中和
三聚体
抗体
化学
生物物理学
离解(化学)
细胞生物学
表位
毛茛
血浆蛋白结合
结合位点
病毒学
抗原抗体复合物
分子动力学
蛋白质结构
功能(生物学)
生物化学
体外
抗体反应
计算生物学
交叉反应性
抗原性
作者
Nonghua Lv,Peng Chen,Xiaobin Dai,Hu Xu,Ziheng Li,Zelin Shan,Jinqian Li,Fenglin Guo,Yuanfang Chen,Jun Li,Yiqian Huang,Guizhi Dong,Yifan Jiang,Chen Liang,Xuanyu Nan,Hanjun Zhao,Kang Zhang,Shilong Fan,Yuanchen Dong,Dongsheng Liu
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-12-01
标识
DOI:10.1101/2025.11.30.691454
摘要
Mechanistic studies of viral neutralization typically prioritize high-affinity antibodies, relegating low-affinity binders to the sidelines. We report P5-1C8, a Class 1 SARS-CoV-2 antibody that exemplifies this underexplored “low-affinity yet high-potency” phenotype, retaining strong neutralization of Omicron JN.1 despite markedly weakened trimer binding (K D = 225 nM; IC 50 = 0.06 nM). Structural and biophysical analyses reveal that P5-1C8 engages WT and BA.1 spikes through canonical intra-spike bivalency, but with JN.1 it induces aggregation. Using virion-like nanoparticles displaying multiple spikes, we show that IgG remains bound with no detectable dissociation and triggers pronounced aggregation. Coarse-grained molecular dynamics delineate the stepwise pathway in which weak IgG-spike contacts seed aggregation via transient inter-spike bridging. Together, these findings establish the first mechanistic framework demonstrating how weak-binding antibodies can nonetheless achieve potent neutralization through higher-order aggregation, thereby expanding the conceptual landscape of antibody function and opening new directions for antibody evaluation and design. Graphical Abstract Low-affinity antibodies are frequently disregarded in discovery pipelines. This work reports P5-1C8, a Class 1 SARS-CoV-2 antibody with weak trimer binding (K D -to-IC 50 > 3,700-fold) yet potent neutralization of Omicron JN.1. Structural, biophysical, functional and coarse-grained simulations collectively demonstrate that transient inter-spike IgG bridging seeds higher-order aggregation, which in turn drives neutralization and provides a mechanistic framework.
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