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诺如病毒 P 结构域的末端修饰导致了一种新型的亚病毒颗粒,即小 P 颗粒。

Terminal modifications of norovirus P domain resulted in a new type of subviral particles, the small P particles.

机构信息

Division of Infectious Diseases, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229-3039, USA.

出版信息

Virology. 2011 Feb 20;410(2):345-52. doi: 10.1016/j.virol.2010.11.017. Epub 2010 Dec 23.

Abstract

The protruding (P) domain of norovirus VP1 is responsible for immune recognition and host receptor interaction. Our previous studies have demonstrated that a modification of the ends of the P domain affects the conformation and/or function of the P protein. An expression of the P domain with or without the hinge, or with an additional cysteine at either ends of the P protein resulted in P dimers and/or P particles. Here we report a new type of subviral particle, the small P particles, through a further modification, either an addition of the flag tag or a change of the arginine cluster, at the C-terminus of the cysteine-containing P domain. Gel filtration and cryo-EM studies showed that the small P particles are tetrahedrons formed by 6 P dimers or 12 P monomers that is half-size of the P particles. Fitting of the crystal structure of the P domain into the cryo-EM density map of the particle indicated similar conformations of the P dimers as those in P particles. The small P particles bind human HBGAs and are antigenically reactive similar to their parental VLPs and P particles. These data suggest that the C-terminus of the P domain is an important factor in the formation of the P particles. Further elucidation of the mechanism of these modifications in the P particle formation would be important in structure biology and morphogenesis of noroviruses. The small P particles may also be a useful alternative in study of norovirus-host interaction and vaccine development for noroviruses.

摘要

诺如病毒 VP1 的突出(P)结构域负责免疫识别和宿主受体相互作用。我们之前的研究表明,P 结构域末端的修饰会影响 P 蛋白的构象和/或功能。表达带有或不带有铰链的 P 结构域,或在 P 蛋白的两端添加额外的半胱氨酸,会导致 P 二聚体和/或 P 颗粒。在这里,我们通过进一步修饰 P 结构域的 C 末端,要么添加 flag 标签,要么改变精氨酸簇,报告了一种新型的亚病毒颗粒,即小 P 颗粒。凝胶过滤和 cryo-EM 研究表明,小 P 颗粒是由 6 个 P 二聚体或 12 个 P 单体组成的四面体,大小为 P 颗粒的一半。将 P 结构域的晶体结构拟合到颗粒的 cryo-EM 密度图中表明,P 二聚体的构象与 P 颗粒中的相似。小 P 颗粒结合人 HBGAs,并且具有与亲本 VLPs 和 P 颗粒相似的抗原反应性。这些数据表明,P 结构域的 C 末端是 P 颗粒形成的重要因素。进一步阐明这些修饰在 P 颗粒形成中的作用机制对于诺如病毒的结构生物学和形态发生学研究将是重要的。小 P 颗粒也可能是研究诺如病毒-宿主相互作用和诺如病毒疫苗开发的有用替代物。

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