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首页> 外文期刊>Gastroenterology >Epithelial Indoleamine 2,3-Dioxygenase 1 Modulates Aryl Hydrocarbon Receptor and Notch Signaling to Increase Differentiation of Secretory Cells and Alter Mucus-Associated Microbiota
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Epithelial Indoleamine 2,3-Dioxygenase 1 Modulates Aryl Hydrocarbon Receptor and Notch Signaling to Increase Differentiation of Secretory Cells and Alter Mucus-Associated Microbiota

机译:上皮吲哚胺2,3-二氧化根酶1调节芳基烃受体和凹口信号传导,以增加分泌细胞的分化,并改变粘液相关的微生物

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BACKGROUND & AIMS: Inflammation, injury, and infection upregulate expression of the tryptophan metabolizing enzyme indoleamine 2,3-dioxygenase 1 (IDO1) in the intestinal epithelium. We studied the effects of cell-specific IDO1 expression in the epithelium at baseline and during intestinal inflammation in mice. METHODS: We generated transgenic mice that overexpress fluorescence-tagged IDO1 in the intestinal epithelium under control of the villin promoter (IDO1-TG). We generated intestinal epithelial spheroids from mice with full-length Ido1 (controls), disruption of Ido1 (knockout mice), and IDO1-TG and analyzed them for stem cell and differentiation markers by real-time polymerase chain reaction, immunoblotting, and immunofluorescence. Some mice were gavaged with enteropathogenic Escherichia coli (E2348/69) to induce infectious ileitis, and ileum contents were quantified by polymerase chain reaction. Separate sets of mice were given dextran sodium sulfate or 2,4,6-trinitrobenzenesulfonic acid to induce colitis; intestinal tissues were analyzed by histology. We utilized published data sets GSE75214 and GDS2642 of RNA expression data from ilea of healthy individuals undergoing screening colonoscopies (controls) and patients with Crohn's disease. RESULTS: Histologic analysis of small intestine tissues from IDO1-TG mice revealed increases in secretory cells. Enteroids derived from IDO1-TG intestine had increased markers of stem, goblet, Paneth, enteroendocrine, and tuft cells, compared with control enteroids, with a concomitant decrease in markers of absorptive cells. IDO1 interacted nonenzymatically with the aryl hydrocarbon receptor to inhibit activation of NOTCH1. Intestinal mucus layers from IDO1-TG mice were 2-fold thicker than mucus layers from control mice, with increased proportions of Akkermansia muciniphila and Mucispirillum schaedleri. Compared to controls, IDO1-TG mice demonstrated an 85% reduction in ileal bacteria (P = .03) when challenged with enteropathogenic E coli, and were protected from immune infiltration, crypt dropout, and ulcers following administration of dextran sodium sulfate or 2,4,6-trinitrobenzenesulfonic acid. In ilea of Crohn's disease patients, increased expression of IDO1 correlated with increased levels of MUC2, LYZ1, and aryl hydrocarbon receptor, but reduced levels of SLC2A5. CONCLUSIONS: In mice, expression of IDO1 in the intestinal epithelial promotes secretory cell differentiation and mucus production; levels of IDO1 are positively correlated with secretory cell markers in ilea of healthy individuals and Crohn's disease patients. We propose that IDO1 contributes to intestinal homeostasis.
机译:背景&目的:炎症,损伤和感染使肠上皮中肠道上皮中的色氨酸代谢吲哚胺2,3-二氧合酶1(IDO1)的表达上调。我们研究了基线上皮细胞特异性IDO1表达的影响,以及在小鼠肠炎症期间。方法:在绒毛蛋白启动子(IDO1-TG)的控制下,我们产生过表达肠上皮中的荧光标记IDO1的转基因小鼠。我们从具有全长IDO1(对照)的小鼠产生的肠上皮球体,通过实时聚合酶链反应,免疫印迹和免疫荧光分析它们的干细胞和分化标志物的破坏。一些小鼠用肠致原性大肠杆菌(E2348 / 69)来捕获,以诱导感染性激素炎,并且通过聚合酶链反应量化Hileum含量。将单独的小鼠组给予葡聚糖硫酸钠或2,4,6-三硝基苯磺酸以诱导结肠炎;通过组织学分析肠组织。我们利用来自接受筛选结肠镜(对照)和克罗恩病患者的伊利亚的ILEA的公开数据集GSE75214和RNA表达数据的GDS2642。结果:IDO1-Tg小鼠的小肠组织组织学分析显示分泌细胞的增加。与IDO1-TG肠衍生自IDO1-TG肠的药物源自茎,脚卷,脑内,肠内内分泌和簇绒细胞的标记,与对照进入液相比,吸收细胞的标志物伴随着减少。 IDO1与芳基烃受体相互作用以抑制Notch1的活化。来自IDO1-TG小鼠的肠道粘液层比来自对照小鼠的粘液层厚度为2倍,随着Akkkermansia粘蛋白和粘虫胺菌的比例增加。与对照相比,IDO1-TG小鼠在用肠致原肠杆菌攻击攻击时,ID1-TG小鼠的含量减少了85%(p = .03),并在施用葡聚糖硫酸钠或2时保护免疫渗透,隐窝辍学和溃疡。 4,6-三硝基苯磺酸。在克罗恩病患者的ILEA中,IDO1的表达增加与MUC2,LYZ1和芳基烃受体的水平增加,但减少了SLC2A5的水平。结论:在小鼠中,IDO1在肠上皮细胞中的表达促进分泌细胞分化和粘液产生; IDO1的水平与健康个体和克罗恩病患者的ILEA中的分泌细胞标志物呈正相关。我们建议IDO1有助于肠道稳态。

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