首页> 美国卫生研究院文献>Journal of Virology >Crystal Structures of Two Coronavirus ADP-Ribose-1″-Monophosphatases and Their Complexes with ADP-Ribose: a Systematic Structural Analysis of the Viral ADRP Domain
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Crystal Structures of Two Coronavirus ADP-Ribose-1″-Monophosphatases and Their Complexes with ADP-Ribose: a Systematic Structural Analysis of the Viral ADRP Domain

机译:两个冠状病毒ADP核糖-1-单磷酸酶及其与ADP核糖的复合物的晶体结构:病毒ADRP域的系统结构分析。

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摘要

The coronaviruses are a large family of plus-strand RNA viruses that cause a wide variety of diseases both in humans and in other organisms. The coronaviruses are composed of three main lineages and have a complex organization of nonstructural proteins (nsp's). In the coronavirus, nsp3 resides a domain with the macroH2A-like fold and ADP-ribose-1"-monophosphatase (ADRP) activity, which is proposed to play a regulatory role in the replication process. However, the significance of this domain for the coronaviruses is still poorly understood due to the lack of structural information from different lineages. We have determined the crystal structures of two viral ADRP domains, from the group I human coronavirus 229E and the group III avian infectious bronchitis virus, as well as their respective complexes with ADP-ribose. The structures were individually solved to elucidate the structural similarities and differences of the ADRP domains among various coronavirus species. The active-site residues responsible for mediating ADRP activity were found to be highly conserved in terms of both sequence alignment and structural superposition, whereas the substrate binding pocket exhibited variations in structure but not in sequence. Together with data from a previous analysis of the ADRP domain from the group II severe acute respiratory syndrome coronavirus and from other related functional studies of ADRP domains, a systematic structural analysis of the coronavirus ADRP domains was realized for the first time to provide a structural basis for the function of this domain in the coronavirus replication process.
机译:冠状病毒是正链RNA病毒的一大家族,可在人类和其他生物体中引起多种疾病。冠状病毒由三个主要谱系组成,并具有复杂的非结构蛋白(nsp's)组织。在冠状病毒中,nsp3驻留在一个具有macroH2A样折叠和ADP-核糖-1“-单磷酸酶(ADRP)活性的结构域中,该结构在复制过程中起调节作用。由于缺乏来自不同谱系的结构信息,人们对冠状病毒的了解仍然很少,我们已经确定了第一组人冠状病毒229E和第三组禽传染性支气管炎病毒的两个病毒ADRP结构域的晶体结构,以及它们各自的复合物分别解析结构以阐明各种冠状病毒物种之间ADRP结构域的结构相似性和差异,发现负责介导ADRP活性的活性位点残基在序列比对和结构上均高度保守叠加,而底物结合袋显示出结构变化,但没有顺序变化。先前对第二组严重急性呼吸系统综合症冠状病毒和其他相关ADRP域功能研究中的ADRP域的分析,首次实现了对冠状病毒ADRP域的系统结构分析,从而为冠状病毒的功能提供了结构基础该域在冠状病毒复制过程中。

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