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Cross Kingdom Functional Conservation of the Core Universally Conserved Threonylcarbamoyladenosine tRNA Synthesis Enzymes

机译:核心通用保守的苏氨甲酰氨基腺苷tRNA合成酶的跨界功能保守

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摘要

Threonylcarbamoyladenosine (t6A) is a universal modification located in the anticodon stem-loop of tRNAs. In yeast, both cytoplasmic and mitochondrial tRNAs are modified. The cytoplasmic t6A synthesis pathway was elucidated and requires Sua5p, Kae1p, and four other KEOPS complex proteins. Recent in vitro work suggested that the mitochondrial t6A machinery of Saccharomyces cerevisiae is composed of only two proteins, Sua5p and Qri7p, a member of the Kae1p/TsaD family (L. C. K. Wan et al., Nucleic Acids Res. 41:6332–6346, 2013, ). Sua5p catalyzes the first step leading to the threonyl-carbamoyl-AMP intermediate (TC-AMP), while Qri7 transfers the threonyl-carbamoyl moiety from TC-AMP to tRNA to form t6A. Qri7p localizes to the mitochondria, but Sua5p was reported to be cytoplasmic. We show that Sua5p is targeted to both the cytoplasm and the mitochondria through the use of alternative start sites. The import of Sua5p into the mitochondria is required for this organelle to be functional, since the TC-AMP intermediate produced by Sua5p in the cytoplasm is not transported into the mitochondria in sufficient amounts. This minimal t6A pathway was characterized in vitro and, for the first time, in vivo by heterologous complementation studies in Escherichia coli. The data revealed a potential for TC-AMP channeling in the t6A pathway, as the coexpression of Qri7p and Sua5p is required to complement the essentiality of the E. coli tsaD mutant. Our results firmly established that Qri7p and Sua5p constitute the mitochondrial pathway for the biosynthesis of t6A and bring additional advancement in our understanding of the reaction mechanism.
机译:苏糖氨甲酰腺苷(t 6 A)是位于tRNA反密码子茎环中的通用修饰。在酵母中,胞质和线粒体tRNA均被修饰。阐明了胞质t 6 合成途径,并需要Sua5p,Kae1p和其他四种KEOPS复杂蛋白。最近的体外研究表明,酿酒酵母的线粒体t 6 机器仅由Kae1p / TsaD家族成员Sua5p和Qri7p两种蛋白质组成(LCK Wan等,核酸Res.41:6332-6346,2013,)。 Sua5p催化了第一步,生成了苏氨酰-氨基甲酰基-AMP中间体(TC-AMP),而Qri7将苏氨酸-氨基甲酰基部分从TC-AMP转移到tRNA,形成t 6 A。 Qri7p定位于线粒体,但据报道Sua5p具有细胞质。我们显示Sua5p通过使用替代起始位点同时针对细胞质和线粒体。为了使该细胞器发挥功能,需要将Sua5p导入线粒体,因为Sua5p在细胞质中产生的TC-AMP中间体没有足够的量转运到线粒体中。通过在大肠杆菌中的异源互补研究,体外和首次在体内表征了该最小的t 6 途径。数据揭示了在t 6 A途径中TC-AMP通道化的潜力,因为需要Qri7p和Sua5p的共表达来补充大肠杆菌tsaD突变体的必需性。我们的研究结果牢固地确定了Qri7p和Sua5p构成了t 6 A生物合成的线粒体途径,为我们对反应机理的理解提供了新的进展。

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