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首页> 外文期刊>Frontiers in Microbiology >Engineering Bacterial Surface Displayed Human Norovirus Capsid Proteins: A Novel System to Explore Interaction Between Norovirus and Ligands
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Engineering Bacterial Surface Displayed Human Norovirus Capsid Proteins: A Novel System to Explore Interaction Between Norovirus and Ligands

机译:工程细菌表面展示的人类诺如病毒衣壳蛋白:探索诺如病毒和配体之间相互作用的新型系统。

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Human noroviruses (HuNoVs) are major contributors to acute nonbacterial gastroenteritis outbreaks. Many aspects of HuNoVs are poorly understood due to both the current inability to culture HuNoVs, and the lack of efficient small animal models. Surrogates for HuNoVs, such as recombinant viral like particles (VLPs) expressed in eukaryotic system or P particles expressed in prokaryotic system, have been used for studies in immunology and interaction between the virus and its receptors. However, it is difficult to use VLPs or P particles to collect or isolate potential ligands binding to these recombinant capsid proteins. In this study, a new strategy was used to collect HuNoVs binding ligands through the use of ice nucleation protein (INP) to display recombinant capsid proteins of HuNoVs on bacterial surfaces. The viral protein-ligand complex could be easily separated by a low speed centrifugation step. This system was also used to explore interaction between recombinant capsid proteins of HuNoVs and their receptors. In this system, the VP1 capsid encoding gene (ORF2) and the protruding domain (P domain) encoding gene (3′ terminal fragment of ORF2) of HuNoVs GI.1 and GII.4 were fused with 5′ terminal fragment of INP encoding gene ( inaQn ). The results demonstrated that the recombinant VP1 and P domains of HuNoVs were expressed and anchored on the surface of Escherichia coli BL21 cells after the bacteria were transformed with the corresponding plasmids. Both cell surface displayed VP1 and P domains could be recognized by HuNoVs specific antibodies and interact with the viral histo-blood group antigens receptors. In both cases, displayed P domains had better binding abilities than VP1. This new strategy of using displayed HuNoVs capsid proteins on the bacterial surface could be utilized to separate HuNoVs binding components from complex samples, to investigate interaction between the virus and its receptors, as well as to develop an oral vaccine for HuNoVs.
机译:人类诺如病毒(HuNoV)是急性非细菌性胃肠炎暴发的主要诱因。由于当前无法培养HuNoV,而且缺乏有效的小动物模型,因此对HuNoV的许多方面了解甚少。 HuNoV的替代物,例如在真核系统中表达的重组病毒样颗粒(VLP)或在原核系统中表达的P颗粒,已用于病毒及其受体之间的免疫学和相互作用研究。但是,很难使用VLP或P颗粒来收集或分离与这些重组衣壳蛋白结合的潜在配体。在这项研究中,一种新的策略被用来通过使用冰核蛋白(INP)在细菌表面展示HuNoVs的重组衣壳蛋白来收集HuNoVs的结合配体。病毒蛋白-配体复合物可通过低速离心步骤轻松分离。该系统还用于探索HuNoV的重组衣壳蛋白与其受体之间的相互作用。在该系统中,将HuNoV GI.1和GII.4的VP1衣壳编码基因(ORF2)和突出结构域(P结构域)编码基因(ORF2的3'末端片段)与INP编码基因的5'末端片段融合。 (inaQn)。结果表明,用相应的质粒转化细菌后,HuNoV的重组VP1和P结构域被表达并锚定在大肠杆菌BL21细胞的表面。细胞表面显示的VP1和P结构域均可被HuNoVs特异性抗体识别,并与病毒组织血型抗原受体相互作用。在两种情况下,显示的P结构域均比VP1具有更好的结合能力。这种在细菌表面使用展示的HuNoVs衣壳蛋白的新策略可用于从复杂样品中分离HuNoVs的结合成分,研究病毒与其受体之间的相互作用,以及开发针对HuNoVs的口服疫苗。

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