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Components of the ESCRT Pathway DFG16 and YGR122w Are Required for Rim101 To Act as a Corepressor with Nrg1 at the Negative Regulatory Element of the DIT1 Gene of Saccharomyces cerevisiae

机译:Rim101必须与ESCRT通路DFG16和YGR122w的组件一起在酿酒酵母DIT1基因的负调控元件上与Nrg1发挥共抑制因子作用

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摘要

The divergently transcribed DIT1 and DIT2 genes of Saccharomyces cerevisiae, which belong to the mid-late class of sporulation-specific genes, are subject to Ssn6-Tup1-mediated repression in mitotic cells. The Ssn6-Tup1 complex, which is required for repression of diverse sets of coordinately regulated genes, is known to be recruited to target genes by promoter-specific DNA-binding proteins. In this study, we show that a 42-bp negative regulatory element (NRE) present in the DIT1-DIT2 intergenic region consists of two distinct subsites and that a multimer of each subsite supports efficient Ssn6-Tup1-dependent repression of a CYC1-lacZ reporter gene. By genetic screening procedures, we identified DFG16, YGR122w, VPS36, and the DNA-binding proteins Rim101 and Nrg1 as potential mediators of NRE-directed repression. We show that Nrg1 and Rim101 bind simultaneously to adjacent target sites within the NRE in vitro and act as corepressors in vivo. We have found that the ability of Rim101 to be proteolytically processed to its active form and mediate NRE-directed repression not only depends on the previously characterized RIM signaling pathway but also requires Dfg16, Ygr122w, and components of the ESCRT trafficking pathway. Interestingly, Rim101 was processed in bro1 and doa4 strains but was unable to mediate efficient repression.
机译:酿酒酵母的不同转录的DIT1和DIT2基因属于孢子形成特异基因的中晚期类别,在有丝分裂细胞中受到Ssn6-Tup1介导的抑制。 Ssn6-Tup1复合物,是抑制各种不同的协调调控基因所必需的,已知可以通过启动子特异性DNA结合蛋白募集到目标基因。在这项研究中,我们显示DIT1-DIT2基因间区域中存在一个42 bp的负调控元件(NRE),由两个不同的亚位点组成,每个亚位点的多聚体均支持CYC1-lacZ的有效Ssn6-Tup1依赖性阻遏报告基因。通过遗传筛选程序,我们确定了DFG16,YGR122w,VPS36和DNA结合蛋白Rim101和Nrg1是NRE定向阻抑的潜在介体。我们表明,Nrg1和Rim101同时结合到NRE体外的相邻目标站点,并在体内充当corepressors。我们已经发现Rim101蛋白水解加工成其活性形式并介导NRE定向阻遏的能力不仅取决于先前表征的RIM信号传导途径,而且还需要Dfg16,Ygr122w和ESCRT运输途径的组成部分。有趣的是,Rim101在bro1和doa4菌株中进行了加工,但无法介导有效的抑制。

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