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人星状病毒衣壳的结构、机制及抗原特性

Structural, Mechanistic, and Antigenic Characterization of the Human Astrovirus Capsid.

作者信息

York Royce L, Yousefi Payam A, Bogdanoff Walter, Haile Sara, Tripathi Sarvind, DuBois Rebecca M

机构信息

Department of Biomolecular Engineering, University of California Santa Cruz, Santa Cruz, California, USA.

Department of Chemistry and Biochemistry, University of California Santa Cruz, Santa Cruz, California, USA.

出版信息

J Virol. 2015 Dec 9;90(5):2254-63. doi: 10.1128/JVI.02666-15.

Abstract

UNLABELLED

Human astroviruses (HAstVs) are nonenveloped, positive-sense, single-stranded RNA viruses that are a leading cause of viral gastroenteritis. HAstV particles display T=3 icosahedral symmetry formed by 180 copies of the capsid protein (CP), which undergoes proteolytic maturation to generate infectious HAstV particles. Little is known about the molecular features that govern HAstV particle assembly, maturation, infectivity, and immunogenicity. Here we report the crystal structures of the two main structural domains of the HAstV CP: the core domain at 2.60-Å resolution and the spike domain at 0.95-Å resolution. Fitting of these structures into the previously determined 25-Å-resolution electron cryomicroscopy density maps of HAstV allowed us to characterize the molecular features on the surfaces of immature and mature T=3 HAstV particles. The highly electropositive inner surface of HAstV supports a model in which interaction of the HAstV CP core with viral RNA is a driving force in T=3 HAstV particle formation. Additionally, mapping of conserved residues onto the HAstV CP core and spike domains in the context of the immature and mature HAstV particles revealed dramatic changes to the exposure of conserved residues during virus maturation. Indeed, we show that antibodies raised against mature HAstV have reactivity to both the HAstV CP core and spike domains, revealing for the first time that the CP core domain is antigenic. Together, these data provide new molecular insights into HAstV that have practical applications for the development of vaccines and antiviral therapies.

IMPORTANCE

Astroviruses are a leading cause of viral diarrhea in young children, immunocompromised individuals, and the elderly. Despite the prevalence of astroviruses, little is known at the molecular level about how the astrovirus particle assembles and is converted into an infectious, mature virus. In this paper, we describe the high-resolution structures of the two main astrovirus capsid proteins. Fitting these structures into previously determined low-resolution maps of astrovirus allowed us to characterize the molecular surfaces of immature and mature astroviruses. Our studies provide the first evidence that astroviruses undergo viral RNA-dependent assembly. We also provide new insight into the molecular mechanisms that lead to astrovirus maturation and infectivity. Finally, we show that both capsid proteins contribute to the adaptive immune response against astrovirus. Together, these studies will help to guide the development of vaccines and antiviral drugs targeting astrovirus.

摘要

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人星状病毒(HAstVs)是无包膜的正义单链RNA病毒,是病毒性肠胃炎的主要病因。HAstV病毒颗粒呈现由180个衣壳蛋白(CP)拷贝形成的T = 3二十面体对称性,该衣壳蛋白经过蛋白水解成熟以产生具有感染性的HAstV病毒颗粒。关于控制HAstV病毒颗粒组装、成熟、感染性和免疫原性的分子特征知之甚少。在此,我们报告了HAstV CP的两个主要结构域的晶体结构:分辨率为2.60 Å的核心结构域和分辨率为0.95 Å的刺突结构域。将这些结构拟合到先前确定的分辨率为25 Å的HAstV电子低温显微镜密度图中,使我们能够表征未成熟和成熟的T = 3 HAstV病毒颗粒表面的分子特征。HAstV高度带正电的内表面支持一种模型,即HAstV CP核心与病毒RNA的相互作用是T = 3 HAstV病毒颗粒形成的驱动力。此外,在未成熟和成熟的HAstV病毒颗粒的背景下,将保守残基映射到HAstV CP核心和刺突结构域上,揭示了病毒成熟过程中保守残基暴露的显著变化。实际上,我们表明针对成熟HAstV产生的抗体对HAstV CP核心和刺突结构域均有反应性,首次揭示CP核心结构域具有抗原性。总之,这些数据为HAstV提供了新的分子见解,对疫苗和抗病毒疗法的开发具有实际应用价值。

重要性

星状病毒是幼儿、免疫功能低下个体和老年人病毒性腹泻的主要病因。尽管星状病毒普遍存在,但在分子水平上对于星状病毒颗粒如何组装并转化为具有感染性的成熟病毒知之甚少。在本文中,我们描述了两种主要星状病毒衣壳蛋白的高分辨率结构。将这些结构拟合到先前确定的星状病毒低分辨率图谱中,使我们能够表征未成熟和成熟星状病毒的分子表面。我们的研究提供了首个证据,表明星状病毒经历病毒RNA依赖性组装。我们还对导致星状病毒成熟和感染性的分子机制提供了新的见解。最后,我们表明两种衣壳蛋白均有助于针对星状病毒的适应性免疫反应。总之,这些研究将有助于指导针对星状病毒的疫苗和抗病毒药物的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c075/4810704/61d2d4c52964/zjv9990913340001.jpg

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