首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Structure and stability of the Human respiratory syncytial virus M2–1 RNA-binding core domain reveals a compact and cooperative folding unit
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Structure and stability of the Human respiratory syncytial virus M2–1 RNA-binding core domain reveals a compact and cooperative folding unit

机译:人类呼吸道合胞病毒M2-1 RNA结合核心结构域的结构和稳定性揭示了一个紧凑而协作的折叠单元

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摘要

Human syncytial respiratory virus is a nonsegmented negative-strand RNA virus with serious implications for respiratory disease in infants, and has recently been reclassified into a new family, Pneumoviridae. One of the main reasons for this classification is the unique presence of a transcriptional antiterminator, called M2–1. The puzzling mechanism of action of M2–1, which is a rarity among antiterminators in viruses and is part of the RNA polymerase complex, relies on dissecting the structure and function of this multidomain tetramer. The RNA-binding activity is located in a monomeric globular ‘core’ domain, a high-resolution crystal structure of which is now presented. The structure reveals a compact domain which is superimposable on the full-length M2–1 tetramer, with additional electron density for the C-terminal tail that was not observed in the previous models. Moreover, its folding stability was determined through chemical denaturation, which shows that the secondary and tertiary structure unfold concomitantly, which is indicative of a two-state equilibrium. These results constitute a further step in the understanding of this unique RNA-binding domain, for which there is no sequence or structural counterpart outside this virus family, in addition to its implications in transcription regulation and its likeliness as an antiviral target.
机译:人合胞体呼吸道病毒是一种无节段的负链RNA病毒,对婴儿的呼吸道疾病有严重影响,最近被重新归类为新的肺炎科。进行这种分类的主要原因之一是独特的转录抗终止剂M2-1的存在。 M2-1的令人费解的作用机制是病毒中抗终止剂中的一种罕见,并且是RNA聚合酶复合物的一部分,它依赖于解剖该多结构域四聚体的结构和功能。 RNA结合活性位于单体球状“核心”结构域,该结构现已呈现出高分辨率的晶体结构。该结构揭示了一个紧凑的结构域,该结构域可重叠在全长M2-1的四聚体上,并且C末端尾部具有额外的电子密度,这在以前的模型中没有观察到。此外,它的折叠稳定性是通过化学变性确定的,这表明二级和三级结构是同时展开的,这表明处于两态平衡。这些结果构成了对这一独特的RNA结合结构域的进一步了解,为此,除了其在转录调控中的作用及其作为抗病毒靶标的可能性外,在该病毒家族之外没有序列或结构对应物。

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