首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Codon choice and gene expression: synonymous codons differ in their ability to direct aminoacylated-transfer RNA binding to ribosomes in vitro.
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Codon choice and gene expression: synonymous codons differ in their ability to direct aminoacylated-transfer RNA binding to ribosomes in vitro.

机译:密码子选择和基因表达:同义密码子在体外指导氨基酰化转移RNA与核糖体结合的能力不同。

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摘要

Phe-tRNA (anticodon GAA)--polypeptide-chain elongation factor Tu-GTP ternary complexes react faster with ribosomes programmed with UUC codons than with ribosomes programmed with UUU codons. A similar preference is shown by Leu-tRNA2 (anticodon GAG) complexes, which react faster with ribosomes programmed with CUC than with those programmed with CUU. The difference is seen in the rate of ternary-complex binding to the ribosome; no differences are seen in peptide-bond formation. Highly expressed mRNAs in Escherichia coli favor codons terminating in cytosine rather than uracil when both codons are read by a single tRNA with an anticodon beginning with guanine. The results suggest that intrinsic differences between the efficiencies of synonymous codons play an important role in modulating gene expression in E. coli.
机译:Phe-tRNA(anticodon GAA)-多肽链延长因子Tu-GTP三元复合物与用UUC密码子编程的核糖体的反应比与用UUU密码子编程的核糖体的反应更快。 Leu-tRNA2(anticodon GAG)复合物也显示出类似的偏好,它与用CUC编程的核糖体的反应比用CUU编程的核糖体的反应更快。从三元复合体与核糖体结合的速率可以看出差异。肽键的形成没有差异。当两个密码子均由单个tRNA读取以鸟嘌呤开头的反密码子时,大肠杆菌中高表达的mRNA倾向于密码子终止于胞嘧啶而不是尿嘧啶。结果表明,同义密码子效率之间的内在差异在调节大肠杆菌中的基因表达中起重要作用。

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