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Epitope engineering and molecular metrics of immunogenicity: A computational approach to VLP-based vaccine design

机译:表位工程和免疫原性的分子度量:基于VLP的疫苗设计的一种计算方法

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Developing antiviral vaccines is increasingly challenging due to associated time and cost of production as well as emerging drug-resistant strains. A computer-aided vaccine design strategy is presented that could greatly accelerate the discovery process and yield vaccines with high immunogenicity and thermal stability. Our strategy is based on foreign viral epitopes engineered onto well-established virus-like particles (VLPs) and demonstrates that such constructs present similar affinity for antibodies as does a native virus. This binding affinity serves as one molecular metric of immunogenicity. As a demonstration, we engineered a preS1 epitope of hepatitis B virus (HBV) onto the EF loop of human papillomavirus VLP (HPV-VLP). HBV-associated HzKR127 antibody displayed binding affinity for this structure at distances and strengths similar to those for the complex of the antibody with the full HBV (PDBID: 2EH8). This antibody binding affinity assessment, along with other molecular immunogenicity metrics, could be a key component of a computer-aided vaccine design strategy
机译:由于相关的时间和生产成本以及新出现的耐药菌株,开发抗病毒疫苗越来越具有挑战性。提出了一种计算机辅助疫苗设计策略,可以大大加快发现过程并生产具有高免疫原性和热稳定性的疫苗。我们的策略基于工程化到公认的病毒样颗粒(VLP)上的外来病毒表位,并证明了这种构建体对抗体的亲和力与天然病毒相似。这种结合亲和力用作免疫原性的一种分子度量。作为演示,我们将乙型肝炎病毒(HBV)的preS1表位工程化到人乳头瘤病毒VLP(HPV-VLP)的EF环上。 HBV相关的HzKR127抗体在与抗体与完整HBV的复合物(PDBID:2EH8)相似的距离和强度上显示出对该结构的结合亲和力。抗体结合亲和力评估以及其他分子免疫原性指标可能是计算机辅助疫苗设计策略的关键组成部分

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