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Convergence and constraint in eukaryotic release factor 1 (eRF1) domain 1: the evolution of stop codon specificity

机译:真核释放因子1(eRF1)域中的收敛和约束1:终止密码子特异性的演变

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摘要

Class 1 release factor in eukaryotes (eRF1) recognizes stop codons and promotes peptide release from the ribosome. The 'molecular mimicry' hypothesis suggests that domain 1 of eRF1 is analogous to the tRNA anticodon stem-loop. Recent studies strongly support this hypothesis and several models for specific interactions between stop codons and residues in domain 1 have been proposed. In this study we have sequenced and identified novel eRF1 sequences across a wide diversity of eukaryotes and re-evaluated the codon-binding site by bioinformatic analyses of a large eRF1 dataset. Analyses of the eRF1 structure combined with estimates of evolutionary rates at amino acid sites allow us to define the residues that are under structural (i.e. those involved in intramolecular interactions) versus non-structural selective constraints. Furthermore, we have re-assessed convergent substitutions in the ciliate variant code eRE1s using maximum likelihood-based phylogenetic approaches. Our results favor the model proposed by Bertram et al. that stop codons bind to three 'cavities' on the protein surface, although we suggest that the stop codon may bind in the opposite orientation to the original model. We assess the feasibility of this alternative binding orientation with a triplet stop codon and the eRF1 domain 1 structures using molecular modeling techniques.
机译:真核生物中的1类释放因子(eRF1)识别终止密码子并促进肽从核糖体释放。 “分子模拟”假说表明eRF1的结构域1与tRNA反密码子茎环类似。最近的研究有力地支持了这一假说,并且已经提出了几种用于终止密码子和结构域1中残基之间特异性相互作用的模型。在这项研究中,我们已经对各种真核生物中的新型eRF1序列进行了测序和鉴定,并通过对大型eRF1数据集的生物信息学分析重新评估了密码子结合位点。对eRF1结构的分析与对氨基酸位点进化速率的估计相结合,使我们能够定义结构(即参与分子内相互作用的残基)与非结构选择性限制条件下的残基。此外,我们已经使用基于最大似然的系统发育方法重新评估了纤毛虫变种代码eRE1中的收敛替换。我们的结果支持Bertram等人提出的模型。虽然我们建议终止密码子可能以与原始模型相反的方向结合,但终止密码子会与蛋白质表面上的三个“空洞”结合。我们使用分子建模技术评估三联终止密码子和eRF1域1结构这种替代结合方向的可行性。

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