首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Colon OCTN2 Gene Expression Is Up-regulated by Peroxisome Proliferator-activated Receptor γ in Humans and Mice and Contributes to Local and Systemic Carnitine Homeostasis
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Colon OCTN2 Gene Expression Is Up-regulated by Peroxisome Proliferator-activated Receptor γ in Humans and Mice and Contributes to Local and Systemic Carnitine Homeostasis

机译:结肠OCTN2基因表达在人类和小鼠中被过氧化物酶体增殖物激活的受体γ上调并促进局部和全身的肉碱稳态

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摘要

In the large intestine organic cation transporter type-2 (OCTN2) is recognized as a transporter of compounds such as carnitine and colony sporulation factor, promoting health of the colon intestinal epithelium. Recent reports suggest that OCTN2 expression in small intestine is under control of peroxisome proliferator-activated receptor-α (PPARα). However, PPARα contribution to colonic OCTN2 expression remains controversial. Here we examined the transcriptional regulation of colon OCTN2 gene by PPARγ. To exclude any additional modulation of other PPAR to OCTN2 expression, we used both in vivo and in vitro PPAR-null models and specific PPAR inhibitors. The PPARγ agonists thiazolidinediones increased both OCTN2 mRNA and protein expression in colonic epithelial cell lines independently by PPARα expression. The induction was blocked only by PPARγ antagonists or by γORF4, a PPARγ isoform with dominant negative activity, suggesting a PPARγ-dependent mechanism. A conserved noncanonical PPAR-responsive element was found by computational analysis in the first intron of human OCTN2 gene and validated by EMSA assay. Promoter-reporter assays further confirmed transcriptional functionality of the putative PPAR response element, whereas selective mutation caused complete loss of responsiveness to PPARγ activation. Finally, adenovirus-mediated overexpression of constitutively active PPARγ mutant increased colon OCTN2 expression in PPARα−/− mice. Interestingly, animals overexpressing colon PPARγ showed a significant increase in plasma carnitine, thus demonstrating the functional contribution of large intestine to systemic carnitine homeostasis. This study reveals a PPARγ-dependent absorption machinery in colon that is likely involved in the health of colon epithelium, in the microbiota-host interactions and in the absorption of nutraceuticals and drugs.
机译:在大肠中,有机阳离子转运蛋白2型(OCTN2)被视为肉碱和菌落形成因子等化合物的转运蛋白,可促进结肠肠上皮的健康。最近的报道表明,小肠中的OCTN2表达受过氧化物酶体增殖物激活受体α(PPARα)的控制。但是,PPARα对结肠OCTN2表达的贡献仍存在争议。在这里,我们检查了PPARγ对结肠OCTN2基因的转录调控。为了排除其他PPAR对OCTN2表达的任何其他调节,我们使用了体内和体外PPAR无效模型和特异性PPAR抑制剂。 PPARγ激动剂噻唑烷二酮通过PPARα表达独立地增加结肠上皮细胞系中的OCTN2 mRNA和蛋白表达。诱导仅被PPARγ拮抗剂或γORF4(具有显着负活性的PPARγ同工型)阻断,提示了PPARγ依赖性机制。通过计算分析,在人OCTN2基因的第一个内含子中发现了一个保守的非经典PPAR反应元件,并通过EMSA分析进行了验证。启动子报告测定进一步证实了假定的PPAR反应元件的转录功能,而选择性突变导致对PPARγ激活的反应性完全丧失。最后,腺病毒介导的组成型活性PPARγ突变体的过表达提高了PPARα-/-小鼠结肠OCTN2的表达。有趣的是,过表达结肠PPARγ的动物的血浆肉碱水平显着增加,从而证明了大肠对系统肉碱稳态的功能贡献。这项研究揭示了结肠中PPARγ依赖性的吸收机制,该机制可能与结肠上皮的健康,微生物群-宿主之间的相互作用以及营养药和药物的吸收有关。

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