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tRNA regulation of gene expression: Interactions of an mRNA 5′-UTR with a regulatory tRNA

机译:基因表达的tRNA调节:mRNA 5'-UTR与调节性tRNA的相互作用

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摘要

Many genes encoding aminoacyl-tRNA synthetases and other amino acid–related products in Gram-positive bacteria, including important pathogens, are regulated through interaction of unacylated tRNA with the 5′-untranslated region (5′-UTR) of the mRNA. Each gene regulated by this mechanism responds specifically to the cognate tRNA, and specificity is determined by pairing of the anticodon of the tRNA with a codon sequence in the “Specifier Loop” of the 5′-UTR. For the 5′-UTR to function in gene regulation, the mRNA folding interactions must be sufficiently stable to present the codon sequence for productive binding to the anticodon of the matching tRNA. A model bimolecular system was developed in which the interaction between two half molecules (“Common” and “Specifier”) would reconstitute the Specifier Loop region of the 5′-UTR of the Bacillus subtilis glyQS gene, encoding GlyRS mRNA. Gel mobility shift analysis and fluorescence spectroscopy yielded experimental Kds of 27.6 ± 1.0 μM and 10.5 ± 0.7 μM, respectively, for complex formation between Common and Specifier half molecules. The reconstituted 5′-UTR of the glyQS mRNA bound the anticodon stem and loop of tRNAGly (ASLGlyGCC) specifically and with a significant affinity (Kd = 20.2 ± 1.4 μM). Thus, the bimolecular 5′-UTR and ASLGlyGCC models mimic the RNA–RNA interaction required for T box gene regulation in vivo.
机译:革兰氏阳性细菌中许多编码氨酰基-tRNA合成酶和其他氨基酸相关产物的基因,包括重要的病原体,都通过未酰化的tRNA与mRNA的5'-非翻译区(5'-UTR)相互作用而受到调控。通过这种机制调节的每个基因都对同源的tRNA特异地反应,并且通过将tRNA的反密码子与5'-UTR的“指定子环”中的密码子序列配对来确定特异性。为了使5'-UTR在基因调控中发挥作用,mRNA折叠相互作用必须足够稳定,才能提供密码子序列以与结合的tRNA的反密码子有效结合。开发了模型双分子系统,其中两个半分子(“公共”和“指定子”)之间的相互作用将重构枯草芽孢杆菌glyQS基因5'-UTR的指定子环区域,该区域编码GlyRS mRNA。凝胶迁移率位移分析和荧光光谱法分别得出实验Kds为27.6±1.0μM和10.5±0.7μM,用于在Common和Specifier半分子之间形成复合物。重组的glyQS mRNA的5'-UTR特异性结合tRNAGly(ASLGlyGCC)的反密码子茎和环,并具有显着的亲和力(Kd = 20.2±1.4μM)。因此,双分子5'-UTR和ASLGlyGCC模型可模拟体内T盒基因调控所需的RNA-RNA相互作用。

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