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Role of helix 44 of 16S rRNA in the fidelity of translation initiation

机译:16S rRNA的螺旋44在翻译起始保真度中的作用

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摘要

The molecular mechanisms that govern translation initiation to ensure accuracy remain unclear. Here, we provide evidence that the subunit-joining step of initiation is controlled in part by a conformational change in the 1408 region of helix h44. First, chemical probing of 30S initiation complexes formed with either a cognate (AUG) or near-cognate (AUC) start codon shows that an IF1-dependent enhancement at A1408 is reduced in the presence of AUG. This change in reactivity is due to a conformational change rather than loss of IF1, because other portions of the IF1 footprint are unchanged and high concentrations of IF1 fail to diminish the reactivity difference seen at A1408. Second, mutations in h44 such as A1413C stimulate 50S docking and cause reduced reactivity at A1408. Third, streptomycin, which has been shown by Rodnina and coworkers to stimulate 50S docking by reversing the inhibitory effects of IF1, also causes reduced reactivity at A1408. Collectively, these data support a model in which IF1 alters the A1408 region of h44 in a way that makes 50S docking unfavorable, and canonical codon-anticodon pairing in the P site restores h44 to a docking-favorable conformation. We also find that, in the absence of factors, the cognate 30S?AUG?fMet-tRNA ternary complex is >1000-fold more stable than the nearcognate 30S?AUC?fMet-tRNA complex. Hence, the selectivity of ternary complex formation is inherently high, exceeding that of initiation in vivo by more than 10-fold. Published by Cold Spring Harbor Laboratory Press.
机译:控制翻译起始以确保准确性的分子机制仍不清楚。在这里,我们提供的证据表明,起始亚基的连接步骤部分受螺旋h44的1408区构象变化的控制。首先,用同源(AUG)或近同源(AUC)起始密码子形成的30S起始复合物的化学探测显示,在存在AUG的情况下,A1408处的IF1依赖性增强会降低。反应性的这种变化是由于构象变化而不是IF1的损失,因为IF1足迹的其他部分未发生变化,并且高浓度的IF1无法减小A1408处的反应性差异。其次,h44中的突变(例如A1413C)会刺激50S对接,并导致A1408的反应性降低。第三,Rodina和同事证明链霉素可通过逆转IF1的抑制作用来刺激50S对接,也导致A1408的反应性降低。这些数据共同支持一个模型,其中IF1改变h44的A1408区域,从而使50S对接不利,而P位点的标准密码子-反密码子配对将h44恢复为对接有利的构象。我们还发现,在没有因素的情况下,关联的30S?AUG?fMet-tRNA三元复合物比接近的关联的30S?AUC?fMet-tRNA复合物稳定> 1000倍。因此,三元复合物形成的选择性固有地很高,超过了体内起始的选择性的十倍以上。由冷泉港实验室出版社出版。

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