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首页> 外文期刊>Journal of Molecular Biology >Stop codons and UGG promote efficient binding of the polypeptide release factor eRF1 to the ribosomal A site.
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Stop codons and UGG promote efficient binding of the polypeptide release factor eRF1 to the ribosomal A site.

机译:终止密码子和UGG促进多肽释放因子eRF1与核糖体A位点的有效结合。

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摘要

To investigate the codon dependence of human eRF1 binding to the mRNA-ribosome complex, we examined the formation of photocrosslinks between ribosomal components and mRNAs bearing a photoactivable 4-thiouridine probe in the first position of the codon located in the A site. Addition of eRF1 to the phased mRNA-ribosome complexes triggers a codon-dependent quenching of crosslink formation. The concentration of eRF1 triggering half quenching ranges from low for the three stop codons, to intermediate for s4UGG and high for other near-cognate triplets. A theoretical analysis of the photochemical processes occurring in a two-state bimolecular model raises a number of stringent conditions, fulfilled by the system studied here, and shows that in any case sound KD values can be extracted if the ratio mT/KD1 (mT is total concentration of mRNA added). Considering the KD values obtained for the stop, s4UGG and sense codons (approximately 0.06 microM, 0.45 microM and 2.3 microM, respectively) and our previous finding that only the stop and s4UGG codons are able to promote formation of an eRF1-mRNA crosslink, implying a role for the NIKS loop at the tip of the N domain, we propose a two-step model for eRF1 binding to the A site: a codon-independent bimolecular step is followed by an isomerisation step observed solely with stop and s4UGG codons. Full recognition of the stop codons by the N domain of eRF1 triggers a rearrangement of bound eRF1 from an open to a closed conformation, allowing the universally conserved GGQ loop at the tip of the M domain to come into close proximity of the peptidyl transferase center of the ribosome. UGG is expected to behave as a cryptic stop codon, which, owing to imperfect eRF1-codon recognition, does not allow full reorientation of the M domain of eRF1. As far as the physical steps of eRF1 binding to the ribosome are considered, they appear to closely mimic the behaviour of the tRNA/EF-Tu/GTP complex, but clearly eRF1 is endowed with a greater conformational flexibility than tRNA.
机译:为了研究人类eRF1与mRNA-核糖体复合物结合的密码子依赖性,我们检查了核糖体组分与位于A位点密码子第一个位置的带有光活化4-硫尿苷探针的mRNA之间的光交联形成。将eRF1添加到分阶段的mRNA-核糖体复合物中会触发交联形成的密码子依赖性猝灭。引发半猝灭的eRF1浓度范围从三个终止密码子的低到s4UGG的中间到其他近同源三胞胎的高。对在两态双分子模型中发生的光化学过程进行的理论分析提出了许多严格的条件,在这里研究的系统可以满足这些条件,并且表明在任何情况下,如果比率mT / KD 1都可以提取出声音KD值。 (mT是添加的mRNA的总浓度)。考虑到获得的终止子,s4UGG和有义密码子的KD值(分别约为0.06 microM,0.45 microM和2.3 microM)以及我们先前的发现,只有终止子和s4UGG密码子才能促进eRF1-mRNA交联的形成作为NIKS环在N域末端的作用,我们提出了eRF1与A位点结合的两步模型:不依赖密码子的双分子步骤,然后是仅用终止密码子和s4UGG密码子观察到的异构化步骤。 eRF1的N结构域对终止密码子的完全识别触发了结合的eRF1从开放构象到封闭构象的重排,从而使M结构域末端的普遍保守的GGQ环紧紧靠近ERF1的肽基转移酶中心。核糖体。预期UGG表现为密码子终止密码子,由于不完整的eRF1密码子识别,因此无法完全重新定位eRF1的M结构域。就考虑到eRF1与核糖体结合的物理步骤而言,它们似乎紧密模仿了tRNA / EF-Tu / GTP复合体的行为,但是显然eRF1具有比tRNA更大的构象灵活性。

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