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AMPK improves gut epithelial differentiation and barrier function via regulating Cdx2 expression

机译:AMPK通过调节Cdx2表达改善肠道上皮分化和屏障功能

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摘要

Impairment in gut epithelial integrity and barrier function is associated with many diseases. The homeostasis of intestinal barrier is based on a delicate regulation of epithelial proliferation and differentiation. AMP-activated protein kinase (AMPK) is a master regulator of energy metabolism, and cellular metabolites are intrinsically involved in epigenetic modifications governing cell differentiation. We aimed to evaluate the regulatory role of AMPK on intestinal epithelial development and barrier function. In this study, AMPK activator (AICAR) improved the barrier function of Caco-2 cells as indicated by increased transepithelial electrical resistance and reduced paracellular FITC-dextran permeability; consistently, AICAR enhanced epithelial differentiation and tight junction formation. Transfection of Caco-2 cells with AMPK WT plasmid, which enhances AMPK activity, improved epithelial barrier function and epithelial differentiation, while K45R (AMPK dominant negative mutant) impaired; these changes were correlated with the expression of caudal type homeobox 2 (CDX2), the key transcription factor committing cells to intestinal epithelial lineage. CDX2 deficiency abolished intestinal differentiation promoted by AMPK activation. Mechanistically, AMPK inactivation was associated with polycomb repressive complex 2 regulated enrichment of H3K27me3, the inhibitory histone modification, and lysine-specific histone demethylase-1-mediated reduction of H3K4me3, a permissive histone modification. Those histone modifications provide a mechanistic link between AMPK and CDX2 expression. Consistently, epithelial AMPK knockout in vivo reduced CDX2 expression, impaired intestinal barrier function, integrity and ultrastructure of tight junction, and epithelial cell migration, promoted intestinal proliferation and exaggerated dextran sulfate sodium-induced colitis. In summary, AMPK enhances intestinal barrier function and epithelial differentiation via promoting CDX2 expression, which is partially mediated by altered histone modifications in the Cdx2 promoter.
机译:肠上皮完整性和屏障功能受损与许多疾病有关。肠屏障的稳态是基于上皮增殖和分化的精细调节。 AMP激活的蛋白激酶(AMPK)是能量代谢的主要调节剂,细胞代谢物本质上参与控制细胞分化的表观遗传修饰。我们旨在评估AMPK对肠上皮发育和屏障功能的调节作用。在这项研究中,AMPK激活剂(AICAR)改善了Caco-2细胞的屏障功能,表现为跨上皮电阻增加和细胞旁FITC-葡聚糖通透性降低。始终如一,AICAR增强了上皮分化和紧密连接的形成。用AMPK WT质粒转染Caco-2细胞,可增强AMPK活性,改善上皮屏障功能和上皮分化,而K45R(AMPK显性负突变体)受损;这些改变与尾型同源盒2(CDX2)的表达相关,尾型同源盒2(CDX2)是使细胞进入肠道上皮谱系的关键转录因子。 CDX2缺乏症消除了由AMPK激活促进的肠道分化。从机制上讲,AMPK失活与H3K27me3的多梳阻抑复合物2调控的富集,抑制性组蛋白修饰和赖氨酸特异性组蛋白脱甲基酶-1介导的H3K4me3介导的还原(允许的组蛋白修饰)有关。这些组蛋白修饰提供了AMPK和CDX2表达之间的机械联系。一致地,体内上皮AMPK敲除降低CDX2表达,损害肠屏障功能,紧密连接的完整性和超微结构,以及上皮细胞迁移,促进肠道增殖和硫酸葡聚糖钠诱发的结肠炎。总之,AMPK通过促进CDX2表达来增强肠屏障功能和上皮分化,这部分由Cdx2启动子中组蛋白修饰的改变介导。

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