首页> 外文OA文献 >Evidence that the supE44 Mutation of Escherichia coli Is an Amber Suppressor Allele of glnX and that It Also Suppresses Ochre and Opal Nonsense Mutations▿
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Evidence that the supE44 Mutation of Escherichia coli Is an Amber Suppressor Allele of glnX and that It Also Suppresses Ochre and Opal Nonsense Mutations▿

机译:大肠杆菌的supE44突变是glnX的琥珀抑制等位基因,也抑制O石和蛋白石无义突变的证据▿

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摘要

Translational readthrough of nonsense codons is seen not only in organisms possessing one or more tRNA suppressors but also in strains lacking suppressors. Amber suppressor tRNAs have been reported to suppress only amber nonsense mutations, unlike ochre suppressors, which can suppress both amber and ochre mutations, essentially due to wobble base pairing. In an Escherichia coli strain carrying the lacZU118 episome (an ochre mutation in the lacZ gene) and harboring the supE44 allele, suppression of the ochre mutation was observed after 7 days of incubation. The presence of the supE44 lesion in the relevant strains was confirmed by sequencing, and it was found to be in the duplicate copy of the glnV tRNA gene, glnX. To investigate this further, an in vivo luciferase assay developed by D. W. Schultz and M. Yarus (J. Bacteriol. 172:595-602, 1990) was employed to evaluate the efficiency of suppression of amber (UAG), ochre (UAA), and opal (UGA) mutations by supE44. We have shown here that supE44 suppresses ochre as well as opal nonsense mutations, with comparable efficiencies. The readthrough of nonsense mutations in a wild-type E. coli strain was much lower than that in a supE44 strain when measured by the luciferase assay. Increased suppression of nonsense mutations, especially ochre and opal, by supE44 was found to be growth phase dependent, as this phenomenon was only observed in stationary phase and not in logarithmic phase. These results have implications for the decoding accuracy of the translational machinery, particularly in stationary growth phase.
机译:不仅在具有一种或多种tRNA抑制子的生物中而且在缺乏抑制子的菌株中也看到了无意义密码子的翻译通读。据报道,琥珀色抑制物tRNA仅抑制琥珀色无义突变,而o石抑制物则可抑制琥珀色和o石突变,这主要归因于碱基配对。在携带lacZU118附加体(lacZ基因中的o石突变)并带有supE44等位基因的大肠杆菌菌株中,孵育7天后观察到the石突变受到抑制。通过测序证实了在相关菌株中supE44病变的存在,并且发现其存在于glnV tRNA基因glnX的重复拷贝中。为了对此进行进一步研究,采用了DW Schultz和M. Yarus(J. Bacteriol。172:595-602,1990)开发的体内萤光素酶测定方法来评估琥珀(UAG),o石(UAA)的抑制效率, supE44和蛋白石(UGA)突变。我们在这里显示了supE44可以抑制o石以及蛋白石废话突变,并且具有相当的效率。当通过荧光素酶测定法测量时,野生型大肠杆菌菌株中无意义突变的通读率远低于supE44菌株中。发现通过supE44对废话突变(尤其是o石和蛋白石)的抑制作用增加是生长阶段依赖性的,因为这种现象仅在固定期而不是对数期观察到。这些结果对翻译机器的解码精度有影响,特别是在平稳增长阶段。

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