Tang Shubing, Xuan Baoqin, Ye Xiaohua, Huang Zhong, Qian Zhikang
Unit of Herpesvirus and Molecular Virology, Key Laboratory of Molecular Virology &Immunology, Institut Pasteur of Shanghai, Chinese Academy of Sciences, University of the Chinese Academy of Sciences, Shanghai 200031, China.
Unit of Vaccinology and Antiviral Strategies, Key Laboratory of Molecular Virology &Immunology, Institut Pasteur of Shanghai, Chinese Academy of Sciences, University of the Chinese Academy of Sciences, Shanghai 200031, China.
Sci Rep. 2016 May 12;6:25741. doi: 10.1038/srep25741.
Virus-like particles (VLPs) can be used as powerful nanoscale weapons to fight against virus infection. In addition to direct use as vaccines, VLPs have been extensively exploited as platforms on which to display foreign antigens for prophylactic vaccination and immunotherapeutic treatment. Unfortunately, fabrication of new chimeric VLP vaccines in a versatile, site-specific and highly efficient manner is beyond the capability of traditional VLP vaccine design approaches, genetic insertion and chemical conjugation. In this study, we described a greatly improved VLP display strategy by chemoenzymatic site-specific tailoring antigens on VLPs surface with high efficiency. Through the transpeptidation mediated by sortase A, one protein and two epitopes containing N-terminal oligoglycine were conjugated to the LPET motif on the surface of hepatitis B virus core protein (HBc) VLPs with high density. All of the new chimeric VLPs induced strong specific IgG responses. Furthermore, the chimeric VLPs with sortase A tagged enterovirus 71 (EV71) SP70 epitope could elicit effective antibodies against EV71 lethal challenging as well as the genetic insertion chimeric VLPs. The sortase A mediated chemoenzymatic site-specific tailoring of the HBc VLP approach shows great potential in new VLP vaccine design for its simplicity, site specificity, high efficiency, and versatility.
病毒样颗粒(VLPs)可作为强大的纳米级武器用于对抗病毒感染。除了直接用作疫苗外,VLPs还被广泛用作展示外来抗原的平台,用于预防性疫苗接种和免疫治疗。不幸的是,以通用、位点特异性和高效的方式制造新的嵌合VLP疫苗超出了传统VLP疫苗设计方法(基因插入和化学偶联)的能力范围。在本研究中,我们描述了一种通过化学酶法在VLPs表面高效、位点特异性地定制抗原,从而极大改进的VLP展示策略。通过分选酶A介导的转肽作用,一种蛋白质和两个含有N端寡甘氨酸的表位以高密度偶联到乙型肝炎病毒核心蛋白(HBc)VLPs表面的LPET基序上。所有新的嵌合VLPs均诱导了强烈的特异性IgG反应。此外,带有分选酶A标记的肠道病毒71型(EV71)SP70表位的嵌合VLPs能够引发针对EV71致死性攻击的有效抗体,以及基因插入嵌合VLPs。分选酶A介导的HBc VLP化学酶法位点特异性定制方法因其简单性、位点特异性、高效性和通用性,在新型VLP疫苗设计中显示出巨大潜力。