Rao Vishal, Sapse Iden, Cohn Hallie, Yoo Duck-Kyun, Tong Pei, Clark Jordan, Bozarth Bailey, Chen Yuexing, Srivastava Komal, Singh Gagandeep, Krammer Florian, Simon Viviana, Wesemann Duane, Bajic Goran, Coelho Camila H
Department of Microbiology, Icahn School of Medicine at Mount Sinai, New York, NY, USA.
Center for Vaccine Research and Pandemic Preparedness, Icahn School of Medicine at Mount Sinai, New York, NY, USA.
bioRxiv. 2025 Mar 10:2025.03.07.642041. doi: 10.1101/2025.03.07.642041.
Public antibodies that recognize conserved epitopes are critical for vaccine development, and identifying somatic hypermutations (SHMs) that enhance antigen affinity in these public responses is key to guiding vaccine design for better protection. We propose that affinity-enhancing SHMs are selectively enriched in public antibody clonotypes, surpassing the background frequency seen in antibodies carrying the same V genes, but with different epitope specificities. Employing a human / public antibody as a model, we compare SHM signatures in antibodies also using these V genes, but recognizing other epitopes. Critically, this comparison identified clonotype-enriched mutations in the light chain. Our analyses also show that these SHMs, in combination, enhance binding to a previously uncharacterized viral epitope, with antibody responses to it increasing after multiple vaccinations. Our findings offer a framework for identifying affinity-enhancing SHMs in public antibodies based on convergence and clonotype-enrichment and can help guide vaccine design aimed to elicit public antibodies.
识别保守表位的公共抗体对疫苗开发至关重要,而在这些公共反应中鉴定出能增强抗原亲和力的体细胞超突变(SHM)是指导疫苗设计以实现更好保护效果的关键。我们提出,亲和力增强的SHM在公共抗体克隆型中被选择性富集,其频率超过携带相同V基因但具有不同表位特异性的抗体中的背景频率。以一种人类/公共抗体为模型,我们比较了同样使用这些V基因但识别其他表位的抗体中的SHM特征。至关重要的是,这种比较在轻链中鉴定出了克隆型富集突变。我们的分析还表明,这些SHM共同作用增强了与一个先前未被表征的病毒表位的结合,多次接种疫苗后针对该表位的抗体反应有所增加。我们的研究结果提供了一个基于趋同和克隆型富集来鉴定公共抗体中亲和力增强的SHM的框架,并有助于指导旨在引发公共抗体的疫苗设计。