病毒血症
生物信息学
病毒学
生物
效力
中和抗体
抗体
单克隆抗体
计算生物学
病毒
中和
免疫学
病毒复制
表型
诱饵
疫苗效力
病毒包膜
对接(动物)
结合位点
临床疗效
临床试验
细胞生物学
重链
限制
抗体疗法
细胞
病毒载量
抗体反应
作者
Lutz Gieselmann,Andrew T. DeLaitsch,Malena Rohde,Henning Gruell,Christoph Kreer,Meryem S. Ercanoglu,Harry B. Gristick,Philipp Schommers,Elvin Ahmadov,Caelan E. Radford,Andrea Mazzolini,Lily Zhang,Anthony P. West,Johanna Worczinski,Anna Momot,Maren L. Reichwein,Jacqueline Knüfer,Ricarda Stumpf,Nonhlanhla N. Mkhize,Haajira Kaldine
出处
期刊:Nature Immunology
[Nature Portfolio]
日期:2025-10-06
卷期号:26 (11): 2016-2029
被引量:4
标识
DOI:10.1038/s41590-025-02286-5
摘要
Abstract Administration of HIV-1 neutralizing antibodies can suppress viremia and prevent infection in vivo. However, clinical use is challenged by envelope diversity and rapid viral escape. Here, we performed single B cell profiling of 32 top HIV-1 elite neutralizers to identify broadly neutralizing antibodies with highest antiviral activity. From 831 expressed monoclonal antibodies, we identified 04_A06, a V H 1-2-encoded broadly neutralizing antibody to the CD4 binding site with remarkable breadth and potency against multiclade pseudovirus panels (geometric mean half-maximal inhibitory concentration = 0.059 µg ml −1 , breadth = 98.5%, 332 strains). Moreover, 04_A06 was not susceptible to classic CD4 binding site escape variants and maintained full viral suppression in HIV-1-infected humanized mice. Structural analyses revealed an unusually long 11-amino-acid heavy chain insertion that facilitates interprotomer contacts with highly conserved residues on the adjacent gp120 protomer. Finally, 04_A06 demonstrated high activity against contemporaneously circulating viruses from the Antibody-Mediated Prevention trials (geometric mean half-maximal inhibitory concentration = 0.082 µg ml −1 , breadth = 98.4%, 191 virus strains), and in silico modeling for 04_A06LS predicted prevention efficacy of >93%. Thus, 04_A06 will provide unique opportunities for effective treatment and prevention of HIV-1 infection.
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