JN.1-adapted vaccination is associated with readjustment of ancestral memory B cells toward neutralization within the JN.1 antigenic space

M Metodi V. Stankov M Matthias Bruhn M Markus Hoffmann (Infection Biology Unit, German Primate Center–Leibniz Institute for Primate Research) A Abdus Salam A Amy Eichmann I Inga Nehlmeier L Luis A. Manthey T Torsten Witte S Stefan Pöhlmann (Infection Biology Unit, German Primate Center–Leibniz Institute for Primate Research) G Gerrit Ahrenstorf C Christine Happle A Alexandra Dopfer-Jablonka U Ulrich Kalinke G Georg M. N. Behrens

Abstract

Abstract The antigenic drift of SARS-CoV-2 toward the JN.1 lineage has prompted the development of variant-adapted COVID-19 booster vaccines. However, these boosters are thought to primarily recall pre-existing memory B cells (MBC), raising concerns about their ability to realign the immune response in highly pre-exposed populations. Here we analyze antibody and B cell responses in pre-exposed individuals ( n  = 42; median 4.5 prior COVID-19 vaccinations; 90% with at least one prior SARS-CoV-2 infection) following vaccination with a JN.1-adapted mRNA vaccine. Vaccination is associated with increased IgG binding and enhanced neutralization of JN.1 and related descendant variants. Longitudinal profiling of antigen-specific MBC shows that Wu01-only and Wu01/JN.1 cross-reactive cells remain dominant, while JN.1-only cells modestly increase by day 21. Single-cell RNA-sequencing of antigen-specific MBC in a representative sub-cohort ( n  =  7 ), combined with functional monoclonal antibody analyses, demonstrates that somatic hypermutation (SHM) drives intra-clonotype specialization toward improved JN.1 binding and neutralization. These findings indicate maturation of pre-existing, class-switched MBC rather than substantial de novo recruitment of naïve B cells. In conclusion, JN.1-adapted booster vaccination is associated with refinement of pre-existing MBC repertoires toward the JN.1 antigenic space and with enhanced neutralization of contemporary and antigenically proximate variants.

Article Details

Volume / Issue Vol. 17, Issue 1
Published July 24, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

M

Metodi V. Stankov

M

Matthias Bruhn

M

Markus Hoffmann

Infection Biology Unit, German Primate Center–Leibniz Institute for Primate Research

A

Abdus Salam

A

Amy Eichmann

I

Inga Nehlmeier

L

Luis A. Manthey

T

Torsten Witte

S

Stefan Pöhlmann

Infection Biology Unit, German Primate Center–Leibniz Institute for Primate Research

G

Gerrit Ahrenstorf

C

Christine Happle

A

Alexandra Dopfer-Jablonka

U

Ulrich Kalinke

G

Georg M. N. Behrens