School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia.
Biotechnol Bioeng. 2020 Aug;117(8):2556-2570. doi: 10.1002/bit.27361. Epub 2020 May 13.
The discovery of broadly neutralizing antibodies that can neutralize multiple strains or subtypes of a pathogen has renewed interest in the development of broadly protective vaccines. To that end, there has been an interest in designing immunofocusing strategies to direct the immune response to specific, conserved regions on antigenic proteins. Modulation of glycosylation is one such immunofocusing strategy; extensive glycosylation is often exploited by pathogens for immune evasion. Masking epitopes on protein immunogens with "self" glycans can also shield the underlying protein surface from humoral immune surveillance. We review recent advances in applying glycosylation as an immunofocusing tool. We also highlight recent interesting work in the HIV-1 field involving the identification and elicitation of broadly neutralizing antibodies that incorporate glycans into their binding epitopes.
广泛中和抗体的发现能够中和病原体的多种菌株或亚型,这重新激发了人们对开发广泛保护性疫苗的兴趣。为此,人们一直有兴趣设计免疫聚焦策略,将免疫反应引导到抗原蛋白上特定的、保守的区域。糖基化修饰就是这样一种免疫聚焦策略;病原体经常利用广泛的糖基化来逃避免疫。用“自身”糖来掩盖蛋白质免疫原上的表位,也可以使蛋白质表面免受体液免疫监测。我们综述了将糖基化作为免疫聚焦工具的最新进展。我们还强调了 HIV-1 领域的最新有趣工作,涉及鉴定和诱导广泛中和抗体,这些抗体将糖基纳入其结合表位。