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首页> 外文期刊>Nature Communications >Structural analysis of human 2′-O-ribose methyltransferases involved in mRNA cap structure formation
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Structural analysis of human 2′-O-ribose methyltransferases involved in mRNA cap structure formation

机译:参与mRNA帽结构形成的人2'- O -核糖甲基转移酶的结构分析

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摘要

The 5′ cap of human messenger RNA contains 2′- O -methylation of the first and often second transcribed nucleotide that is important for its processing, translation and stability. Human enzymes that methylate these nucleotides, termed CMTr1 and CMTr2 , respectively, have recently been identified. However, the structures of these enzymes and their mechanisms of action remain unknown. In the present study, we solve the crystal structures of the active CMTr1 catalytic domain in complex with a methyl group donor and a capped oligoribonucleotide, thereby revealing the mechanism of specific recognition of capped RNA. This mechanism differs significantly from viral enzymes, thus providing a framework for their specific targeting. Based on the crystal structure of CMTr1 , a comparative model of the CMTr2 catalytic domain is generated. This model, together with mutational analysis, leads to the identification of residues involved in RNA and methyl group donor binding.
机译:人信使RNA的5'帽含有第一个和通常第二个转录的核苷酸的2'-O-甲基化,这对于其加工,翻译和稳定性很重要。最近发现了甲基化这些核苷酸的人类酶,分别称为CMTr1和CMTr2。然而,这些酶的结构及其作用机理仍然未知。在本研究中,我们解决了与甲基供体和带帽寡核糖核苷酸复合的活性CMTr1催化域的晶体结构,从而揭示了带帽RNA特异性识别的机理。该机制与病毒酶明显不同,因此为其特异性靶向提供了框架。根据CMTr1的晶体结构,生成CMTr2催化域的比较模型。该模型与突变分析一起导致鉴定涉及RNA和甲基供体结合的残基。

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