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Translation initiation with GUC codon in the archaeon Halobacterium salinarum: implications for translation of leaderless mRNA and strict correlation between translation initiation and presence of mRNA

机译:古细菌盐杆菌中GUC密码子的翻译起始:对无前导mRNA的翻译的意义以及翻译起始和mRNA存在之间的严格相关性

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We have investigated whether anticodon sequence mutant of an archaeal initiator tRNA can initiate protein synthesis using reporter genes carrying mutations in the initiation codon. Halobacterium salinarum was used as the model organism and the bacterio-opsin gene (bop), which encodes the precursor of the protein component of the purple membrane protein bacterio-opsin (Bop), was chosen as the reporter. We demonstrate that a CAU to GAC anticodon sequence mutant of Haloferax volcanii initiator tRNA can initiate Bop protein synthesis using GUC as the initiation codon in H. salinarum. We generated four mutant bop genes, each carrying the AUG to GUC initiation codon mutation, with or without a compensatory mutation to maintain a predicted stem-loop structure at the 5'-end of the bop mRNA, and with or without mutations to test translation initiation at a site corresponding to the amino terminus of mature bacterio-opsin. H. salinarum chromosomal recombinants containing these mutant genes were phenotypically Pum(-) (purple membrane negative). Upon transformation with a plasmid carrying the mutant initiator tRNA gene, only strains designed to maintain the bop mRNA stem-loop structure produced Bop and were phenotypically Pum(+) as indicated by purple colony colour, and immunoblotting and spectral analysis of cell extracts. Thus GUC can serve as an initiation codon in archaea and the stem-loop structure in the bop mRNA is important for translation. Interestingly, for the same mutant mRNA, only transformants that produce Bop protein contain bop mRNA. These results suggest either a strong coupling between translation and mRNA stability or strong transcriptional polarity in H. salinarum.
机译:我们已经研究了古细菌启动子tRNA的反密码子序列突变体是否可以使用携带起始密码子突变的报告基因启动蛋白质合成。用盐卤杆菌作为模型生物,并选择编码紫色膜蛋白细菌视蛋白(Bop)的蛋白质成分前体的细菌视蛋白基因(bop)作为报告基因。我们证明了Haloferax volcanii启动子tRNA的CAU到GAC反密码子序列突变体可以使用GUC作为盐沼中的起始密码子来启动Bop蛋白质合成。我们生成了四个突变的bop基因,每个基因都带有AUG到GUC起始密码子突变,带有或不带有补偿性突变,可在bop mRNA的5'端维持预测的茎环结构,以及带有或不带有突变以测试翻译在与成熟的细菌视蛋白的氨基末端相对应的位点起始。含有这些突变基因的盐沼嗜血杆菌染色体重组体在表型上为Pum(-)(紫色膜阴性)。用携带突变型启动子tRNA基因的质粒转化后,只有设计用于维持bop mRNA茎环结构的菌株才能产生Bop,并且表现为表型Pum(+),如紫色菌落颜色所示,并对细胞提取物进行了免疫印迹和光谱分析。因此,GUC可以作为古细菌中的起始密码子,并且bop mRNA中的茎环结构对于翻译很重要。有趣的是,对于相同的突变mRNA,只有产生Bop蛋白的转化体才含有bop mRNA。这些结果表明在盐沼中翻译与mRNA稳定性之间存在强耦合或转录极性较强。

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