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Counter-regulatory effect of sodium butyrate on tumour necrosis factor-alpha (TNF-α)-induced complement C3 and factor B biosynthesis in human intestinal epithelial cells

机译:丁酸钠对人小肠上皮细胞中肿瘤坏死因子-α(TNF-α)诱导的补体C3和B因子生物合成的反调节作用

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摘要

The various biological activities of butyrate have been well documented. In this study, we tested the effects of butyrate on TNF-α-induced complement C3 and factor B biosynthesis in human intestinal epithelial cells. The biosynthesis of C3, factor B and IL-8 was evaluated at the protein and mRNA levels. To evaluate transcriptional activation, the nuclear run-on assay was performed. The transcription factor–DNA binding activity was assessed by an electrophoretic gel mobility shift assay (EMSA). In the intestinal epithelial cell lines HT-29, T84 and Caco-2, sodium butyrate enhanced TNF-α-induced C3 secretion, but suppressed TNF-α-induced factor B and IL-8 secretion. Nuclear run-on assay revealed that transcriptional regulatory mechanisms are involved in the effects of sodium butyrate. The EMSAs indicated that sodium butyrate suppressed TNF-α-induced nuclear factor (NF)-κB– and activation protein (AP)-1–DNA binding activity, but enhanced TNF-α-induced activation of CCAAT/enhancer-binding protein (C/EBP)β (NF-IL-6)–DNA binding activity. Sodium butyrate induced a counter-regulatory effect on TNF-α-induced C3 and factor B biosynthesis in human intestinal epithelial cells. Butyrate action has been discussed with its activity to induce histone hyperacetylation, but its counter-regulatory effect on complement biosynthesis may be closely associated with the modulation of transcription factor activation.
机译:丁酸盐的各种生物活性已得到充分证明。在这项研究中,我们测试了丁酸对人肠上皮细胞中TNF-α诱导的补体C3和因子B生物合成的影响。在蛋白质和mRNA水平评估了C3,因子B和IL-8的生物合成。为了评估转录激活,进行了核运行分析。转录因子-DNA结合活性通过电泳迁移率测定(EMSA)进行评估。在肠上皮细胞系HT-29,T84和Caco-2中,丁酸钠增强TNF-α诱导的C3分泌,但抑制TNF-α诱导的B因子和IL-8分泌。核运行分析表明,转录调节机制与丁酸钠的作用有关。 EMSAs表明,丁酸钠抑制TNF-α诱导的核因子(NF)-κB–和活化蛋白(AP)-1–DNA结合活性,但增强TNF-α诱导的CCAAT /增强子结合蛋白(C / EBP)β(NF-IL-6)–DNA结合活性。丁酸钠对人肠上皮细胞中TNF-α诱导的C3和B因子生物合成具有反调节作用。已经讨论了丁酸盐的作用及其诱导组蛋白超乙酰化的活性,但是其对补体生物合成的反调节作用可能与转录因子激活的调节密切相关。

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