首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Aquifex aeolicus tRNA (N2N2-Guanine)-dimethyltransferase (Trm1) Catalyzes Transfer of Methyl Groups Not Only to Guanine 26 but Also to Guanine 27 in tRNA
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Aquifex aeolicus tRNA (N2N2-Guanine)-dimethyltransferase (Trm1) Catalyzes Transfer of Methyl Groups Not Only to Guanine 26 but Also to Guanine 27 in tRNA

机译:Aquifex aeolicus tRNA(N2N2-鸟嘌呤)-二甲基转移酶(Trm1)催化甲基不仅转移到鸟嘌呤26中而且转移到鸟嘌呤27中。

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摘要

Transfer RNA (N2,N2-guanine)-dimethyltransferase (Trm1) catalyzes N2,N2-dimethylguanine formation at position 26 (m22G26) in tRNA. In the reaction, N2-guanine at position 26 (m2G26) is generated as an intermediate. The trm1 genes are found only in archaea and eukaryotes, although it has been reported that Aquifex aeolicus, a hyper-thermophilic eubacterium, has a putative trm1 gene. To confirm whether A. aeolicus Trm1 has tRNA methyltransferase activity, we purified recombinant Trm1 protein. In vitro methyl transfer assay revealed that the protein has a strong tRNA methyltransferase activity. We confirmed that this gene product is expressed in living A. aeolicus cells and that the enzymatic activity exists in cell extract. By preparing 22 tRNA transcripts and testing their methyl group acceptance activities, it was demonstrated that this Trm1 protein has a novel tRNA specificity. Mass spectrometry analysis revealed that it catalyzes methyl transfers not only to G26 but also to G27 in substrate tRNA. Furthermore, it was confirmed that native tRNACys has an m22G26m2G27 or m22G26m22G27 sequence, demonstrating that these modifications occur in living cells. Kinetic studies reveal that the m2G26 formation is faster than the m2G27 formation and that disruption of the G27-C43 base pair accelerates velocity of the G27 modification. Moreover, we prepared an additional 22 mutant tRNA transcripts and clarified that the recognition sites exist in the T-arm structure. This long distance recognition results in multisite recognition by the enzyme.
机译:转移RNA(N 2 ,N 2 -鸟嘌呤)-二甲基转移酶(Trm1)催化N 2 ,N 2 -二甲基鸟嘌呤在tRNA中的位置26(m 2 2G26)形成。在该反应中,在位置26处生成N 2 -鸟嘌呤(m 2 G26)作为中间体。 trm1基因仅在古细菌和真核生物中发现,尽管有报道说超嗜热的真细菌Aquifex aeolicus具有推定的trm1基因。为了确认A. aeolicus Trm1是否具有tRNA甲基转移酶活性,我们纯化了重组Trm1蛋白。体外甲基转移测定显示该蛋白质具有很强的tRNA甲基转移酶活性。我们证实该基因产物在活的拟南芥细胞中表达,并且酶活性存在于细胞提取物中。通过制备22种tRNA转录本并测试其甲基基团接受活性,证明该Trm1蛋白具有新颖的tRNA特异性。质谱分析显示,它不仅催化底物tRNA中的甲基转移到G26,而且还转移到G27。此外,已证实天然tRNA Cys 具有m 2 2G26m 2 G27或m 2 2G26m 2 2G27序列,表明这些修饰发生在活细胞中。动力学研究表明,m 2 G26的形成要快于m 2 G27的形成,而G27-C43碱基对的破坏会加速G27修饰的速度。此外,我们准备了另外22个突变tRNA转录本,并阐明了识别位点存在于T臂结构中。这种长距离识别导致酶的多位点识别。

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