细胞生物学
维甲酸
生物
T细胞
获得性免疫系统
髓样
免疫系统
肠系膜淋巴结
维甲酸
肠道菌群
免疫学
免疫
维生素
微熔池
视黄醇
细胞
肠上皮
肠道相关淋巴组织
肠粘膜
过继性细胞移植
抗原提呈细胞
化学
焊剂(冶金)
抗原
肠细胞
树突状细胞
细胞分化
维甲酸
胆钙化醇
维生素D与神经学
作者
Tarun Srinivasan,Chaitanya Dende,Kelly A. Ruhn,Stefanie L. Moye,Ann Marie Johnson,Cassie L. Behrendt,Brian Hassell,Gonçalo Vale,Jiwoong Kim,Jake Lichterman,Chaoying Liang,Carlos Arana,Prithvi Raj,Xiaowei Zhan,Jeffrey G. McDonald,Andrew Y. Koh,Lora V. Hooper
标识
DOI:10.1016/j.chom.2026.05.019
摘要
Summary The intestinal microbiota shapes adaptive immunity, but the mechanisms remain incompletely defined. Here, we show that the microbiota initiates the movement of retinoids—dietary vitamin A derivatives including retinol and retinoic acid—through a sequential pathway from epithelial cells to myeloid cells and ultimately to T cells in the mesenteric lymph nodes (mLNs). This cellular axis is traversed over three days. Microbe-associated molecular patterns (MAMPs) initiate retinoid flux by inducing expression of serum amyloid A (SAA) proteins. These epithelial retinol-binding proteins are necessary and sufficient for epithelial-to-myeloid cell retinoid transfer and for myeloid cell migration to the mLNs. In the mLNs, microbial antigen drives retinoid transfer from myeloid cells to developing T cells, culminating in T cell retinoid uptake and transcriptional programming. This pathway is activated during postnatal development, when gut adaptive immunity is first established. These findings reveal that the microbiota programs intestinal adaptive immunity by regulating immune cell access to a nutrient-derived developmental signal. Highlights The gut microbiota enables vitamin A flux to developing intestinal CD4⁺ T cells. Microbiota-induced SAA initiates vitamin A flux along a gut myeloid–T cell axis. Microbial molecular patterns and antigen drive distinct steps of vitamin A flux. Microbiota-driven vitamin A flux programs intestinal T cell homing and maturation. Graphical Abstract
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