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首页> 外文期刊>Nucleic acids research >Interactions of the TnaC nascent peptide with rRNA in the exit tunnel enable the ribosome to respond to free tryptophan
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Interactions of the TnaC nascent peptide with rRNA in the exit tunnel enable the ribosome to respond to free tryptophan

机译:TnaC新生肽与rRNA在出口通道中的相互作用使核糖体能够响应游离色氨酸

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摘要

A transcriptional attenuation mechanism regulates expression of the bacterial tnaCAB operon. This mechanism requires ribosomal arrest induced by the regulatory nascent TnaC peptide in response to free L-tryptophan (L-Trp). In this study we demonstrate, using genetic and biochemical analyses, that in Escherichia coli, TnaC residue I19 and 23S rRNA nucleotide A2058 are essential for the ribosome's ability to sense free L-Trp. We show that the mutational change A2058U in 23S rRNA reduces the concentration dependence of L-Trp-mediated tna operon induction, whereas the TnaC I19L change suppresses this phenotype, restoring the sensitivity of the translating A2058U mutant ribosome to free L-Trp. These findings suggest that interactions between TnaC residue I19 and 23S rRNA nucleotide A2058 contribute to the creation of a regulatory L-Trp binding site within the translating ribosome.
机译:转录减弱机制调节细菌tnaCAB操纵子的表达。这种机制需要核糖体阻滞,该核糖体阻滞是由新生的TnaC肽响应游离L-色氨酸(L-Trp)诱导而引起的。在这项研究中,我们使用遗传和生化分析证明,在大肠杆菌中,TnaC残基I19和23S rRNA核苷酸A2058对核糖体感测游离L-Trp的能力至关重要。我们表明,在23S rRNA中的突变变化A2058U降低了L-Trp介导的tna操纵子诱导的浓度依赖性,而TnaC I19L的变化抑制了该表型,恢复了翻译的A2058U突变核糖体对游离L-Trp的敏感性。这些发现表明,TnaC残基I19和23S rRNA核苷酸A2058之间的相互作用有助于在翻译核糖体中创建调节性L-Trp结合位点。

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