PubMed · 42664960
A distinct effector B cell population drives autoantibody production in SARS-CoV-2 infection.
Abstract
Autoantibodies (autoAbs) are linked to mortality and Long COVID, yet their cellular origins remain unclear. We analyzed the INCOV cohort and identified 12 age- and sex-matched participants with varying autoAb abundance and integrated single-cell RNA-seq and ATAC-seq data from B cells, plasma proteomics, proteome-wide autoAb profiling, clinical data, and in vitro assays. AutoAb abundance inversely correlated with neutralizing IgG and declined as infection resolved, paralleling the contraction of atypical memory B cells (AtMs). In vitro, AtMs preferentially differentiated into autoAb-producing antibody-secreting cells upon TLR7/8 stimulation. CD11c+ AtMs (double-negative 2, DN2s) in autoAb-high individuals exhibited increased TLR7 signaling, oxidative stress, and isotype switching, regulated by transcription factors T-bet and XBP1. Integrated genetic and genomic analyses showed that DN2s had the strongest enrichment for autoimmune trait heritability and inferred regulatory effects of autoimmune risk variants among B cell subsets. These findings identify DN2s as key precursors of autoAb-producing cells during SARS-CoV-2 infection.
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Dan Yuan, Sarah Li, Rongyu Zhang, Rachel H Ng, Yapeng Su, Linda Lan, Mahasish Shome, Brett Smith, Pamela Troisch, Jingyi Xie, Jongchan Choi, Rick Edmark, Daniel Chen, Lee Rowen, Amy Nguyen, Rachel Liu, Vanessa Gutierrez, Conor Brennan, Michaela McKasson, Kim Murray, Julie A Wallick, Heather A Algren, Alexandria Duven, Brian Piening, Wendy Thomas, Hao Y Kueh, Andrew T Magis, Jennifer Hadlock, Michael Snyder, Jason D Goldman, James R Heath. 2026-08-28. A distinct effector B cell population drives autoantibody production in SARS-CoV-2 infection.. https://doi.org/10.1016/j.immuni.2026.08.002
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