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Particle-specific neutralizing activity of a monoclonal antibody targeting the poxvirus A33 protein reveals differences between cell associated and extracellular enveloped virions

机译:靶向痘病毒A33蛋白的单克隆抗体的颗粒状中和活性揭示了细胞相关和细胞外包膜病毒细胞之间的差异

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Only a small subset of the hundreds of proteins encoded by the poxvirus genome have been shown to be effective as vaccine and/or therapeutic targets. One of these proteins is A33. Here we assess and dissect the ability of an anti-A33 humanized monoclonal antibody, c6C, to affect vaccinia virus infection in vitro. Enveloped virions (EV) released from infected cells can be sensitive or resistant to neutralization by c6C indicating there are different types of EV particles, extracellular enveloped virions (EEV) and released cellular-associated virions (rCEV), that are biologically distinct. Through a combination of plaque phenotype, confocal imaging, and neutralization assays, we found that c6C differentially affects EV from two different virus strains, IHD-J and WR. Evidence for an anti-A33 resistant EV particle, and strain differences in this phenotype, provides a logical answer as to why certain functional assays in the literature have been unable to detect anti-viral effects of anti-A33 antibodies.
机译:只有由痘病毒基因组编码的数百种蛋白质的一小部分已被证明是有效的疫苗和/或治疗靶标。其中一种蛋白质是A33。在这里,我们评估并剖析抗A33人源化单克隆抗体C6C,影响体外疫苗病毒感染的能力。从感染的细胞释放的包膜病毒粒子(EV)可以是敏感的或耐抗体的C6C,表明存在不同类型的EV颗粒,细胞外包膜病毒粒子(EEV)和释放的细胞相关病毒群(RCEV),其具有生物学上不同的。通过斑块表型,共聚焦成像和中和测定的组合,发现C6C差异地影响来自两种不同病毒菌株的EV,IHD-J和WR。抗A33抗性EV粒子的证据和这种表型的应变差异,提供了为什么文献中某些功能测定的逻辑答案是无法检测抗A33抗体的抗病毒效应。

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