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Polyvalent complexes for vaccine development

机译:疫苗研制多价配合

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摘要

Homotypic interaction is a common phenomenon of many proteins, through which they form dimers. We developed a simple approach to turn small dimeric proteins into large polyvalent complexes for increased immunogenicity and functionality. This was achieved via a fusion of two or more dimeric proteins together to induce polyvalent complex formation through intermolecular dimerizations. Two types of polyvalent complexes, linear and network, assembled spontaneously when a dimeric glutathione S-transferase (GST) was fused with one or two protruding (P) domains of norovirus (NoV). Additionally, a monomeric antigen, the peptide epiope M2e of the influenza virus (IV) or the VP8* antigen of rotavirus (RV), can be inserted to the polyvalent complexes. Mouse immunization demonstrated that the polyvalent complexes induced significantly higher antibody and CD4+ T cell responses to the complex components than those induced by the free epitope and antigens. Further evaluations indicated that the polyvalent complex vaccines exhibited significantly higher neutralization activity against NoV and RV and stronger protection against IV challenges in a mouse model than those of the monomeric or dimeric vaccines. The binding of NoV P proteins to their HBGA ligands was also significantly increased through the polyvalent complex formation. Therefore, our polyvalent complex system provides a new strategy for novel vaccine development and may find various applications throughout biomedicine.
机译:同型相互作用是许多蛋白质的常见现象,通过它们形成二聚体。我们开发了一种简单的方法,可将小的二聚体蛋白质转变为大的多价复合物,以提高免疫原性和功能。这是通过两个或多个二聚体蛋白融合在一起以通过分子间二聚作用诱导多价复合物形成而实现的。当二聚型谷胱甘肽S-转移酶(GST)与诺如病毒(NoV)的一个或两个突出(P)域融合时,两种类型的线性和网络多价复合物会自动组装。另外,可以将单体抗原,流感病毒(IV)的肽表位M2e或轮状病毒(RV)的VP8 *抗原插入多价复合物中。小鼠免疫证明,多价复合物诱导的抗体和CD4 + T细胞对复合物成分的反应明显高于游离表位和抗原诱导的反应。进一步的评估表明,与单体或二聚体疫苗相比,多价复合疫苗在小鼠模型中显示出对NoV和RV明显更高的中和活性以及对IV攻击的更强保护。通过多价复合物的形成,NoV P蛋白与其HBGA配体的结合也显着增加。因此,我们的多价复合物系统为新型疫苗的开发提供了新的策略,并可能在整个生物医学中找到各种应用。

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