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March 10, 2026Nature Communications1 citationsOpen Access

Lyn governs the establishment and maintenance of B cell anergy by suppressing PI3K signaling

BFBrigita E. FiskeSWScott M. WemlingerBCBergren W. Crute

Key Points

  • This research aims to clarify how Lyn regulates B cell anergy and its relationship with PI3K signaling pathways.
  • Utilized a tamoxifen-inducible Lyn deletion model in B cells to limit confounding factors.
  • Incorporated immunoglobulin transgenic mice with autoreactive B cells.
  • Analyzed the dependency of Ars/A1 B cells on Lyn for maintaining an unresponsive state.
  • Investigated the interactions between Lyn, SHIP-1, and SHP-1 in B cell signaling.
  • Ars/A1 B cells showed a requirement for Lyn to establish and maintain B cell unresponsiveness.
  • Lyn suppression was linked to restrictions in PI3K-dependent signaling pathways.
  • Reduced mIgM B cell receptor expression further limited BCR signaling in Ars/A1 B cells.
  • Dysregulation of Lyn function could contribute to autoimmunity due to issues in B cell tolerance.

Abstract

The Src family kinase Lyn is known to be involved in the induction and maintenance of peripheral B cell tolerance; however, mechanistic separation of tolerogenic functions from the role of Lyn in B cell and myeloid cell development and activation is challenging. Here we utilize a system in which Lyn deletion is tamoxifen inducible and B cell restricted, which allows acute elimination of Lyn in B cells only, minimizing confounding factors. This genetic tool is employed in conjunction with immunoglobulin transgenic mice in which peripheral B cells are autoreactive. DNA reactive Ars/A1 B cells require continuous inhibitory signaling, mediated by the inositol phosphatase SHIP-1 and the tyrosine phosphatase SHP-1, to maintain an unresponsive (anergic) state. Here we show that Ars/A1 B cells require Lyn to establish and maintain B cell unresponsiveness via restricting PI3K-dependent signaling pathways. This Lyn-dependent mechanism complements the impact of reduced mIgM B cell receptor (BCR) expression to restrict BCR signaling in Ars/A1 B cells. Our findings thus suggest that a subset of autoreactive B cells requires Lyn to become anergic and that the autoimmunity associated with dysregulated Lyn function may, in part, be due to an inability of these autoreactive B cells to become tolerized.

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Cite This Study

Fiske et al. (2026) studied this question.

synapsesocial.com/papers/69af956970916d39fea4cf89https://doi.org/10.1038/s41467-026-70085-z
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