Germinal centre-driven maturation of B cell response to SARS-CoV-2 vaccination
Kim, W.; Zhou, J. Q.; Sturtz, A. J.; Horvath, S. C.; Schmitz, A. J.; Lei, T.; Kalaidina, E.; Thapa, M.; Al Soussi, W. B.; Haile, A.; Klebert, M. K.; Suessen, T.; Parra-Rodriguez, L.; Mudd, P. A.; Middleton, W. D.; Teefy, S. A.; Pusic, I.; O'Halloran, J. A.; Presti, R. M.; Turner, J. S.; Ellebedy, A. H.
Show abstract
Germinal centres (GC) are lymphoid structures where vaccine-responding B cells acquire affinity-enhancing somatic hypermutations (SHM), with surviving clones differentiating into memory B cells (MBCs) and long-lived bone marrow plasma cells (BMPCs)1-4. Induction of the latter is a hallmark of durable immunity after vaccination5. SARS-CoV-2 mRNA vaccination induces a robust GC response in humans6-8, but the maturation dynamics of GC B cells and propagation of their progeny throughout the B cell diaspora have not been elucidated. Here we show that anti-SARS-CoV-2 spike (S)-binding GC B cells were detectable in draining lymph nodes for at least six months in 10 out of 15 individuals who had received two doses of BNT162b2, a SARS-CoV-2 mRNA vaccine. Six months after vaccination, circulating S-binding MBCs were detected in all participants (n=42) and S-specific IgG-secreting BMPCs were detected in 9 out of 11 participants. Using a combined approach of single-cell RNA sequencing of responding blood and lymph node B cells from eight participants and expression of the corresponding monoclonal antibodies, we tracked the evolution of 1540 S-specific B cell clones. SHM accumulated along the B cell differentiation trajectory, with early blood plasmablasts showing the lowest frequencies, followed by MBCs and lymph node plasma cells whose SHM largely overlapped with GC B cells. By three months after vaccination, the frequency of SHM within GC B cells had doubled. Strikingly, S+ BMPCs detected six months after vaccination accumulated the highest level of SHM, corresponding with significantly enhanced anti-S polyclonal antibody avidity in blood at that time point. This study documents the induction of affinity-matured BMPCs after two doses of SARS-CoV-2 mRNA vaccination in humans, providing a foundation for the sustained high efficacy observed with these vaccines.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- LAG-3 blockade reactivates the CD8+ T cell expansion program to re-expand contracted clones in the tumor 98%
- Genome-scale spatial mapping of the Hodgkin lymphoma microenvironment identifies tumor cell survival factors 97%
- APMAT analysis reveals the association between CD8 T cell receptors, cognate antigen, and T cell phenotype and persistence 97%
Similar papers in this journal
- Asparagine availability controls B cell homeostasis 98%
- Quality of vaccination-induced T cell responses is conveyed by polyclonality and high, but not maximum, antigen receptor avidity 97%
- Single-cell immune profiling reveals novel thymus-seeding populations, T cell commitment, and multi-lineage development in the human thymus 96%
Similar papers in this journal
- Regulatory T-cells are central hubs for age-, sex- and severity-associated cellular networks during COVID-19 98%
- Phenotypic determinism and stochasticity in antibody repertoires of clonally expanded plasma cells 98%
- Pre-vaccination and early B cell signatures predict antibody response to SARS-CoV-2 mRNA vaccine 98%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.