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Epithelium-Intrinsic MicroRNAs Contribute to Mucosal Immune Homeostasis by Promoting M-Cell Maturation

机译:上皮固有的MicroRNA通过促进M细胞成熟促进粘膜免疫稳态。

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摘要

M cells in the follicle-associated epithelium (FAE) of Peyer’s patches (PPs) serve as a main portal for external antigens and function as a sentinel in mucosal immune responses. The scarcity of these cells has hampered identification of M cell-specific molecules. Recent efforts have begun to provide insight into antigen transcytosis and differentiation of M cells; however, the molecular mechanisms underlying these processes are not fully elucidated. Small non-coding RNAs including microRNA (miRNA) have been reported to regulate gene expression and control various biological processes such as cellular differentiation and function. To evaluate the expression of miRNAs in FAE, including M cells, we previously performed microarray analysis comparing intestinal villous epithelium (VE) and PP FAE. Here we confirmed FAE specific miRNA expression levels by quantitative PCR. To gain insight into miRNA function, we generated mice with intestinal epithelial cell-specific deletion of Dicer1 (DicerΔIEC) and analyzed intestinal phenotypes, including M-cell differentiation, morphology and function. DicerΔIEC mice had a marked decrease in M cells compared to control floxed Dicer mice, suggesting an essential role of miRNAs in maturation of these cells. Furthermore, transmission electron microscopic analysis revealed that depletion of miRNA caused the loss of endosomal structures in M cells. In addition, antigen uptake by M cells was impaired in DicerΔIEC mice. These results suggest that miRNAs play a significant role in M cell differentiation and help secure mucosal immune homeostasis.
机译:Peyer斑块(PPs)的卵泡相关上皮(FAE)中的M细胞充当外部抗原的主要门户,并充当粘膜免疫反应的前哨。这些细胞的稀缺性阻碍了对M细胞特异性分子的鉴定。最近的努力已开始提供有关抗原转胞作用和M细胞分化的见解;然而,尚未完全阐明这些过程的分子机制。据报道,包括microRNA(miRNA)在内的小型非编码RNA可调节基因表达并控制各种生物学过程,例如细胞分化和功能。为了评估miE在FAE(包括M细胞)中的表达,我们先前进行了微阵列分析,比较了肠绒毛上皮(VE)和PP FAE。在这里,我们通过定量PCR确认了FAE特异性miRNA表达水平。为了深入了解miRNA功能,我们生成了具有肠道上皮细胞特异性Dicer1缺失(Dicer ΔIEC)的小鼠,并分析了肠道表型,包括M细胞分化,形态和功能。与对照的Dicer小鼠相比,Dicer ΔIEC小鼠的M细胞明显减少,表明miRNA在这些细胞的成熟中起着至关重要的作用。此外,透射电子显微镜分析显示,miRNA的消耗导致M细胞内体结构的丧失。此外,Dicer ΔIEC小鼠的M细胞抗原摄取受到损害。这些结果表明,miRNA在M细胞分化中起重要作用,并有助于确保粘膜免疫稳态。

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