首页> 外文期刊>Journal of Molecular Biology >Coronavirus N protein N-terminal domain (NTD) specifically binds the transcriptional regulatory sequence (TRS) and melts TRS-cTRS RNA duplexes.
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Coronavirus N protein N-terminal domain (NTD) specifically binds the transcriptional regulatory sequence (TRS) and melts TRS-cTRS RNA duplexes.

机译:冠状病毒N蛋白N末端域(NTD)特异性结合转录调节序列(TRS),并使TRS-cTRS RNA双链体融化。

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摘要

All coronaviruses (CoVs), including the causative agent of severe acute respiratory syndrome (SARS), encode a nucleocapsid (N) protein that harbors two independent RNA binding domains of known structure, but poorly characterized RNA binding properties. We show here that the N-terminal domain (NTD) of N protein from mouse hepatitis virus (MHV), a virus most closely related to SARS-CoV, employs aromatic amino acid-nucleobase stacking interactions with a triple adenosine motif to mediate high-affinity binding to single-stranded RNAs containing the transcriptional regulatory sequence (TRS) or its complement (cTRS). Stoichiometric NTD fully unwinds a TRS-cTRS duplex that mimics a transiently formed transcription intermediate in viral subgenomic RNA synthesis. Mutation of the solvent-exposed Y127, positioned on the beta-platform surface of our 1.75 A structure, binds the TRS far less tightly and is severely crippled in its RNA unwinding activity. In contrast, the C-terminal domain (CTD) exhibits no RNA unwinding activity. Viruses harboring Y127A N mutation are strongly selected against and Y127A N does not support an accessory function in MHV replication. We propose that the helix melting activity of the coronavirus N protein NTD plays a critical accessory role in subgenomic RNA synthesis and other processes requiring RNA remodeling.
机译:所有冠状病毒(CoV),包括严重急性呼吸系统综合症(SARS)的病原体,都编码一个核衣壳(N)蛋白,该蛋白具有两个已知结构的独立RNA结合结构域,但其RNA结合特性不佳。我们在此处显示,来自小鼠肝炎病毒(MHV)(一种与SARS-CoV关系最密切的病毒)的N蛋白的N末端结构域(NTD)使用具有三重腺苷基序的芳香族氨基酸-核碱基堆积相互作用来介导高-与含有转录调控序列(TRS)或其互补序列(cTRS)的单链RNA亲和结合。化学计量NTD完全解开了TRS-cTRS双链体,该双链体模仿了病毒亚基因组RNA合成中的瞬时形成的转录中间体。暴露在溶剂中的Y127突变位于我们的1.75 A结构的β平台表面上,其与TRS的结合紧密度大大降低,并严重破坏了其RNA解链活性。相反,C末端结构域(CTD)没有RNA解旋活性。强烈建议选择带有Y127A N突变的病毒,而Y127A N在MHV复制中不支持辅助功能。我们建议,冠状病毒N蛋白NTD的螺旋融解活性在亚基因组RNA合成和其他需要RNA重塑的过程中起着至关重要的辅助作用。

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