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How initiation factors maximize the accuracy of tRNA selection in initiation of bacterial protein synthesis

机译:起始因子如何在细菌蛋白质合成起始中最大程度地提高tRNA选择的准确性

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During initiation of bacterial protein synthesis, messenger RNA and fMet-tRNA(fMet) bind to the 30S ribosomal subunit together with initiation factors IF1, IF2, and IF3. Docking of the 30S preinitiation complex to the 50S ribosomal subunit results in a peptidyl-transfer competent 70S ribosome. Initiation with an elongator tRNA may lead to frameshift and an aberrant N-terminal sequence in the nascent protein. We show how the occurrence of initiation errors is minimized by (1) recognition of the formyl group by the synergistic action of IF2 and IF1, (2) uniform destabilization of the binding of all tRNAs to the 30S subunit by IF3, and (3) an optimal distance between the Shine-Dalgarno sequence and the initiator codon. We suggest why IF1 is essential for E. coli, discuss the role of the G-C base pairs in the anticodon stem of some tRNAs, and clarify gene expression changes with varying IF3 concentration in the living cell.
机译:在细菌蛋白质合成的起始过程中,信使RNA和fMet-tRNA(fMet)与起始因子IF1,IF2和IF3一起与30S核糖体亚基结合。 30S预起始复合物与50S核糖体亚基对接会产生肽基转移感受态70S核糖体。延伸子tRNA的起始可能导致新生蛋白的移码和N端异常序列。我们展示了如何通过(1)通过IF2和IF1的协同作用识别甲酰基来最小化启动错误的发生,(2)IF3使所有tRNA与30S亚基的结合均匀不稳定,以及(3) Shine-Dalgarno序列与起始密码子之间的最佳距离。我们提出了为什么IF1对大肠杆菌必不可少的原因,讨论了G-C碱基对在某些tRNA的反密码子茎中的作用,并阐明了随着活细胞中IF3浓度的变化基因表达的变化。

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