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An adenosine-to-inosine tRNA-editing enzyme that can perform C-to-U deamination of DNA

机译:腺苷到肌苷的tRNA编辑酶,可以进行DNA的C到U脱氨

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摘要

Adenosine-to-inosine editing in the anticodon of tRNAs is essential for viability. Enzymes mediating tRNA adenosine deamination in bacteria and yeast contain cytidine deaminase-conserved motifs, suggesting an evolutionary link between the two reactions. In trypanosomatids, tRNAs undergo both cytidine-to-uridine and adenosine-to-inosine editing, but the relationship between the two reactions is unclear. Here we show that down-regulation of the Trypanosoma brucei tRNA-editing enzyme by RNAi leads to a reduction in both C-to-U and A-to-I editing of tRNA in vivo. Surprisingly, in vitro, this enzyme can mediate A-to-I editing of tRNA and C-to-U deamination of ssDNA but not both in either substrate. The ability to use both DNA and RNA provides a model for a multispecificity editing enzyme. Notably, the ability of a single enzyme to perform two different deamination reactions also suggests that this enzyme still maintains specificities that would have been found in the ancestor deaminase, providing a first line of evidence for the evolution of editing deaminases.
机译:tRNA的反密码子中腺苷到肌苷的编辑对于生存力至关重要。细菌和酵母中介导tRNA腺苷脱氨的酶含有胞苷脱氨酶保守的基序,表明这两个反应之间存在进化联系。在锥虫中,tRNA都经过胞苷-尿苷和腺苷-肌苷编辑,但是这两个反应之间的关系尚不清楚。在这里,我们显示了RNAi对布氏锥虫tRNA编辑酶的下调导致体内tRNA的C到U和A到I编辑的减少。出人意料的是,在体外,这种酶可以介导tRNA的A到I编辑和ssDNA的C到U脱氨,但不能在任何一种底物中都起作用。同时使用DNA和RNA的能力为多特异性编辑酶提供了模型。值得注意的是,单一酶执行两种不同脱氨反应的能力也表明,该酶仍保持着在祖先脱氨酶中已经发现的特异性,为编辑脱氨酶的进化提供了第一线证据。

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