005 Feb 16.

Abstract

To identify the mechanisms by which multiple signaling pathways coordinately affect gene expression, we investigated regulation of the S. cerevisiae INO1 gene. Full activation of INO1 transcription occurs in the absence of inositol and requires the Snf1 protein kinase in addition to other signaling molecules and transcription factors. Here, we present evidence that the Sit4 protein phosphatase negatively regulates INO1 transcription. A mutation in SIT4 was uncovered as a suppressor of the inositol auxotrophy of snf1Delta strains. We found that sit4 mutant strains exhibit an Spt(-) phenotype, suggesting a more general role for Sit4 in transcription. In fact, like the gene-specific regulators of INO1 transcription, Opi1, Ino2, and Ino4, both Snf1 and Sit4 regulate binding of TBP to the INO1 promoter, as determined by chromatin immunoprecipitation analysis. Experiments involving double-mutant strains indicate that the negative effect of Sit4 on INO1 transcription is unlikely to occur through dephosphorylation of histone H3 or Opi1. Sit4 is a known component of the target of rapamycin (TOR) signaling pathway, and treatment of cells with rapamycin reduces INO1 activation. However, analysis of rapamycin-treated cells suggests that Sit4 represses INO1 transcription through multiple mechanisms, only one of which may involve inhibition of TOR signaling.

摘要

为了确定多种信号通路协同影响基因表达的机制,我们研究了酿酒酵母INO1基因的调控。INO1转录的完全激活发生在肌醇缺失的情况下,除了其他信号分子和转录因子外,还需要Snf1蛋白激酶。在此,我们提供证据表明Sit4蛋白磷酸酶负向调控INO1转录。SIT4中的一个突变被发现是snf1Delta菌株肌醇营养缺陷型的抑制子。我们发现sit4突变菌株表现出Spt(-)表型,这表明Sit4在转录中具有更广泛的作用。事实上,与INO1转录的基因特异性调节因子Opi1、Ino2和Ino4一样,通过染色质免疫沉淀分析确定,Snf1和Sit4都调节TBP与INO1启动子的结合。涉及双突变菌株的实验表明,Sit4对INO1转录的负面影响不太可能通过组蛋白H3或Opi1的去磷酸化发生。Sit4是雷帕霉素靶标(TOR)信号通路的已知组成部分,用雷帕霉素处理细胞会降低INO1的激活。然而,对雷帕霉素处理细胞的分析表明,Sit4通过多种机制抑制INO1转录,其中只有一种机制可能涉及抑制TOR信号。

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