Mast cells help organize the Peyer’s patch niche for induction of IgA responses

派尔斑 生发中心 免疫学 固有层 生物 霍乱毒素 微熔池 免疫球蛋白A 记忆B细胞 肠粘膜 微生物学 肥大细胞 B细胞 抗体 细胞生物学 免疫系统 上皮 医学 免疫球蛋白G 内科学 遗传学
作者
Marco De Giovanni,Vivasvan S. Vykunta,Adi Biram,Kevin Y. Chen,Hanna Taglinao,Jinping An,Dean Sheppard,Helena Païdassi,Jason G. Cyster
出处
期刊:Science immunology [American Association for the Advancement of Science]
卷期号:9 (93) 被引量:5
标识
DOI:10.1126/sciimmunol.adj7363
摘要

Peyer’s patches (PPs) are lymphoid structures situated adjacent to the intestinal epithelium that support B cell responses that give rise to many intestinal IgA-secreting cells. Induction of isotype switching to IgA in PPs requires interactions between B cells and TGFβ-activating conventional dendritic cells type 2 (cDC2s) in the subepithelial dome (SED). However, the mechanisms promoting cDC2 positioning in the SED are unclear. Here, we found that PP cDC2s express GPR35, a receptor that promotes cell migration in response to various metabolites, including 5-hydroxyindoleacetic acid (5-HIAA). In mice lacking GPR35, fewer cDC2s were found in the SED, and frequencies of IgA + germinal center (GC) B cells were reduced. IgA plasma cells were reduced in both the PPs and lamina propria. These phenotypes were also observed in chimeric mice that lacked GPR35 selectively in cDCs. GPR35 deficiency led to reduced coating of commensal bacteria with IgA and reduced IgA responses to cholera toxin. Mast cells were present in the SED, and mast cell–deficient mice had reduced PP cDC2s and IgA + cells. Ablation of tryptophan hydroxylase 1 (Tph1) in mast cells to prevent their production of 5-HIAA similarly led to reduced PP cDC2s and IgA responses. Thus, mast cell–guided positioning of GPR35 + cDC2s in the PP SED supports induction of intestinal IgA responses.
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