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May 10, 2026The Journal of Experimental Medicine0 citations

Complement-regulated homeostatic proliferation controls memory B cell longevity and repertoire composition

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ECEvan W. CodyMNMehek NingooIMIsha Monga

Key Points

  • This research aims to understand how complement-dependent regulation affects memory B cell longevity and composition.
  • Analyzed effects of deleting decay-accelerating factor (DAF) on murine memory B cells (B1-8hi) in competitive settings.
  • Conducted kinetic analysis over 6 weeks to observe Bmem populations and responses.
  • Examined proliferation in both wild-type and DAF-/- Bmem following transfer into unimmunized hosts.
  • DAF-/- Bmem numbers progressively reduced over 6 weeks without affecting overall Bmem production.
  • Wild-type Bmem maintained stable pool sizes through homeostatic proliferation, outcompeting DAF-/- counterparts.
  • Increased cell death in DAF-/- Bmem correlated with transcriptional shifts in metabolism and migration pathways.

Abstract

Memory B cell (Bmem) survival is essential for guarding against reinfection, yet processes ensuring their longevity remain unclear. As decay-accelerating factor (DAF, CD55), a negative regulator of complement activation, is requisitely downregulated on germinal center B cells and is reexpressed on Bmem, we investigated the effects of deleting DAF on murine (B1-8hi) Bmem in competitive settings. Kinetic analysis showed a progressive reduction in DAF-/- Bmem numbers over 6 wk, without affecting Bmem production, pool size, or their ability to respond to rechallenge. Following transfer into unimmunized hosts, wild-type Bmem proliferated to maintain stable Bmem pool sizes, outcompeting DAF-/- Bmem, reflecting homeostatic proliferation. Reduced proliferation and increased cell death in DAF-/- Bmem associated with transcriptional differences in metabolism and migration pathways. Wild-type Bmem proliferation increased in C3-/- hosts, and vaccination with a heterologous antigen, which induces local complement activation, locally inhibited bystander B1-8hi Bmem proliferation. Thus, complement-dependent regulation of Bmem homeostatic proliferation influences Bmem longevity and repertoire composition in mice.

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Cite This Study

Cody et al. (2026) studied this question.

synapsesocial.com/papers/6a00217ac8f74e3340f9c56fhttps://doi.org/10.1084/jem.20251048
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