Section of Biomedicine, Department of Veterinary Disease Biology, Faculty of Health and Medical Sciences, University of Copenhagen, Frederiksberg C, Denmark.
Eur J Immunol. 2013 Feb;43(2):447-57. doi: 10.1002/eji.201242462. Epub 2012 Dec 12.
Intestinal epithelial cells (IECs) are one of a few cell types in the body with constitutive surface expression of natural killer group 2 member D (NKG2D) ligands, although the magnitude of ligand expression by IECs varies. Here, we investigated whether the gut microbiota regulates the NKG2D ligand expression on small IECs. Germ-free and ampicillin-treated mice were shown to have a significant increase in NKG2D ligand expression. Interestingly, vancomycin treatment, which propagated the bacterium Akkermansia muciniphila and reduced the level of IFN-γ and IL-15 in the intestine, decreased the NKG2D ligand expression on IECs. In addition, a similar increase in A. muciniphila and a decreased NKG2D ligand expression was seen after feeding with dietary xylooligosaccharides. A pronounced increase in NKG2D ligand expression was furthermore observed in IL-10-deficient mice. In summary, our results suggest that the constitutive levels of NKG2D ligand expression on IECs are regulated by microbial signaling in the gut and further disfavor the intuitive notion that IEC NKG2D ligand expression is caused by low-grade immune reaction against commensal bacteria. It is more likely that constitutively high IEC NKG2D ligand expression is kept in check by an intestinal regulatory immune milieu induced by members of the gut microbiota, for example A. muciniphila.
肠上皮细胞 (IECs) 是体内少数几种固有表面表达自然杀伤细胞组 2 成员 D (NKG2D) 配体的细胞类型之一,尽管 IECs 的配体表达量存在差异。在这里,我们研究了肠道微生物群是否调节小 IECs 上的 NKG2D 配体表达。无菌和氨苄青霉素处理的小鼠表现出 NKG2D 配体表达显著增加。有趣的是,万古霉素处理促进了阿克曼氏菌(Akkermansia muciniphila)的繁殖,并降低了肠道中的 IFN-γ 和 IL-15 水平,从而降低了 IECs 上的 NKG2D 配体表达。此外,在喂食木二糖寡糖后,也观察到阿克曼氏菌的类似增加和 NKG2D 配体表达的降低。此外,在 IL-10 缺陷小鼠中还观察到 NKG2D 配体表达的明显增加。总之,我们的结果表明,IECs 上 NKG2D 配体表达的固有水平受肠道微生物信号的调节,这进一步否定了 IEC NKG2D 配体表达是由对共生菌的低度免疫反应引起的直观概念。更有可能的是,肠道微生物群的成员(例如阿克曼氏菌)诱导的肠道调节免疫环境使固有高表达的 IEC NKG2D 配体受到抑制。