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QCM-D studies of human norovirus VLPs binding to glycosphingolipids in supported lipid bilayers reveal strain-specific characteristics.

机译:对人类诺如病毒VLP与支持的脂质双层中糖鞘脂结合的QCM-D研究揭示了菌株特异性特征。

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Susceptibility to norovirus infection has been linked to secretor status. Norovirus virus-like particles (VLPs; 0- 20 microg/mL) from the Norwalk (GI.1) and Dijon (GII.4) strains were assayed for binding to H type 1 and Lewis a pentaglycosylceramides, incorporated in laterally fluid supported lipid bilayers. Binding kinetics was monitored in real time in 40 microL stationary reaction chambers, using quartz crystal microbalance with dissipation (QCM-D) monitoring. Both strains displayed binding only to H type 1 and not to Lewis a glycosphingolipids, typical for epithelial cells of susceptible and resistant individuals, respectively. This binding specificity was confirmed by VLPs binding to the two glycosphingolipids chromatographed on TLC-plates. Experiments using bilayers with mixtures of H type 1 and Lewis a, with the total glycosphingolipid concentration constant at 10 wt%, showed that binding was only dependent on H type 1 concentrations and identical to experiments without additional Lewis a. Both strains showed a threshold concentration of H type 1 below which no binding was observable. The threshold was one order of magnitude higher for the Dijon strain (2 wt% versus 0.25 wt%) demonstrating that the interaction with a significantly larger number of glycosphingolipids was needed for the binding of the Dijon strain. The difference in threshold glycosphingolipid concentrations for the two strains suggests a lower affinity for the glycosphingolipid for the Dijon compared to the Norwalk strain. We propose that VLPs initially bind only a few glycosphingolipids but the binding is subsequently strengthened by lateral diffusion of additional glycosphingolipids moving into the interaction area.
机译:诺如病毒感染的易感性与分泌者身份有关。测定来自诺沃克(GI.1)和第戎(GII.4)菌株的诺如病毒病毒样颗粒(VLP; 0-20微克/毫升)与H型1和路易斯五肽糖基神经酰胺的结合情况,并结合到侧向流体负载的脂质中双层。使用带耗散的石英晶体微量天平(QCM-D)监测,在40微升固定反应室中实时监测结合动力学。两种菌株均显示仅与H型1结合,而与Lewis糖鞘脂不结合,这分别是易感个体和抗性个体上皮细胞的典型特征。通过结合到TLC板上层析的两个糖鞘脂的VLP证实了这种结合特异性。使用带有H型1和Lewis a混合物的双层的实验,总糖鞘脂浓度恒定在10 wt%,表明结合仅取决于1型H的浓度,并且与没有其他Lewis a的实验相同。两种菌株均显示H型1的阈值浓度,低于该浓度则未观察到结合。第戎菌株的阈值高出一个数量级(2 wt%对0.25 wt%),表明第戎菌株的结合需要与大量糖鞘脂的相互作用。与诺沃克菌株相比,两种菌株的鞘糖脂阈值浓度不同表明对第戎的鞘糖脂亲和力较低。我们提出,VLP最初仅结合一些糖鞘脂,但随后通过其他糖鞘脂的侧向扩散进入相互作用区域而加强了结合。

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