Distinct clonal evolution of B-cells in HIV controllers with neutralizing antibody breadth

Author:

Cizmeci Deniz1,Lofano Giuseppe1,Rossignol Evan1,Dugast Anne-Sophie1,Kim Dongkyoon2,Cavet Guy2,Nguyen Ngan2,Tan Yann Chong2,Seaman Michael S3,Alter Galit1,Julg Boris1ORCID

Affiliation:

1. Ragon Institute of MGH, MIT and Harvard, Cambridge, United States

2. Atreca Inc, Redwood City, United States

3. Center for Virology and Vaccine Research, Beth Israel Deaconess Medical Center, Boston, United States

Abstract

A minor subset of individuals infected with HIV-1 develop antibody neutralization breadth during the natural course of the infection, often linked to chronic, high-level viremia. Despite significant efforts, vaccination strategies have been unable to induce similar neutralization breadth and the mechanisms underlying neutralizing antibody induction remain largely elusive. Broadly neutralizing antibody responses can also be found in individuals who control HIV to low and even undetectable plasma levels in the absence of antiretroviral therapy, suggesting that high antigen exposure is not a strict requirement for neutralization breadth. We therefore performed an analysis of paired heavy and light chain B-cell receptor (BCR) repertoires in 12,591 HIV-1 envelope-specific single memory B-cells to determine alterations in the BCR immunoglobulin gene repertoire and B-cell clonal expansions that associate with neutralizing antibody breadth in 22 HIV controllers. We found that the frequency of genomic mutations in IGHV and IGLV was directly correlated with serum neutralization breadth. The repertoire of the most mutated antibodies was dominated by a small number of large clones with evolutionary signatures suggesting that these clones had reached peak affinity maturation. These data demonstrate that even in the setting of low plasma HIV antigenemia, similar to what a vaccine can potentially achieve, BCR selection for extended somatic hypermutation and clonal evolution can occur in some individuals suggesting that host-specific factors might be involved that could be targeted with future vaccine strategies.

Funder

Bill and Melinda Gates Foundation

Ragon Institute of MGH, MIT and Harvard

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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