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在大肠杆菌基因中,只有新生肽链中的最后几个氨基酸会影响翻译终止。

Only the last amino acids in the nascent peptide influence translation termination in Escherichia coli genes.

作者信息

Mottagui-Tabar S, Isaksson L A

机构信息

Department of Microbiology, Stockholm University, Sweden.

出版信息

FEBS Lett. 1997 Sep 1;414(1):165-70. doi: 10.1016/s0014-5793(97)00978-2.

Abstract

Efficiency of translation termination is affected if the last two amino acids in the nascent peptide are changed [1,2]. By changing the corresponding codons upstream of the stop signal UGAA, we have analyzed if the -3 to -6 amino acids at the C-terminal region of the nascent peptide also affect termination. Lysine at position -3 gave increased readthrough, whereas a total of 28 variations at positions -4, -5, and -6 showed no significant effect on readthrough. The 3'-ends corresponding to the last six codons in 27 Escherichia coli genes were inserted upstream of a stop codon in the 3A' translation assay gene [1]. Readthrough of the stop codon was measured and a possible correlation with the Codon Adaptation Index (CAI) 131 of the respective genes was investigated. Sequences from genes with low CAI do not give any such correlation, whereas sequences from genes with high CAI values are correlated with high termination efficiency. This correlation disappears if the -1 and -2 codons/amino acids are changed. The results suggest that mainly the terminal dipeptide of the terminal hexapeptide sequence has an influence on termination in the tested E. coli genes. This influence is dependent on the charge of the -2 amino acid and is correlated with the alpha-helix propensity of the -1 amino acid, in accordance with results obtained from synthetic gene constructs [1,2].

摘要

如果新生肽链的最后两个氨基酸发生改变,翻译终止效率会受到影响[1,2]。通过改变终止信号UGAA上游的相应密码子,我们分析了新生肽链C末端区域的-3至-6位氨基酸是否也会影响终止。-3位的赖氨酸导致通读增加,而-4、-5和-6位总共28种变异对通读没有显著影响。在3A'翻译检测基因中,将27个大肠杆菌基因中最后六个密码子对应的3'末端插入到终止密码子上游[1]。测量终止密码子的通读情况,并研究其与各个基因的密码子适应指数(CAI)[131]的可能相关性。低CAI值基因的序列不存在这种相关性,而高CAI值基因的序列与高终止效率相关。如果-1和-2密码子/氨基酸发生改变,这种相关性就会消失。结果表明,在测试的大肠杆菌基因中,主要是末端六肽序列的末端二肽对终止有影响。这种影响取决于-2位氨基酸的电荷,并与-1位氨基酸的α-螺旋倾向相关,这与从合成基因构建体获得的结果一致[1,2]。

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