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SpyTag/Catcher 系统在乙型肝炎核心蛋白颗粒中的位置影响了合成疫苗的免疫原性和稳定性。

The position of Spy Tag/Catcher system in hepatitis B core protein particles affects the immunogenicity and stability of the synthetic vaccine.

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China.

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Vaccine. 2023 Jul 25;41(33):4867-4878. doi: 10.1016/j.vaccine.2023.06.070. Epub 2023 Jun 28.

Abstract

Presenting exogenous antigens on virus-like particles (VLPs) through "plug-and-display" decoration strategies based on SpyTag/SpyCatcher isopeptide bonding have emerged as attractive technology for vaccine synthesis. However, whether the position of ligation site in VLPs will impose effects on immunogenicity and physiochemical properties of the synthetic vaccine remains rarely investigated. Here in the present work, the well-established hepatitis B core (HBc) protein was used as chassis to construct dual-antigen influenza nanovaccines, with the conserved epitope peptides derived from extracellular domain of matrix protein M2 (M2e) and hemagglutinin (HA) as target antigens. The M2e antigen was genetically fused to the HBc in the MIR region, together with the SpyTag peptide, which was fused either in the MIR region or at the N-terminal of the protein, so that a recombinant HA antigen (rHA) linked to SpyCatcher can be displayed on it, at two different localizations. Both synthetic nanovaccines showed ability in inducing strong M2e and rHA-specific antibodies and cellular immunogenicity; nevertheless, the one in which rHA was conjugated by N-terminal Tag ligation, was superior to another one synthesized by linking the rHA to MIR region SpyTagged-HBc in all aspects, including higher antigen-specific immunogenicity responses, lower anti-HBc carrier antibody, as well as better dispersion stability. Surface charge and hydrophobicity properties of the two synthetic nanovaccines were analyzed, results revealed that linking the rHA to MIR region SpyTagged-HBc lead to more significant and disadvantageous alteration in physiochemical properties of the HBc chassis. This study will expand our knowledge on "plug-and-display" decoration strategies and provide helpful guidance for the rational design of HBc-VLPs based modular vaccines by using SpyTag/Catcher synthesis.

摘要

基于 SpyTag/SpyCatcher 异肽键的“插入-展示”(plug-and-display)装饰策略,将外源性抗原呈现在病毒样颗粒(VLPs)上,已成为疫苗合成的一种有吸引力的技术。然而,VLPs 中连接位点的位置是否会对合成疫苗的免疫原性和理化性质产生影响,仍很少被研究。在本工作中,我们以成熟的乙型肝炎核心(HBc)蛋白为底盘,构建了双抗原流感纳米疫苗,以基质蛋白 M2(M2e)和血凝素(HA)的细胞外结构域衍生的保守表位肽作为靶抗原。M2e 抗原与 HBc 的 MIR 区基因融合,与融合在 MIR 区或蛋白 N 端的 SpyTag 肽一起,使与 SpyCatcher 连接的重组 HA 抗原(rHA)可以展示在其表面,有两种不同的定位方式。两种合成纳米疫苗均能诱导强烈的 M2e 和 rHA 特异性抗体和细胞免疫原性;然而,通过 N 端标签连接偶联 rHA 的疫苗在各个方面均优于通过将 rHA 连接到 MIR 区 SpyTagged-HBc 的疫苗,包括更高的抗原特异性免疫原性反应、更低的抗 HBc 载体抗体,以及更好的分散稳定性。对两种合成纳米疫苗的表面电荷和疏水性进行了分析,结果表明,将 rHA 连接到 MIR 区 SpyTagged-HBc 会导致 HBc 底盘理化性质发生更显著和不利的改变。本研究将扩展我们对“插入-展示”装饰策略的认识,并为使用 SpyTag/Catcher 合成理性设计基于 HBc-VLPs 的模块化疫苗提供有价值的指导。

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