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一种不依赖唾液酸的人轮状病毒株VP8*核心的高分辨率分子和抗原结构

High-resolution molecular and antigen structure of the VP8* core of a sialic acid-independent human rotavirus strain.

作者信息

Monnier Nilah, Higo-Moriguchi Kyoko, Sun Zhen-Yu J, Prasad B V Venkataram, Taniguchi Koki, Dormitzer Philip R

机构信息

Harvard College, Cambridge, MA 02138, USA.

出版信息

J Virol. 2006 Feb;80(3):1513-23. doi: 10.1128/JVI.80.3.1513-1523.2006.

Abstract

The most intensively studied rotavirus strains initially attach to cells when the "heads" of their protruding spikes bind cell surface sialic acid. Rotavirus strains that cause disease in humans do not bind this ligand. The structure of the sialic acid binding head (the VP8* core) from the simian rotavirus strain RRV has been reported, and neutralization epitopes have been mapped onto its surface. We report here a 1.6-A resolution crystal structure of the equivalent domain from the sialic acid-independent rotavirus strain DS-1, which causes gastroenteritis in humans. Although the RRV and DS-1 VP8* cores differ functionally, they share the same galectin-like fold. Differences between the RRV and DS-1 VP8* cores in the region that corresponds to the RRV sialic acid binding site make it unlikely that DS-1 VP8* binds an alternative carbohydrate ligand in this location. In the crystals, a surface cleft on each DS-1 VP8* core binds N-terminal residues from a neighboring molecule. This cleft may function as a ligand binding site during rotavirus replication. We also report an escape mutant analysis, which allows the mapping of heterotypic neutralizing epitopes recognized by human monoclonal antibodies onto the surface of the VP8* core. The distribution of escape mutations on the DS-1 VP8* core indicates that neutralizing antibodies that recognize VP8* of human rotavirus strains may bind a conformation of the spike that differs from those observed to date.

摘要

最初,研究最深入的轮状病毒株在其突出刺突的“头部”与细胞表面唾液酸结合时会附着于细胞。导致人类发病的轮状病毒株不结合这种配体。已报道了来自猿猴轮状病毒株RRV的唾液酸结合头部(VP8核心)的结构,并且中和表位已定位到其表面。我们在此报告了来自不依赖唾液酸的人类胃肠炎轮状病毒株DS-1的等效结构域的1.6埃分辨率晶体结构。尽管RRV和DS-1的VP8核心在功能上有所不同,但它们具有相同的半乳糖凝集素样折叠。RRV和DS-1的VP8核心在对应于RRV唾液酸结合位点的区域存在差异,这使得DS-1的VP8不太可能在此位置结合替代碳水化合物配体。在晶体中,每个DS-1的VP8核心上的一个表面裂隙结合来自相邻分子的N端残基。这个裂隙可能在轮状病毒复制过程中作为配体结合位点。我们还报告了一项逃逸突变分析,该分析可将人单克隆抗体识别的异型中和表位定位到VP8核心表面。DS-1的VP8核心上逃逸突变的分布表明,识别人类轮状病毒株VP8的中和抗体可能结合一种与迄今观察到的刺突构象不同的构象。

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