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mRNA cap recognition: Dominant role of enhanced stacking interactions between methylated bases and protein aromatic side chains

机译:mRNA帽识别:甲基化碱基和蛋白质芳香族侧链之间增强的堆叠相互作用的主要作用

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摘要

We have determined, by high resolution x-ray analysis, 10 structures comprising the mRNA cap-specific methyltransferase VP39 or specific mutants thereof in the presence of methylated nucleobase analogs (N1-methyladenine, N3-methyladenine, N1-methylcytosine, N3-methylcytosine) and their unmethylated counterparts, or nucleoside N7-methylguanosine. Together with solution affinity studies and previous crystallographic data for N7-methylguanosine and its phosphorylated derivatives, these data demonstrate that only methylated, positively charged bases are bound, indicating that their enhanced stacking with two aromatic side chains of VP39 (Tyr 22 and Phe 180) plays a dominant role in cap recognition. Four key features characterize this stacking interaction: (i) near perfect parallel alignment between the sandwiched methylated bases and aromatic side chains, (ii) substantial areas of overlap in the two-stacked rings, (iii) a 3.4-Å interplanar spacing within the overlapping region, and (iv) positive charge in the heterocyclic nucleobase.
机译:我们已经通过高分辨率的X射线分析确定了存在甲基化核碱基类似物(N1-甲基腺嘌呤,N3-甲基腺嘌呤,N1-甲基胞嘧啶,N3-甲基胞嘧啶)的10个包含mRNA帽特异性甲基转移酶VP39或其特定突变体的结构及其未甲基化的对应物,或核苷N7-甲基鸟苷。连同溶液亲和力研究和N7-甲基鸟苷及其磷酸化衍生物的先前晶体学数据,这些数据表明仅结合了甲基化,带正电荷的碱基,表明它们与VP39的两个芳香族侧链(Tyr 22和Phe 180)的堆积增强了在上限识别中起主导作用。堆叠相互作用的四个关键特征是:(i)夹心的甲基化碱基与芳族侧链之间几乎完全平行排列,(ii)两个堆叠环中的大部分重叠区域,(iii)链环内部的平面间距为3.4-Å重叠区域,以及(iv)杂环核碱基中的正电荷。

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