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首页> 外文期刊>American Journal of Physiology >MicroRNA-195 regulates Tuft cell function in the intestinal epithelium by altering translation of DCLK1
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MicroRNA-195 regulates Tuft cell function in the intestinal epithelium by altering translation of DCLK1

机译:MicroRNA-195通过改变DCLK1的翻译来调节肠上皮细胞的簇绒细胞功能

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Intestinal Tuft cells sense luminal contents to influence the mucosal immune response against eukaryotic infection. Paneth cells secrete antimicrobial proteins as part of the mucosal protective barrier. Defects in Tuft and Paneth cells occur commonly in various gut mucosal disorders. MicroRNA-195 (miR-195) regulates the stability and translation of target mRNAs and is involved in many aspects of cell processes and pathologies. Here, we reported the posttranscriptional mechanisms by which miR-195 regulates Tuft and Paneth cell function in the small intestinal epithelium. Mucosal tissues from intestinal epithelial tissue-specific miR-195 transgenic (miR195-Tg) mice had reduced numbers of double cortin-like kinase 1 (DCLKI)-positive (Tuft) and lysozyme-positive (Paneth) cells, compared with tissues from control mice, but there were no effects on Goblet cells and enterocytes. Intestinal organoids expressing higher miR-195 levels from miR195-Tg mice also exhibited fewer Tuft and Paneth cells. Transgenic expression of miR-195 in mice failed to alter growth of the small intestinal mucosa but increased vulnerability of the gut barrier in response to lipopolysaccharide (LPS). Studies aimed at investigating the mechanism underlying regulation of Tuft cells revealed that miR-195 directly interacted with the Dclk1 mRNA via its 3'-untranslated region and inhibited DCLK1 translation. Interestingly, the RNA-binding protein HuR competed with miR-195 for binding Dclk1 mRNA and increased DCLK1 expression. These results indicate that miR-195 suppresses the function of Tuft and Paneth cells in the small intestinal epithelium and further demonstrate that increased miR-195 disrupts Tuft cell function by inhibiting DCLK1 translation via interaction with HuR.
机译:肠丛细胞感知管腔内容物,从而影响粘膜对真核细胞感染的免疫反应。Paneth细胞分泌抗菌蛋白,作为粘膜保护屏障的一部分。簇状细胞和盘状细胞的缺陷通常发生在各种肠道粘膜疾病中。MicroRNA-195(miR-195)调节靶mRNA的稳定性和翻译,并参与细胞过程和病理学的许多方面。在这里,我们报道了miR-195调节小肠上皮细胞簇状和盘状细胞功能的转录后机制。与对照组小鼠的组织相比,肠上皮组织特异性miR-195转基因(miR195-Tg)小鼠的粘膜组织中双皮质素样激酶1(DCLKI)阳性(Tuft)和溶菌酶阳性(Paneth)细胞的数量减少,但对杯状细胞和肠细胞没有影响。从miR195-Tg小鼠中表达较高miR-195水平的肠类器官也表现出较少的簇状细胞和Paneth细胞。在小鼠中转基因表达miR-195未能改变小肠粘膜的生长,但增加了肠道屏障对脂多糖(LPS)的敏感性。旨在研究簇状细胞调控机制的研究表明,miR-195通过其3'-非翻译区直接与Dclk1 mRNA相互作用,并抑制Dclk1翻译。有趣的是,RNA结合蛋白HuR与miR-195竞争结合Dclk1 mRNA并增加Dclk1表达。这些结果表明,miR-195抑制小肠上皮中簇状细胞和Paneth细胞的功能,并进一步证明,增加的miR-195通过与HuR相互作用抑制DCLK1翻译,从而破坏簇状细胞的功能。

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