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Tumor necrosis factor ???± decreases aquaporin 3 expression in intestinal epithelial cells through inhibition of constitutive transcription

机译:肿瘤坏死因子±通过抑制组成性转录而降低肠上皮细胞水通道蛋白3的表达

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Inflammatory diseases of the gut are associated with altered electrolyte and water transport, leading to the development of diarrhea. Epithelially expressed aquaporins (AQPs) are downregulated in inflammation, although the mechanisms involved are not known. We hypothesized that AQP3 expression in intestinal epithelial cells is altered in intestinal inflammation and that these changes are driven by tumor necrosis factor (TNF) ???± . Human colonic adenocarcinoma (HT?¢????29) cells were treated with TNF ???± to investigate signaling mechanisms in????vitro. AQP3 expression was assessed by real?¢????time PCR and radiolabeled glycerol uptake, with select inhibitors and a luciferase reporter construct used to further elucidate intracellular signaling. AQP3 expression was downregulated in HT?¢????29 cells treated with TNF ???± . Luciferase reporter construct experiments revealed that TNF ???± downregulated constitutive transcriptional activity of the AQP3 promoter, and inhibition of MEK/ERK and nuclear factor ???o B (NF?¢???? ???o B) signaling prevented the decrease in AQP3 mRNA expression. Constitutive AQP3 expression was suppressed by specificity protein (Sp) 3, and knockdown of this transcription factor bound to the AQP3 promoter was able to partially prevent the TNF ???± ?¢????induced downregulation of AQP3. TNF ???± signals through MEK/ERK and NF?¢???? ???o B to enhance the negative transcriptional control of AQP3 expression exerted by Sp3. Similar mechanisms regulate numerous ion channels, suggesting a common mechanism by which both ion and water transport are altered in inflammation.
机译:肠道炎性疾病与电解质和水运输的改变有关,导致腹泻的发展。上皮表达的水通道蛋白(AQPs)在炎症中被下调,尽管所涉及的机制尚不清楚。我们假设肠道炎症中改变了肠上皮细胞中的AQP3表达,并且这些改变是由肿瘤坏死因子(TNF)驱动的。用TNFα处理人结肠腺癌(HTβ29)细胞,以研究其体外信号转导机制。通过实时PCR和放射性标记的甘油摄取评估​​AQP3的表达,并使用选择性抑制剂和荧光素酶报道分子构建体进一步阐明细胞内信号传导。在用TNFα处理的29细胞中,AQP3表达下调。萤光素酶报告基因构建实验表明,TNF-α下调了AQP3启动子的组成型转录活性,并抑制了MEK / ERK和核因子κB(NFκBκB)的信号转导。 AQP3 mRNA表达下降。组成性AQP3表达被特异性蛋白(Sp)3抑制,与AQP3启动子结合的该转录因子的敲低能够部分阻止TNF诱导的AQP3下调。通过MEK / ERK和NF的TNF信号。 o B增强Sp3对AQP3表达的负转录控制。类似的机制调节了许多离子通道,提示了炎症中离子和水的运输都发生变化的共同机制。

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