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Differential Antibody Responses to Conserved HIV-1 Neutralizing Epitopes in the Context of Multivalent Scaffolds and Native-Like gp140 Trimers

机译:在多价支架和类似gp140三聚体的背景下对保守的HIV-1中和表位的差异抗体反应。

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Broadly neutralizing antibodies (bNAbs) have provided valuable insights into the humoral immune response to HIV-1. While rationally designed epitope scaffolds and well-folded gp140 trimers have been proposed as vaccine antigens, a comparative understanding of their antibody responses has not yet been established. In this study, we probed antibody responses to the N332 supersite and the membrane-proximal external region (MPER) in the context of heterologous protein scaffolds and native-like gp140 trimers. Ferritin nanoparticles and fragment crystallizable (Fc) regions were utilized as multivalent carriers to display scaffold antigens with grafted N332 and MPER epitopes, respectively. Trimeric scaffolds were also identified to stabilize the MPER-containing BG505 gp140.681 trimer in a native-like conformation. Following structural and antigenic evaluation, a subset of scaffold and trimer antigens was selected for immunization in BALB/c mice. Serum binding revealed distinct patterns of antibody responses to these two bNAb targets presented in different structural contexts. For example, the N332 nanoparticles elicited glycan epitope-specific antibody responses that could also recognize the native trimer, while a scaffolded BG505 gp140.681 trimer generated a stronger and more rapid antibody response to the trimer apex than its parent gp140.664 trimer. Furthermore, next-generation sequencing (NGS) of mouse splenic B cells revealed expansion of antibody lineages with long heavy-chain complementarity-determining region 3 (HCDR3) loops upon activation by MPER scaffolds, in contrast to the steady repertoires primed by N332 nanoparticles and a soluble gp140.664 trimer. These findings will facilitate the future development of a coherent vaccination strategy that combines both epitope-focused and trimer-based approaches.
机译:广泛中和抗体(bNAbs)提供了对HIV-1的体液免疫反应的宝贵见解。虽然已经提出了合理设计的表位支架和折叠良好的gp140三聚体作为疫苗抗原,但尚未建立对其抗体反应的比较理解。在这项研究中,我们探讨了在异源蛋白支架和天然gp140三聚体的背景下,对N332超级位点和近膜外部区域(MPER)的抗体反应。铁蛋白纳米颗粒和可结晶片段(Fc)区域被用作多价载体,分别展示具有嫁接的N332和MPER表位的支架抗原。还确定三聚体支架以天然样构象稳定含有MPER的BG505 gp140.681三聚体。在进行结构和抗原评估后,选择了支架和三聚体抗原的一个子集用于BALB / c小鼠的免疫。血清结合揭示了在不同结构背景下针对这两个bNAb靶标的抗体反应的不同模式。例如,N332纳米粒子引发了聚糖表位特异性抗体反应,该反应也可以识别天然三聚体,而支架式BG505 gp140.681三聚体比其母体gp140.664三聚体对三聚体顶点产生更强,更快速的抗体反应。此外,小鼠脾脏B细胞的下一代测序(NGS)显示,在被MPER支架激活后,带有长重链互补决定区3(HCDR3)环的抗体谱系得以扩展,这与N332纳米颗粒和可溶性gp140.664三聚体。这些发现将促进未来的连贯疫苗接种策略的发展,该策略结合了针对抗原决定簇和基于三聚体的方法。

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