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Peptide release promoted by methylated RF2 and ArfA in nonstop translation is achieved by an induced-fit mechanism

机译:甲基化的RF2和ArfA在不间断翻译中促进的肽释放是通过诱导拟合机制实现的

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Here we report that the specificity of peptide release in the ribosome on a nonstop mRNA by ArfA and RF2 is achieved by an induced-fit mechanism. Using RF2 that is methylated on the glutamine of its GGQ motif (RF2(m)), we show that methylation substantially increases the rate of ArfA/RF2-catalyzed peptide release on a nonstop mRNA that does not occupy the ribosomal A site, but has only a modest effect on k(cat) by the same proteins on longer nonstop mRNAs occupying the A site of the mRNA channel in the ribosome. Our data suggest that enhancement in the kcat of peptide release by ArfA and RF2 under the cognate decoding condition is the result of favorable conformational changes in the nonstop complex. We demonstrate a shared mechanism between canonical and nonstop termination, supported by similarities in the kinetic mechanisms in antibiotic inhibition and methylation-correlated enhancement in the rate of peptide release. Despite these similarities, our data suggest that nonstop termination differs from canonical pathway in the downstream event of recycling.
机译:在这里我们报告说,由ArfA和RF2在不停mRNA上的核糖体中释放肽的特异性是通过诱导拟合机制实现的。使用在其GGQ模体的谷氨酰胺上甲基化的RF2(RF2(m)),我们显示甲基化显着提高了ArfA / RF2催化的肽在不占据核糖体A位点的不间断mRNA上释放的速率。较长的不间断mRNA上的相同蛋白质占据核糖体中mRNA通道的A位点,对k(cat)的影响只有中等程度。我们的数据表明,在相关的解码条件下,由ArfA和RF2释放的肽的kcat增强是不间断复合物中有利的构象变化的结果。我们证明了规范和不间断终止之间的共享机制,在抗生素抑制和肽释放速率的甲基化相关增强的动力学机制中的相似性支持。尽管存在这些相似之处,但我们的数据表明,在下游的回收事件中,不间断的终​​止不同于规范的途径。

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