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Structural insight into the functional mechanism of Nep1/Emg1 N1-specific pseudouridine methyltransferase in ribosome biogenesis

机译:Nep1 / Emg1 N1特异性假尿苷甲基转移酶在核糖体生物发生中的功能机制的结构性见解。

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Nucleolar Essential Protein 1 (Nep1) is required for small subunit (SSU) ribosomal RNA (rRNA) maturation and is mutated in Bowen–Conradi Syndrome. Although yeast (Saccharomyces cerevisiae) Nep1 interacts with a consensus sequence found in three regions of SSU rRNA, the molecular details of the interaction are unknown. Nep1 is a SPOUT RNA methyltransferase, and can catalyze methylation at the N1 of pseudouridine. Nep1 is also involved in assembly of Rps19, an SSU ribosomal protein. Mutations in Nep1 that result in decreased methyl donor binding do not result in lethality, suggesting that enzymatic activity may not be required for function, and RNA binding may play a more important role. To study these interactions, the crystal structures of the scNep1 dimer and its complexes with RNA were determined. The results demonstrate that Nep1 recognizes its RNA site via base-specific interactions and stabilizes a stem-loop in the bound RNA. Furthermore, the RNA structure observed contradicts the predicted structures of the Nep1-binding sites within mature rRNA, suggesting that the Nep1 changes rRNA structure upon binding. Finally, a uridine base is bound in the active site of Nep1, positioned for a methyltransfer at the C5 position, supporting its role as an N1-specific pseudouridine methyltransferase.
机译:小亚基(SSU)核糖体RNA(rRNA)成熟需要核仁必需蛋白1(Nep1),并且在Bowen-Conradi综合征中会发生突变。虽然酵母(Saccharomyces cerevisiae)Nep1与在SSU rRNA的三个区域中发现的共有序列相互作用,但相互作用的分子细节尚不清楚。 Nep1是一种SPOUT RNA甲基转移酶,可以催化假尿苷的N1处的甲基化。 Nep1也参与SSU核糖体蛋白Rps19的组装。 Nep1中导致甲基供体结合减少的突变不会导致致死性,这表明功能可能不需要酶活性,RNA结合可能起更重要的作用。为了研究这些相互作用,确定了scNep1二聚体及其与RNA的复合物的晶体结构。结果表明,Nep1通过碱基特异性相互作用识别其RNA位点并稳定结合的RNA中的茎环。此外,观察到的RNA结构与成熟rRNA中Nep1结合位点的预测结构相矛盾,表明Nep1结合后会改变rRNA结构。最后,尿苷碱基结合在Nep1的活性位点上,该位点在C5位置进行甲基转移,从而支持其作为N1特异性假尿苷甲基转移酶的作用。

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