Author:
Choi Jin Huk,Wang Kuan-wen,Zhang Duanwu,Zhan Xiaowei,Wang Tao,Bu Chun-Hui,Behrendt Cassie L.,Zeng Ming,Wang Ying,Misawa Takuma,Li Xiaohong,Tang Miao,Zhan Xiaoming,Scott Lindsay,Hildebrand Sara,Murray Anne R.,Moresco Eva Marie Y.,Hooper Lora V.,Beutler Bruce
Abstract
Class-switch recombination (CSR) alters the Ig isotype to diversify antibody effector functions. IgD CSR is a rare event, and its regulation is poorly understood. We report that deficiency of 53BP1, a DNA damage-response protein, caused age-dependent overproduction of secreted IgD resulting from increased IgD CSR exclusively within B cells of mucosa-associated lymphoid tissues. IgD overproduction was dependent on activation-induced cytidine deaminase, hematopoietic MyD88 expression, and an intact microbiome, against which circulating IgD, but not IgM, was reactive. IgD CSR occurred via both alternative nonhomologous end-joining and homologous recombination pathways. Microbiota-dependent IgD CSR also was detected in nasal-associated lymphoid tissue of WT mice. These results identify a pathway, present in WT mice and hyperactivated in 53BP1-deficient mice, by which microbiota signal via Toll-like receptors to elicit IgD CSR.
Funder
HHS | National Institutes of Health
Publisher
Proceedings of the National Academy of Sciences
Cited by
50 articles.
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