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Crystallography of a Lewis-binding norovirus, elucidation of strain-specificity to the polymorphic human histo-blood group antigens.路易斯结合诺如病毒的晶体学研究,阐明对多态性人组织血型抗原的特异性。
PLoS Pathog. 2011 Jul;7(7):e1002152. doi: 10.1371/journal.ppat.1002152. Epub 2011 Jul 21.
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Structural analysis of histo-blood group antigen binding specificity in a norovirus GII.4 epidemic variant: implications for epochal evolution.诺如病毒 GII.4 流行变异株中血凝素-血红细胞抗原结合特异性的结构分析:对新纪元进化的启示。
J Virol. 2011 Sep;85(17):8635-45. doi: 10.1128/JVI.00848-11. Epub 2011 Jun 29.
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Crystal structures of GII.10 and GII.12 norovirus protruding domains in complex with histo-blood group antigens reveal details for a potential site of vulnerability.GII.10 和 GII.12 诺如病毒突起结构域与血型抗原复合物的晶体结构揭示了潜在弱点的详细信息。
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Terminal modifications of norovirus P domain resulted in a new type of subviral particles, the small P particles.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。
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Noroviruses distinguish between type 1 and type 2 histo-blood group antigens for binding.诺如病毒在结合时会区分1型和2型组织血型抗原。
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Atomic resolution structural characterization of recognition of histo-blood group antigens by Norwalk virus.诺如病毒识别组织血型抗原的原子分辨率结构表征
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I 型诺如病毒识别路易斯抗原的结构基础。

Structural basis for the recognition of Lewis antigens by genogroup I norovirus.

机构信息

Research Center for Medical Glycoscience, National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki, Japan.

出版信息

J Virol. 2012 Oct;86(20):11138-50. doi: 10.1128/JVI.00278-12. Epub 2012 Aug 1.

DOI:10.1128/JVI.00278-12
PMID:22855491
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3457155/
Abstract

Noroviruses (NoVs) bind to histo-blood group antigens, namely, ABH antigens and Lewis antigens. We previously showed the NoVs GI/2, GI/3, GI/4, and GI/8 were able to strongly bind to Lewis a (Le(a)) antigen, which is expressed by individuals who are nonsecretors. In this study, to investigate how Lewis antigens interact with GI NoV virion protein 1 (VP1), we determined the crystal structures of the P domain of the VP1 protein from the Funabashi 258 (FUV258) strain (GI/2) in complexes with Le(a), Le(b), H type 1, or A type 1 antigens. The structures were compared with those of the NV/68 strain (GI/1), which does not bind to the Le(a) antigen. The four loop structures, loop P, loop S, loop A, and loop B, continuously deviated by more than 2 Å in length between the Cα atoms of the corresponding residues of the FUV258 and NV/68 P domains. The most pronounced differences between the two VP1 proteins were observed in the structures of loop P. In the FUV258 P domain, loop P protruded toward the next protomer, forming a Le(a) antigen-binding site. The Gln389 residue make a significant contribution to the binding of the Le(a) antigen through the stabilization of loop P as well as through direct interactions with the α4-fucosyl residue (α4Fuc) of the Le(a) antigen. Mutation of the Gln389 residue dramatically affected the degree of binding of the Lewis antigens. Collectively, these results suggest that loop P and the amino acid residue at position 389 affect Lewis antigen binding.

摘要

诺如病毒(NoVs)与血型组织相关抗原(即 ABH 抗原和 Lewis 抗原)结合。我们之前的研究表明,NoV GI/2、GI/3、GI/4 和 GI/8 能够与非分泌型个体表达的 Lewis a 抗原(Le(a)) 强烈结合。在这项研究中,为了研究 Lewis 抗原如何与 GI NoV 衣壳蛋白 1(VP1)相互作用,我们测定了福冈 258(FUV258)株(GI/2)VP1 蛋白 P 结构域与 Le(a)、Le(b)、H 型 1 或 A 型 1 抗原复合物的晶体结构。将这些结构与不结合 Le(a)抗原的 NV/68 株(GI/1)的结构进行了比较。FUV258 和 NV/68 P 结构域相应残基的 Cα原子之间的四个环结构(环 P、环 S、环 A 和环 B)连续偏离超过 2 Å。两个 VP1 蛋白之间最明显的差异出现在环 P 的结构中。在 FUV258 P 结构域中,环 P 向相邻的亚基突出,形成一个 Le(a)抗原结合位点。残基 Gln389 通过稳定环 P 以及与 Le(a)抗原的α4-岩藻糖基(α4Fuc)的直接相互作用,对 Le(a)抗原的结合做出了重要贡献。Gln389 残基的突变显著影响了 Lewis 抗原的结合程度。综上所述,这些结果表明环 P 和位置 389 的氨基酸残基影响 Lewis 抗原的结合。