Complementary antibody lineages achieve neutralization breadth in an HIV-1 infected elite neutralizer

Author:

van Schooten JelleORCID,Schorcht Anna,Farokhi Elinaz,Umotoy Jeffrey C.,Gao Hongmei,van den Kerkhof Tom L. G. M.,Dorning Jessica,Rijkhold Meesters Tim G.,van der Woude Patricia,Burger Judith A.,Bijl Tom,Ghalaiyini Riham,Torrents de la Peña Alba,Turner Hannah L.,Labranche Celia C.,Stanfield Robyn L.,Sok Devin,Schuitemaker Hanneke,Montefiori David C.,Burton Dennis R.,Ozorowski Gabriel,Seaman Michael S.,Wilson Ian A.,Sanders Rogier W.,Ward Andrew B.,van Gils Marit J.ORCID

Abstract

Broadly neutralizing antibodies (bNAbs) have remarkable breadth and potency against most HIV-1 subtypes and are able to prevent HIV-1 infection in animal models. However, bNAbs are extremely difficult to induce by vaccination. Defining the developmental pathways towards neutralization breadth can assist in the design of strategies to elicit protective bNAb responses by vaccination. Here, HIV-1 envelope glycoproteins (Env)-specific IgG+ B cells were isolated at various time points post infection from an HIV-1 infected elite neutralizer to obtain monoclonal antibodies (mAbs). Multiple antibody lineages were isolated targeting distinct epitopes on Env, including the gp120-gp41 interface, CD4-binding site, silent face and V3 region. The mAbs each neutralized a diverse set of HIV-1 strains from different clades indicating that the patient’s remarkable serum breadth and potency might have been the result of a polyclonal mixture rather than a single bNAb lineage. High-resolution cryo-electron microscopy structures of the neutralizing mAbs (NAbs) in complex with an Env trimer generated from the same individual revealed that the NAbs used multiple strategies to neutralize the virus; blocking the receptor binding site, binding to HIV-1 Env N-linked glycans, and disassembly of the trimer. These results show that diverse NAbs can complement each other to achieve a broad and potent neutralizing serum response in HIV-1 infected individuals. Hence, the induction of combinations of moderately broad NAbs might be a viable vaccine strategy to protect against a wide range of circulating HIV-1 viruses.

Funder

HIV Vaccine Research and Design

Bill and Melinda Gates Foundation CAVD

NIH/NIAID

the European Union’s Horizon 2020 research and innovation program

Netherlands Organization for Scientific Research

AMC

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

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