Hobson-Peters Jody, Toye Philip, Sánchez Melissa D, Bossart Katharine N, Wang Lin-Fa, Clark David C, Cheah Wai Yuen, Hall Roy A
Australian Biosecurity CRC for Emerging Infectious Disease, St Lucia, Queensland, Australia.
AGEN Biomedical Limited, Acacia Ridge, Queensland, Australia.
J Gen Virol. 2008 Dec;89(Pt 12):3063-3072. doi: 10.1099/vir.0.2008/003731-0.
Using a monoclonal antibody directed to domain I of the West Nile virus (WNV) envelope (E) protein, we identified a continuous (linear) epitope that was immunogenic during WNV infection of horses. Using synthetic peptides, this epitope was mapped to a 19 aa sequence (WN19: E147-165) encompassing the WNV NY99 E protein glycosylation site at position 154. The inability of WNV-positive horse and mouse sera to bind the synthetic peptides indicated that glycosylation was required for recognition of peptide WN19 by WNV-specific antibodies in sera. N-linked glycosylation of WN19 was achieved through expression of the peptide as a C-terminal fusion protein in mammalian cells and specific reactivity of WNV-positive horse sera to the glycosylated WN19 fusion protein was shown by Western blot. Additional sera collected from horses infected with Murray Valley encephalitis virus (MVEV), which is similarly glycosylated at position E154 and exhibits high sequence identity to WNV NY99 in this region, also recognized the recombinant peptide. Failure of most WNV- and MVEV-positive horse sera to recognize the epitope as a deglycosylated fusion protein confirmed that the N-linked glycan was important for antibody recognition of the peptide. Together, these results suggest that the induction of antibodies to the WN19 epitope during WNV infection of horses is generally associated with E protein glycosylation of the infecting viral strain.
利用一种针对西尼罗河病毒(WNV)包膜(E)蛋白结构域I的单克隆抗体,我们鉴定出了一个在马感染WNV期间具有免疫原性的连续(线性)表位。使用合成肽,该表位被定位到一个包含WNV NY99 E蛋白第154位糖基化位点的19个氨基酸序列(WN19:E147 - 165)。WNV阳性马和小鼠血清无法结合合成肽,这表明糖基化是血清中WNV特异性抗体识别肽WN19所必需的。通过在哺乳动物细胞中将该肽作为C端融合蛋白表达实现了WN19的N - 连接糖基化,并且通过蛋白质印迹法显示WNV阳性马血清对糖基化的WN19融合蛋白具有特异性反应。从感染墨累谷脑炎病毒(MVEV)的马身上采集的其他血清,该病毒在E154位同样进行了糖基化,并且在该区域与WNV NY99具有高度序列同一性,这些血清也识别重组肽。大多数WNV和MVEV阳性马血清无法将该表位识别为去糖基化的融合蛋白,这证实了N - 连接聚糖对于抗体识别该肽很重要。总之,这些结果表明,在马感染WNV期间,针对WN19表位的抗体诱导通常与感染病毒株的E蛋白糖基化有关。