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首页> 外文期刊>Nucleic acids research >Unconventional decoding of the AUA codon as methionine by mitochondrial tRNAMet with the anticodon f5CAU as revealed with a mitochondrial in vitro translation system
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Unconventional decoding of the AUA codon as methionine by mitochondrial tRNAMet with the anticodon f5CAU as revealed with a mitochondrial in vitro translation system

机译:线粒体tRNAMet与反密码子f5CAU对AUA密码子作为蛋氨酸的非常规解码,如线粒体体外翻译系统所示

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Mitochondrial (mt) tRNAMet has the unusual modified nucleotide 5-formylcytidine (f5C) in the first position of the anticodon. This tRNA must translate both AUG and AUA as methionine. By constructing an in vitro translation system from bovine liver mitochondria, we examined the decoding properties of the native mt tRNAMet carrying f5C in the anticodon compared to a transcript that lacks the modification. The native mt Met-tRNA could recognize both AUA and AUG codons as Met, but the corresponding synthetic tRNAMet lacking f5C (anticodon CAU), recognized only the AUG codon in both the codon-dependent ribosomal binding and in vitro translation assays. Furthermore, the Escherichia coli elongator tRNAMetm with the anticodon ac4CAU (ac4C = 4-acetylcytidine) and the bovine cytoplasmic initiator tRNAMet (anticodon CAU) translated only the AUG codon for Met on mt ribosome. The codon recognition patterns of these tRNAs were the same on E. coli ribosomes. These results demonstrate that the f5C modification in mt tRNAMet plays a crucial role in decoding the nonuniversal AUA codon as Met, and that the genetic code variation is compensated by a change in the tRNA anticodon, not by a change in the ribosome. Base pairing models of f5C-G and f5C-A based on the chemical properties of f5C are presented.
机译:线粒体(mt)tRNA Met 在反密码子的第一个位置具有不寻常的修饰核苷酸5-甲酰基胞苷(f 5 C)。该tRNA必须将AUG和AUA都翻译为蛋氨酸。通过构建牛肝线粒体的体外翻译系统,我们检查了反密码子中带有f 5 C的天然mt tRNA Met 的解码特性,而该转录本缺少修改。天然的mt Met-tRNA可以将AUA和AUG密码子都识别为Met,但是相应的合成合成的缺乏f 5 C的tRNA Met (反义词CAU)只能识别AUG密码子。在依赖密码子的核糖体结合和体外翻译实验中均可使用。此外,大肠杆菌延伸子tRNA Met m 带有反密码子ac 4 CAU(ac 4 C = 4-乙酰胞苷)和牛细胞质启动子tRNA Met (anticodon CAU)仅翻译了mt核糖体上Met的AUG密码子。这些tRNA的密码子识别模式在大肠杆菌核糖体上是相同的。这些结果表明,mt tRNA Met 中的f 5 C修饰在将非通用AUA密码子解码为Met方面起着至关重要的作用,并且遗传密码变异可通过a补偿。 tRNA反密码子的变化,而不是核糖体的变化。提出了基于f 5 C化学性质的f 5 C-G和f 5 C-A碱基配对模型。

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