Research Center for Medical Glycoscience, National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki, Japan.
J Virol. 2012 Oct;86(20):11138-50. doi: 10.1128/JVI.00278-12. Epub 2012 Aug 1.
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.
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。