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Ebs1p, a Negative Regulator of Gene Expression Controlled by the Upf Proteins in the Yeast Saccharomyces cerevisiae

机译:Ebs1p,由酵母菌中的Upf蛋白控制的基因表达的负调节剂

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Mutations in EBS1 were identified in Saccharomyces cerevisiae that cosuppress missense, frameshift, and nonsense mutations. Evidence from studies of loss of function and overexpression of EBS1 suggests that Ebs1p affects gene expression by inhibiting translation and that a loss of EBS1 function causes suppression by increasing the rate of translation. Changes in EBS1 expression levels alter the expression of wild-type genes, but, in general, no changes in mRNA abundance were associated with a loss of function or overexpression of EBS1. Translation of a lacZ reporter was increased in strains carrying an ebs1-Δ mutant gene, whereas translation was decreased when EBS1 was overexpressed. The cap binding protein eIF-4E copurifies with Ebs1p in the absence of RNA, suggesting that the two proteins interact in vivo. Although physical and genetic interactions were detected between Ebs1p and Dcp1p, copurification was RNase sensitive, and changes in the expression of Ebs1p had little to no effect on decapping of the MFA2 transcript. The combined results suggest that Ebs1p inhibits translation, most likely through effects on eIF-4E rather than on decapping. Finally, EBS1 transcript levels are under the control of nonsense-mediated mRNA decay (NMD), providing the first example of an NMD-sensitive transcript whose protein product influences a step in gene expression required for NMD.
机译:酿酒酵母中鉴定出 EBS1 中的突变,这些突变共同抑制错义,移码和无义突变。来自功能丧失和 EBS1 过度表达的研究证据表明,Ebs1p通过抑制翻译来影响基因表达,而 EBS1 功能的丧失则通过提高翻译率来引起抑制。 EBS1 表达水平的变化会改变野生型基因的表达,但总的来说,mRNA丰度变化与 EBS1 的功能丧失或过表达无关。携带ebs1-Δ突变基因的菌株中, lacZ 报告基因的翻译增加,而当 EBS1 过表达时,翻译的表达减少。在不存在RNA的情况下,帽结合蛋白eIF-4E与Ebs1p共纯化,表明这两种蛋白在体内相互作用。尽管在Ebs1p和Dcp1p之间检测到物理和遗传相互作用,但共纯化对RNase敏感,并且Ebs1p表达的变化对 MFA2 转录产物的脱盖几乎没有影响。综合结果表明,Ebs1p抑制翻译,很可能是通过对eIF-4E而不是对脱盖的影响。最后, EBS1 转录水平在无义介导的mRNA衰变(NMD)的控制下,提供了NMD敏感转录本的第一个例子,其蛋白质产物影响NMD所需的基因表达步骤。

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