【2h】

Case for the genetic code as a triplet of triplets

机译:三联体作为三联体的遗传密码案例

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摘要

The efficiency of codon translation in vivo is controlled by many factors, including codon context. At a site early in the Salmonella flgM gene, the effects on translation of replacing codons Thr6 and Pro8 of flgM with synonymous alternates produced a 600-fold range in FlgM activity. Synonymous changes at Thr6 and Leu9 resulted in a twofold range in FlgM activity. The level of FlgM activity produced by any codon arrangement was directly proportional to the degree of in vivo ribosome stalling at synonymous codons. Synonymous codon suppressors that corrected the effect of a translation-defective synonymous flgM allele were restricted to two codons flanking the translation-defective codon. The various codon arrangements had no apparent effects on flgM mRNA stability or predicted mRNA secondary structures. Our data suggest that efficient mRNA translation is determined by a triplet-of-triplet genetic code. That is, the efficiency of translating a particular codon is influenced by the nature of the immediately adjacent flanking codons. A model explains these codon-context effects by suggesting that codon recognition by elongation factor-bound aminoacyl-tRNA is initiated by hydrogen bond interactions between the first two nucleotides of the codon and anticodon and then is stabilized by base-stacking energy over three successive codons.
机译:体内密码子翻译的效率受许多因素控制,包括密码子上下文。在沙门氏菌flgM基因早期的一个位点,用同义替代物替换flgM的密码子Thr6和Pro8的翻译效果产生了600倍的FlgM活性。 Thr6和Leu9的同义变化导致FlgM活性的范围扩大了两倍。由任何密码子排列产生的FlgM活性水平与体内核糖体停在同义密码子上的程度成正比。纠正翻译缺陷同义flgM等位基因影响的同义密码子抑制子仅限于翻译缺陷密码子侧翼的两个密码子。各种密码子排列对flgM mRNA稳定性或预测的mRNA二级结构没有明显影响。我们的数据表明有效的mRNA翻译是由三联体三联体遗传密码决定的。即,翻译特定密码子的效率受紧邻的侧翼密码子的性质影响。一个模型解释了这些密码子上下文效应,表明通过延伸因子结合的氨酰基-tRNA进行的密码子识别是由密码子和反密码子的前两个核苷酸之间的氢键相互作用引发的,然后通过三个连续密码子上的碱基堆积能量来稳定。

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