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Importance of tRNA interactions with 23S rRNA for peptide bond formation on the ribosome: studies with substrate analogs

机译:tRNA与23S rRNA相互作用对核糖体上肽键形成的重要性:底物类似物的研究

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摘要

The major enzymatic activity of the ribosome is the catalysis of peptide bond formation. The active site - the peptidyl transferase center - is composed of ribosomal RNA (rRNA), and interactions between rRNA and the reactants, peptidyl-tRNA and aminoacyl-tRNA, are crucial for the reaction to proceed rapidly and efficiently. Here, we describe the influence of rRNA interactions with cytidine residues in A-site substrate analogs (C-puromycin or CC-puromycin), mimicking C74 and C75 of tRNA on the reaction. Base-pairing of C75 with G2553 of 23S rRNA accelerates peptide bond formation, presumably by stabilizing the pepticlyl transferase center in its productive conformation. When C74 is also present in the substrate analog, the reaction is slowed down considerably, indicating a slow step in substrate binding to the active site, which limits the reaction rate. The tRNA-rRNA interactions lead to a robust reaction that is insensitive to pH changes or base substitutions in 23S rRNA at the active site of the ribosome.
机译:核糖体的主要酶促活性是肽键形成的催化作用。活性位点-肽基转移酶中心-由核糖体RNA(rRNA)组成,rRNA与反应物,肽基-tRNA和氨基酰基-tRNA之间的相互作用对于反应快速有效地进行至关重要。在这里,我们描述了rRNA与胞苷残基在A位底物类似物(C-嘌呤霉素或CC-嘌呤霉素)中的相互作用,模拟了tRNA的C74和C75对反应的影响。 C75与23S rRNA的G2553的碱基配对可加速肽键的形成,大概是通过稳定其生产构象中的消化性转移酶中心来实现的。当底物类似物中也存在C74时,反应会大大减慢,表明底物与活性位点结合的缓慢步骤,这限制了反应速率。 tRNA-rRNA相互作用会导致强烈的反应,该反应对核糖体活性位点的pH值变化或23S rRNA中的碱基取代不敏感。

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