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Regulation of the rplY gene encoding 5S rRNA binding protein L25 in Escherichia coli and related bacteria

机译:大肠杆菌和相关细菌中编码5S rRNA结合蛋白L25的rplY基因的调控

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摘要

Ribosomal protein (r-protein) L25 is one of the three r-proteins (L25, L5, L18) that interact with 5S rRNA in eubacteria. Specific binding of L25 with a certain domain of 5S r-RNA, a so-called loop E, has been studied in detail, but information about regulation of L25 synthesis has remained totally lacking. In contrast to the rplE (L5) and rplR (L18) genes that belong to the polycistronic spc-operon and are regulated at the translation level by r-protein S8, the rplY (L25) gene forms an independent transcription unit. The main goal of this work was to study the regulation of the rplY expression in vivo. We show that the rplY promoter is down-regulated by ppGpp and its cofactor DksA in response to amino acid starvation. At the level of translation, the rplY expression is subjected to the negative feedback control. The 5'-untranslated region of the rplY mRNA comprises specific sequence/structure features, including an atypical SD-like sequence, which are highly conserved in a subset of gamma-proteobacterial families. Despite the lack of a canonical SD element, the rplY'-'lacZ single-copy reporter showed unusually high translation efficiency. Expression of the rplY gene in trans decreased the translation yield, indicating the mechanism of autogenous repression. Site-directed mutagenesis of the rplY 5' UTR revealed an important role of the conserved elements in the translation control. Thus, the rplY expression regulation represents one more example of regulatory pathways that control ribosome biogenesis in Escherichia coli and related bacteria.
机译:核糖体蛋白(r蛋白)L25是在真细菌中与5S rRNA相互作用的三种r蛋白(L25,L5,L18)之一。已经详细研究了L25与5S r-RNA的某个结构域的特异性结合,即所谓的环E,但是仍然完全缺乏关于L25合成的调控的信息。与属于多顺反子spc-操纵子的rplE(L5)和rplR(L18)基因相反,rplY(L25)基因形成一个独立的转录单位,该基因在翻译水平上受到r蛋白S8的调控。这项工作的主要目的是研究体内rplY表达的调控。我们表明,pplpp及其辅因子DksA对rplY启动子的响应是氨基酸饥饿。在翻译级别,rplY表达式将受到负反馈控制。 rplY mRNA的5'-非翻译区包含特定的序列/结构特征,包括非典型的SD样序列,在γ-变形细菌家族的子集中高度保守。尽管缺少规范的SD元素,但rplY'-'lacZ单拷贝报告基因显示出异常高的翻译效率。 rplY基因的反式表达降低了翻译产量,表明了自身抑制的机制。 rplY 5'UTR的定点诱变揭示了保守元件在翻译控制中的重要作用。因此,rplY表达调节代表了控制大肠杆菌和相关细菌中核糖体生物发生的调节途径的另一个实例。

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