首页> 外文期刊>Molecular Microbiology >Stop codon recognition and interactions with peptide release factor RF3 of truncated and chimeric RF1 and RF2 from Escherichia coli.
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Stop codon recognition and interactions with peptide release factor RF3 of truncated and chimeric RF1 and RF2 from Escherichia coli.

机译:停止密码子识别以及与大肠杆菌的截短和嵌合RF1和RF2的肽释放因子RF3相互作用。

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摘要

Release factors RF1 and RF2 recognize stop codons present at the A-site of the ribosome and activate hydrolysis of peptidyl-tRNA to release the peptide chain. Interactions with RF3, a ribosome-dependent GTPase, then initiate a series of reactions that accelerate the dissociation of RF1 or RF2 and their recycling between ribosomes. Two regions of Escherichia coli RF1 and RF2 were identified previously as involved in stop codon recognition and peptidyl-tRNA hydrolysis. We show here that removing the N-terminal domain of RF1 or RF2 or exchanging this domain between the two factors does not affect RF specificity but has different effects on the activity of RF1 and RF2: truncated RF1 remains highly active and able to support rapid cell growth, whereas cells with truncated RF2 grow only poorly. Transplanting a loop of 13 amino acid residues from RF2 to RF1 switches the stop codon specificity. The interaction of the truncated factors with RF3 on the ribosome is defective: they fail to stimulate guanine nucleotide exchange on RF3, recycling is not stimulated by RF3, and nucleotide-free RF3 fails to stabilize the binding of RF1 or RF2 to the ribosome. However, the N-terminal domain seems not to be required for the expulsion of RF1 or RF2 by RF3:GTP.
机译:释放因子RF1和RF2识别存在于核糖体A位点的终止密码子,并激活肽基tRNA的水解以释放肽链。与核糖体依赖性GTP酶RF3相互作用,然后引发一系列反应,从而加速RF1或RF2的解离及其在核糖体之间的循环。先前已鉴定出大肠杆菌RF1和RF2的两个区域与终止密码子识别和肽基-tRNA水解有关。我们在此处显示,去除RF1或RF2的N末端结构域或在两个因素之间交换该结构域不会影响RF特异性,但会对RF1和RF2的活性产生不同的影响:截短的RF1仍保持高活性并能够支持快速细胞RF2被截短的细胞生长缓慢。将13个氨基酸残基的环从RF2移植到RF1可切换终止密码子特异性。截短的因子与RF3在核糖体上的相互作用是有缺陷的:它们不能刺激RF3上的鸟嘌呤核苷酸交换,RF3不能刺激回收,并且无核苷酸的RF3不能稳定RF1或RF2与核糖体的结合。但是,RF3:GTP驱逐RF1或RF2似乎不需要N端域。

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