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tRNA Modification and Genetic Code Variations in Animal Mitochondria

机译:动物线粒体中的tRNA修饰和遗传密码变异

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摘要

In animal mitochondria, six codons have been known as nonuniversal genetic codes, which vary in the course of animal evolution. They are UGA (termination codon in the universal genetic code changes to Trp codon in all animal mitochondria), AUA (Ile to Met in most metazoan mitochondria), AAA (Lys to Asn in echinoderm and some platyhelminth mitochondria), AGA/AGG (Arg to Ser in most invertebrate, Arg to Gly in tunicate, and Arg to termination in vertebrate mitochondria), and UAA (termination to Tyr in a planaria and a nematode mitochondria, but conclusive evidence is lacking in this case). We have elucidated that the anticodons of tRNAs deciphering these nonuniversal codons (tRNATrp for UGA, tRNAMet for AUA, tRNAAsn for AAA, and tRNASer and tRNAGly for AGA/AGG) are all modified; tRNATrp has 5-carboxymethylaminomethyluridine or 5-taurinomethyluridine, tRNAMet has 5-formylcytidine or 5-taurinomethyluridine, tRNASer has 7-methylguanosine and tRNAGly has 5-taurinomethyluridine in their anticodon wobble position, and tRNAAsn has pseudouridine in the anticodon second position. This review aims to clarify the structural relationship between these nonuniversal codons and the corresponding tRNA anticodons including modified nucleosides and to speculate on the possible mechanisms for explaining the evolutional changes of these nonuniversal codons in the course of animal evolution.
机译:在动物线粒体中,六个密码子被称为非通用遗传密码,它们在动物进化过程中会有所不同。它们是UGA(在所有动物线粒体中通用密码的通用密码转换为Trp密码子的终止密码子),AUA(在大多数后生动物线粒体中从Ile到Met),AAA(在棘皮动物中从Lys到Asn,以及一些蠕虫线粒体),AGA / AGG(Arg在大多数无脊椎动物中为Ser,在被膜中为Arg,在被膜中为Gly,在脊椎动物线粒体中为Arg,在终止时为Arg,在平面虫和线虫线粒体中,为终止于Tyr的Tyr,但在这种情况下尚无确凿的证据。我们已经阐明了解密这些非通用密码子的tRNA的反密码子(UGA的tRNA Trp ,AUA的tRNA Met ,AAA的tRNA Asn 和(针对AGA / AGG的tRNA Ser 和tRNA Gly )均已修改; tRNA Trp 具有5-羧甲基氨基甲基尿苷或5-taurinomethyluridine,tRNA Met 具有5-甲酰基胞苷或5-taurinomethyluridine,tRNA Ser 具有7-甲基鸟苷和tRNA Gly 的反密码子摆动位置为5-taurinomethyluridine,tRNA Asn 的反密码子第二位置为拟尿苷。这篇综述旨在阐明这些非通用密码子与相应的tRNA反密码子(包括修饰的核苷)之间的结构关系,并推测可能的机制来解释这些非通用密码子在动物进化过程中的进化变化。

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