Functional HIV-1/HCV cross-reactive antibodies isolated from a chronically co-infected donor

从慢性合并感染的供体中分离出的功能性 HIV-1/HCV 交叉反应抗体

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作者:Kelsey A Pilewski,Steven Wall,Simone I Richardson,Nelia P Manamela,Kaitlyn Clark,Tandile Hermanus,Elad Binshtein,Rohit Venkat,Giuseppe A Sautto,Kevin J Kramer,Andrea R Shiakolas,Ian Setliff,Jordan Salas,Rutendo E Mapengo,Naveen Suryadevara,John R Brannon,Connor J Beebout,Rob Parks,Nagarajan Raju,Nicole Frumento,Lauren M Walker,Emilee Friedman Fechter,Juliana S Qin,Amyn A Murji,Katarzyna Janowska,Bhishem Thakur,Jared Lindenberger,Aaron J May,Xiao Huang,Salam Sammour,Priyamvada Acharya,Robert H Carnahan,Ted M Ross,Barton F Haynes,Maria Hadjifrangiskou,James E Crowe Jr,Justin R Bailey,Spyros Kalams,Lynn Morris,Ivelin S Georgiev

Abstract

Despite prolific efforts to characterize the antibody response to human immunodeficiency virus type 1 (HIV-1) and hepatitis C virus (HCV) mono-infections, the response to chronic co-infection with these two ever-evolving viruses is poorly understood. Here, we investigate the antibody repertoire of a chronically HIV-1/HCV co-infected individual using linking B cell receptor to antigen specificity through sequencing (LIBRA-seq). We identify five HIV-1/HCV cross-reactive antibodies demonstrating binding and functional cross-reactivity between HIV-1 and HCV envelope glycoproteins. All five antibodies show exceptional HCV neutralization breadth and effector functions against both HIV-1 and HCV. One antibody, mAb688, also cross-reacts with influenza and coronaviruses, including severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). We examine the development of these antibodies using next-generation sequencing analysis and lineage tracing and find that somatic hypermutation established and enhanced this reactivity. These antibodies provide a potential future direction for therapeutic and vaccine development against current and emerging infectious diseases. More broadly, chronic co-infection represents a complex immunological challenge that can provide insights into the fundamental rules that underly antibody-antigen specificity.

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