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首页> 外文期刊>The Journal of biological chemistry >Eukaryotic Release Factor 3 Is Required for Multiple Turnovers of Peptide Release Catalysis by Eukaryotic Release Factor 1
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Eukaryotic Release Factor 3 Is Required for Multiple Turnovers of Peptide Release Catalysis by Eukaryotic Release Factor 1

机译:通过真核释放因子1的肽释放催化的多次失误需要真核释放因子3

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Eukaryotic peptide release factor 3 (eRF3) is a conserved, essential gene in eukaryotes implicated in translation termination. We have systematically measured the contribution of eRF3 to the rates of peptide release with both saturating and limiting levels of eukaryotic release factor 1 (eRF1). Although eRF3 modestly stimulates the absolute rate of peptide release (~5-fold), it strongly increases the rate of peptide release when eRF1 is limiting (>20-fold). This effect was generalizable across all stop codons and in a variety of contexts. Further investigation revealed that eRF1 remains associated with ribosomal complexes after peptide release and subunit dissociation and that eRF3 promotes the dissociation of eRF1 from these post-termination complexes. These data are consistent with models where eRF3 principally affects binding interactions between eRF1 and the ribosome, either prior to or subsequent to peptide release. A role for eRF3 as an escort for eRF1 into its fully accommodated state is easily reconciled with its close sequence similarity to the translational GTPase EFTu.
机译:真核肽释放因子3(ERF3)是一种保守的必需基因,其在意图终止中涉及翻译。我们通过饱和释放因子1(ERF1)系统地测量了ERF3对肽释放速率的贡献。虽然ERF3适度刺激肽释放的绝对速率(〜5倍),但是当ERF1限制时强烈增加肽释放速率(> 20倍)。这种效果遍布所有停止密码子和各种背景。进一步的研究表明,肽释放后的核糖体复合物和亚单位离解后,ERF1保持与核糖体脱离,并且ERF3促进ERF1的解离,从而从这些后末端复合物中的解离。这些数据与ERF3主要影响ERF1和核糖体之间的结合相互作用的模型一致,无论是在肽释放之前还是之后。 ERF3作为ERF1进入其完全容纳状态的护送的角色很容易与其密切序列相似与翻译GTPase eftu。

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