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Suppression of the negative effect of minor arginine codons on gene expression; preferential usage of minor codons within the first 25 codons of the Escherichia coli genes.

机译:抑制次要精氨酸密码子对基因表达的负面影响;优先使用大肠杆菌基因前25个密码子中的次要密码子。

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摘要

AGA and AGG codons for arginine are the least used codons in Escherichia coli, which are encoded by a rare tRNA, the product of the dnaY gene. We examined the positions of arginine residues encoded by AGA/AGG codons in 678 E. coli proteins. It was found that AGA/AGG codons appear much more frequently within the first 25 codons. This tendency becomes more significant in those proteins containing only one AGA or AGG codon. Other minor codons such as CUA, UCA, AGU, ACA, GGA, CCC and AUA are also found to be preferentially used within the first 25 codons. The effects of the AGG codon on gene expression were examined by inserting one to five AGG codons after the 10th codon from the initiation codon of the lacZ gene. The production of beta-galactosidase decreased as more AGG codons were inserted. With five AGG codons, the production of beta-galactosidase (Gal-AGG5) completely ceased after a mid-log phase of cell growth. After 22 hr induction of the lacZ gene, the overall production of Gal-AGG5 was 11% of the control production (no insertion of arginine codons). When five CGU codons, the major arginine codon were inserted instead of AGG, the production of beta-galactosidase (Gal-CGU5) continued even after stationary phase and the overall production was 66% of the control. The negative effect of the AGG codons on the Gal-AGG5 production was found to be dependent upon the distance between the site of the AGG codons and the initiation codon. As the distance was increased by inserting extra sequences between the two codons, the production of Gal-AGG5 increased almost linearly up to 8 fold. From these results, we propose that the position of the minor codons in an mRNA plays an important role in the regulation of gene expression possibly by modulating the stability of the initiation complex for protein synthesis.
机译:精氨酸的AGA和AGG密码子是大肠杆菌中使用最少的密码子,由稀有的tRNA(dnaY基因的产物)编码。我们检查了678个大肠杆菌蛋白中由AGA / AGG密码子编码的精氨酸残基的位置。发现在前25个密码子中,AGA / AGG密码子出现的频率更高。在仅包含一个AGA或AGG密码子的蛋白质中,这种趋势变得更加明显。还发现在前25个密码子中优先使用其他次要密码子,例如CUA,UCA,AGU,ACA,GGA,CCC和AUA。通过从lacZ基因的起始密码子的第10个密码子后插入1至5个AGG密码子,检查了AGG密码子对基因表达的影响。随着插入更多的AGG密码子,β-半乳糖苷酶的产量下降。具有五个AGG密码子,β-半乳糖苷酶(Gal-AGG5)的生产在细胞生长进入对数中期后完全停止。在lacZ基因诱导22小时后,Gal-AGG5的总产量为对照产量的11%(未插入精氨酸密码子)。当插入五个CGU密码子(主要的精氨酸密码子)而不是AGG时,即使在固定相后仍继续产生β-半乳糖苷酶(Gal-CGU5),总产量为对照的66%。发现AGG密码子对Gal-AGG5产生的负面影响取决于AGG密码子的位点与起始密码子之间的距离。当通过在两个密码子之间插入额外的序列来增加距离时,Gal-AGG5的产量几乎呈线性增长,达到了8倍。根据这些结果,我们认为mRNA中次要密码子的位置可能在基因表达的调节中起重要作用,可能是通过调节蛋白质合成起始复合物的稳定性来实现的。

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    Chen, G F; Inouye, M;

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  • 年度 1990
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