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Self-reactive B cells in the GALT are actively curtailed to prevent gut inflammation
Ashima Shukla, Cindi Chen, Julia Jellusova, Charlotte R. Leung, Elaine Kao, Numana Bhat, Wai W. Lin, John R. Apgar, Robert C. Rickert
Ashima Shukla, Cindi Chen, Julia Jellusova, Charlotte R. Leung, Elaine Kao, Numana Bhat, Wai W. Lin, John R. Apgar, Robert C. Rickert
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Research Article Immunology Inflammation

Self-reactive B cells in the GALT are actively curtailed to prevent gut inflammation

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Abstract

Immune homeostasis in the gut-associated lymphoid tissues (GALT) is critical to prevent the development of inadvertent pathologies. B cells, as the producers of antibodies and cytokines, play an important role in maintaining the GALT homeostasis. However, the mechanism by which B cells specifically direct their responses toward non-self-antigens and become ignorant to self-antigens in the GALT is not known. Therefore, we developed what we believe to be a novel mouse model by expressing duck egg lysozyme (DEL) in gut epithelial cells in presence of HEL-reactive B cells. Notably, we observed a transient activation and rapid deletion of self-reactive B cells in Peyer’s patches and mesenteric lymph nodes upon self-antigen exposure. The survival of self-reactive B cells upon exposure to their self-antigen was partially rescued by blocking receptor editing but could be completely rescued by stronger survival signal, such as ectopic expression of BCL2. Importantly, rescuing the self-reactive B cells promoted production of autoantibodies and gut inflammation. Mechanistically, we identify a specific activation of TGF-β signaling in self-reactive B cells in the gut and a critical role of this pathway in maintaining peripheral tolerance. Collectively, our studies describe functional consequences and the fate of self-reactive B cells in GALT and provide potentially novel mechanistic insights governing self-tolerance of B cells in the gut.

Authors

Ashima Shukla, Cindi Chen, Julia Jellusova, Charlotte R. Leung, Elaine Kao, Numana Bhat, Wai W. Lin, John R. Apgar, Robert C. Rickert

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Figure 5

Ectopic expression of Bcl2 rescues the survival of self-reactive B cells in gut.

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Ectopic expression of Bcl2 rescues the survival of self-reactive B cells...
(A) Schematic for experimental design to reconstitute Villincre+ and Villincre+mDELloxp mice with SWHEL-Bcl2–transgenic mice bone marrow. (B) Gated on lymphocyte population, graph displaying the frequency of B220+ cells in spleens, pLNs, mLNs, and PPs of RVillincre+ (Bcl2) and RVillincre+mDELloxp (Bcl2) mice. (C) Gated on B220+ population, graph displaying HEL-binding cell frequencies in the spleens, pLNs, mLNs, and PPs of RVillincre+ (Bcl2) and RVillincre+mDELloxp (Bcl2) mice. MFI of (D) HEL binding, (E) MHC-II, and (F) CD86 on HEL-specific cells in the spleens, pLNs, mLNs, and PPs of RVillincre+ (Bcl2) and RVillincre+mDELloxp (Bcl2) mice. (G) Gated on B220+Hel+ cells, graph displaying the frequency of Bim+ cells. ***P < 0.001, **P < 0.01, ****P < 0.0001, *P < 0.05; n = 9 mice per group. Grouped statistical analysis was performed by multiple t test.

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ISSN 2379-3708

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