诱导共刺激分子配体(ICOSL)与白细胞介素-10协同作用,促进宿主与微生物群的共生关系。
ICOS ligand and IL-10 synergize to promote host-microbiota mutualism.
作者信息
Landuyt Ashley E, Klocke Barbara J, Duck Lennard W, Kemp Keri M, Muir Rachel Q, Jennings Melissa S, Blum Samuel I, Tse Hubert M, Lee Goo, Morrow Casey D, Elson Charles O, Maynard Craig L
机构信息
Department of Pathology, University of Alabama at Birmingham, Birmingham, AL 35294.
Division of Gastroenterology and Hepatology, Department of Medicine, University of Alabama at Birmingham, Birmingham, AL 35294.
出版信息
Proc Natl Acad Sci U S A. 2021 Mar 30;118(13). doi: 10.1073/pnas.2018278118.
Genome-wide association studies have identified , which encodes the inducible costimulator igand (ICOSLG or ICOSL) as a susceptibility locus for inflammatory bowel disease. ICOSL has been implicated in the enhancement of pattern recognition receptor signaling in dendritic cells, induction of IL-10 production by CD4 T cells, and the generation of high-affinity antibodies to specific antigens-all of which can potentially explain its involvement in gastrointestinal inflammation. Here, we show that murine ICOSL deficiency results in significant enrichment of IL-10-producing CD4 T cells particularly in the proximal large intestine. Transient depletion of IL-10-producing cells from adult ICOSL-deficient mice induced severe colonic inflammation that was prevented when mice were first treated with metronidazole. ICOSL-deficient mice displayed reduced IgA and IgG antibodies in the colon mucus and impaired serum antibody recognition of microbial antigens, including flagellins derived from mucus-associated bacteria of the family. Confirming the synergy between ICOSL and IL-10, ICOSL deficiency coupled with CD4-specific deletion of the gene resulted in juvenile onset colitis that was impeded when pups were fostered by ICOSL-sufficient dams. In this setting, we found that both maternally acquired and host-derived antibodies contribute to the life anti-commensal antibody repertoire that mediates this protection in early life. Collectively, our findings reveal a partnership between ICOSL-dependent anti-commensal antibodies and IL-10 in adaptive immune regulation of the microbiota in the large intestine. Furthermore, we identify ICOSL deficiency as an effective platform for exploring the functions of anti-commensal antibodies in host-microbiota mutualism.
全基因组关联研究已经确定,编码诱导性共刺激配体(ICOSLG或ICOSL)的基因是炎症性肠病的一个易感基因座。ICOSL与树突状细胞中模式识别受体信号的增强、CD4 T细胞诱导IL-10的产生以及针对特定抗原产生高亲和力抗体有关——所有这些都可能解释其在胃肠道炎症中的作用。在这里,我们表明小鼠ICOSL缺陷导致产生IL-10的CD4 T细胞显著富集,特别是在近端大肠中。从成年ICOSL缺陷小鼠中短暂清除产生IL-10的细胞会诱发严重的结肠炎症,而当小鼠先用甲硝唑治疗时,这种炎症可以得到预防。ICOSL缺陷小鼠结肠黏液中的IgA和IgG抗体减少,血清对微生物抗原(包括来自该家族黏液相关细菌的鞭毛蛋白)的抗体识别受损。证实了ICOSL和IL-10之间的协同作用,ICOSL缺陷与基因的CD4特异性缺失相结合导致幼年性结肠炎,当幼崽由ICOSL充足的母鼠抚养时,这种结肠炎会受到抑制。在这种情况下,我们发现母体获得的抗体和宿主来源的抗体都有助于构成生命早期介导这种保护作用的抗共生抗体库。总的来说,我们的研究结果揭示了在大肠微生物群的适应性免疫调节中,依赖ICOSL的抗共生抗体和IL-10之间的一种伙伴关系。此外,我们将ICOSL缺陷确定为探索抗共生抗体在宿主-微生物群共生关系中功能的一个有效平台。
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