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Losing the stem-loop structure from metazoan mitochondrial tRNAs and co-evolution of interacting factors

机译:从后生线粒体tRNA失去茎-环结构并相互作用因子共同进化

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摘要

Conventional tRNAs have highly conserved sequences, four-armed cloverleaf secondary structures, and L-shaped tertiary structures. However, metazoan mitochondrial tRNAs contain several exceptional structures. Almost all tRNAsSer for AGY/N codons lack the D-arm. Furthermore, in some nematodes, no four-armed cloverleaf-type tRNAs are present: two tRNAsSer without the D-arm and 20 tRNAs without the T-arm are found. Previously, we showed that in nematode mitochondria, an extra elongation factor Tu (EF-Tu) has evolved to support interaction with tRNAs lacking the T-arm, which interact with C-terminal domain 3 in conventional EF-Tu. Recent mitochondrial genome analyses have suggested that in metazoan lineages other than nematodes, tRNAs without the T-arm are present. Furthermore, even more simplified tRNAs are predicted in some lineages. In this review, we discuss mitochondrial tRNAs with divergent structures, as well as protein factors, including EF-Tu, that support the function of truncated metazoan mitochondrial tRNAs.
机译:常规的tRNA具有高度保守的序列,四臂苜蓿叶形二级结构和L形三级结构。但是,后生线粒体tRNA包含几个特殊的结构。几乎所有用于AGY / N密码子的tRNA Ser 都没有D臂。此外,在某些线虫中,不存在四臂的苜蓿叶形tRNA:发现了两个不带D臂的tRNA Ser 和不带T臂的20个tRNA。以前,我们表明在线虫线粒体中,已经形成了一个额外的延伸因子Tu(EF-Tu)以支持与缺少T臂的tRNA的相互作用,而tRNA与常规EF-Tu中的C末端结构域3相互作用。最近的线粒体基因组分析表明,在线虫以外的后生动物谱系中,存在没有T臂的tRNA。此外,在某些谱系中甚至预测到更简化的tRNA。在这篇综述中,我们讨论具有不同结构的线粒体tRNA,以及支持截短后生线粒体tRNA功能的蛋白质因子(包括EF-Tu)。

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