首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Transcriptional Repression of the Transforming Growth Factor β (TGF-β) Pseudoreceptor BMP and Activin Membrane-bound Inhibitor (BAMBI) by Nuclear Factor κB (NF-κB) p50 Enhances TGF-β Signaling in Hepatic Stellate Cells
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Transcriptional Repression of the Transforming Growth Factor β (TGF-β) Pseudoreceptor BMP and Activin Membrane-bound Inhibitor (BAMBI) by Nuclear Factor κB (NF-κB) p50 Enhances TGF-β Signaling in Hepatic Stellate Cells

机译:核因子κB(NF-κB)p50对转化生长因子β(TGF-β)假受体BMP和激活素膜结合抑制剂(BAMBI)的转录抑制可增强肝星状细胞中的TGF-β信号传导。

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摘要

TLR4 signaling induces down-regulation of the bone morphogenic protein (BMP) and activin membrane-bound inhibitor (BAMBI), which enhances TGF-β signaling during hepatic stellate cell (HSC) activation. We investigated the mechanism by which TLR4 signaling down-regulates BAMBI expression in HSCs and found that TLR4- and TNF-α-mediated BAMBI down-regulation is dependent on regulation of BAMBI promoter activity through the interaction with NF-κBp50 and HDAC1 in HSCs. Bambi was predominantly expressed in HSCs, at high levels in quiescent HSCs but at low levels in in vivo-activated and LPS-stimulated HSCs. In human HSCs, BAMBI expression was down-regulated in response to LPS and TNF-α. A BAMBI reporter assay demonstrated that the regulatory element to repress BAMBI transcription is located between 3384 and 1560 bp upstream from the transcription start site. LPS stimulation down-regulated BAMBI expression in cells with NF-κBp65 knockdown. However, it failed to down-regulate BAMBI in cells with inactivation of NF-κB or NF-κBp50 silencing, indicating that NF-κBp50 is a factor for BAMBI down-regulation. ChIP analysis revealed that LPS and TNF-α induced binding of the NF-κBp50/p50 homodimer to the BAMBI promoter region. We also found that HDAC1 is bound to this region as part of the NF-κBp50-HDAC1 complex, repressing transcriptional activity of the BAMBI promoter. Finally, we confirmed that LPS does not repress BAMBI reporter activity using a BAMBI reporter construct with a mutation at 3166 bp upstream of the coding region. In summary, our study demonstrates that LPS- and TNF-α-induced NF-κBp50-HDAC1 interaction represses BAMBI transcriptional activity, which contributes to TLR4-mediated enhancement of TGF-β signaling in HSCs during liver fibrosis.
机译:TLR4信号传导诱导骨形态发生蛋白(BMP)和激活素膜结合抑制剂(BAMBI)的下调,从而在肝星状细胞(HSC)激活过程中增强TGF-β信号传导。我们研究了TLR4信号下调HSCs中BAMBI表达的机制,发现TLR4和TNF-α介导的BAMBI下调取决于HSCs中与NF-κBp50和HDAC1相互作用对BAMBI启动子活性的调节。 Bambi主要在HSC中表达,在静止的HSC中高水平表达,而在体内激活的和LPS刺激的HSC中低水平表达。在人类HSC中,响应LPS和TNF-α,BAMBI表达下调。 BAMBI报告基因分析表明,抑制BAMBI转录的调控元件位于转录起始位点上游3384和1560 bp之间。 LPS刺激下调了NF-κBp65敲低细胞中BAMBI的表达。然而,它未能通过失活NF-κB或NF-κBp50沉默而下调BAMBI,这表明NF-κBp50是BAMBI下调的一个因素。 ChIP分析显示,LPS和TNF-α诱导NF-κBp50/ p50同型二聚体与BAMBI启动子区域结合。我们还发现,HDAC1作为NF-κBp50-HDAC1复合体的一部分与该区域结合,从而抑制了BAMBI启动子的转录活性。最后,我们证实,LPS不会使用BAMBI报告基因构建体抑制BAMBI报告基因活性,该构建体在编码区上游3166 bp处发生突变。总而言之,我们的研究表明,LPS和TNF-α诱导的NF-κBp50-HDAC1相互作用抑制BAMBI转录活性,这有助于TLR4介导的肝纤维化期间HSC中TGF-β信号增强。

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