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Human kininogen gene is transactivated by the farnesoid X receptor   总被引:3,自引:0,他引:3  
Human kininogen belongs to the plasma kallikreinkinin system. High molecular weight kininogen is the precursor for two-chain kinin-free kininogen and bradykinin. It has been shown that the two-chain kinin-free kininogen has the properties of anti-adhesion, anti-platelet aggregation, and anti-thrombosis, whereas bradykinin is a potent vasodilator and mediator of inflammation. In this study we show that the human kininogen gene is strongly up-regulated by agonists of the farnesoid X receptor (FXR), a nuclear receptor for bile acids. In primary human hepatocytes, both the endogenous FXR agonist chenodeoxycholate and synthetic FXR agonist GW4064 increased kininogen mRNA with a maximum induction of 8-10-fold. A more robust induction of kininogen expression was observed in HepG2 cells, where kininogen mRNA was increased by chenodeoxycholate or GW4064 up to 130-140-fold as shown by real time PCR. Northern blot analysis confirmed the up-regulation of kininogen expression by FXR agonists. To determine whether kininogen is a direct target of FXR, we examined the sequence of the kininogen promoter and identified a highly conserved FXR response element (inverted repeat, IR-1) in the proximity of the kininogen promoter (-66/-54). FXR/RXRalpha heterodimers specifically bind to this IR-1. A construct of a minimal promoter with the luciferase reporter containing this IR-1 was transactivated by FXR. Deletion or mutation of this IR-1 abolished FXR-mediated promoter activation, indicating that this IR-1 element is responsible for the promoter transactivation by FXR. We conclude that kininogen is a novel and direct target of FXR, and bile acids may play a role in the vasodilation and anti-coagulation processes.  相似文献   

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Bile acid malabsorption, which in patients leads to excessive fecal bile acid excretion and diarrhea, is characterized by a vicious cycle in which the feedback regulation of bile acid synthesis is interrupted, resulting in additional bile acid production. Feedback regulation of bile acid synthesis is under the control of an endocrine pathway wherein activation of the nuclear bile acid receptor, farnesoid X receptor (FXR), induces enteric expression of the hormone, fibroblast growth factor 15 (FGF15). In liver, FGF15 acts together with FXR-mediated expression of small heterodimer partner to repress bile acid synthesis. Here, we show that the FXR-FGF15 pathway is disrupted in mice lacking apical ileal bile acid transporter, a model of bile acid malabsorption. Treatment of Asbt-/- mice with either a synthetic FXR agonist or FGF15 downregulates hepatic cholesterol 7alpha-hydroxylase mRNA levels, decreases bile acid pool size, and reduces fecal bile acid excretion. These findings suggest that FXR agonists or FGF15 could be used therapeutically to interrupt the cycle of excessive bile acid production in patients with bile acid malabsorption.  相似文献   

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HNF1α对人FXR 启动子的调控作用   总被引:3,自引:0,他引:3  
为探讨肝细胞核因子1α(HNF1α)对人胆汁酸受体(FXR)转录激活的作用及机制,将含HNF1α的真核表达载体(pcDNA3.1(+)HNF1α)和含有FXR启动子的荧光素酶报告基因载体共转染人肝癌细胞系HepG2,检测转染细胞中荧光素酶活性并用半定量RT-PCR、免疫印迹法检测FXR的表达.QuikChange法对FXR启动子HNF1α可能结合位点进行突变,将包含突变点的重组荧光素酶报告质粒单独或与pcDNA3.1(+)共同转染HepG2细胞,检测各组荧光素酶活性.根据凝胶电泳迁移率变化,分析HNF1α与FXR启动子区域的结合.结果发现,转染pcDNA 3.1(+)HNF1α可以上调FXR在HepG2细胞中的表达,并增强FXR启动子活性且具有剂量依赖性;-65~-48区域的点突变,导致FXR启动子活性明显降低,共转染pcDNA3.1(+)HNF1α也不具有增强作用.结果提示,转录因子HNF1α能调控FXR基因表达,其机制为:HNF1α与FXR启动子区域-65~-48区域的反向半位点结合,发挥其反式激活作用.  相似文献   

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Farnesoid X receptor (FXR) serves as a receptor for chenodeoxycholic acid (CDCA) and other bile acids, and it coordinates cholesterol and lipid metabolism. Because targeting the FXR-CDCA interaction might provide a way to regulate lipid homeostasis, we developed an FXR binding assay based on fluorescence polarization. Employing a fluorescently labeled CDCA (CDCA-F), we showed that CDCA-F selectively bound to the ligand binding domain of FXR (FXR-LBD) among nuclear receptors. The assay was then used for screening inhibitors against the FXR-CDCA interaction, thereby discovering four relatively potent inhibitors. The selected inhibitors were further studied for changes in intrinsic tryptophan fluorescence of FXR-LBD to gain structural insights into the interaction. Furthermore, transactivation effects of the inhibitors on the human bile salt excretory pump (BSEP) promoter were examined to reveal their cellular activities in the FXR-mediated pathway. Therefore, we demonstrated that the developed assay would offer an efficient primary screening tool for identifying FXR modulators.  相似文献   

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本研究旨在建立一种基于双荧光素酶报告基因检测体系的法尼醇X受体(farnesoid X receptor, FXR)激动剂细胞筛选体系,以满足对FXR激动剂先导化合物的高通量筛选。通过在报告基因质粒pGL4-luc2P-Hygro中的萤火虫荧光素酶(firefly luciferase,Luc)基因上游克隆并插入来自FXR靶基因的FXR反应元件(FXR response element,FXRE)片段,构建用于筛选FXR激动剂的报告基因质粒,并结合海肾荧光素酶内参质粒,建立能够有效反映药物对FXR激动效应的双荧光素酶报告基因细胞检测体系。通过一系列优化实验,比较了过表达RXR、鼠源和人源FXR、不同的FXRE片段、FXR过表达质粒与报告基因质粒的混合比对筛选体系诱导效率和灵敏度的影响。根据上述结果,最终确定了优化条件,优化后体系Z因子达到0.83。本研究建立了一种用于FXR激动剂筛选的改良的基于双荧光素酶报告基因检测体系的细胞筛选体系,其主要特征在于,使用多段FXR靶基因上的FXRE片段叠加组成一种新型的增强型FXRE元件,而非传统的反向重复序列-1 (inverted repeats...  相似文献   

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Cholesterol 7α-hydroxylase (CYP7A1) plays a key role in maintaining lipid and bile salt homeostasis as it is the rate-limiting enzyme converting cholesterol to bile acids. Deficiency of CYP7A1 leads to hyperlipidemia in man and mouse. Hyperlipidemia is often seen in patients when treated with high-dose retinoic acid (RA), but the molecular mechanisms remain elusive. Our present study revealed that CYP7A1 mRNA expression is greatly repressed by RA in both human hepatocytes and HepG2 cells where increased fibroblast growth factor 19 (FGF19) and small heterodimer partner (SHP) expressions were also observed, suggesting farnesoid X receptor (FXR) and retinoid X receptor (RXR) were activated. Promoter reporter assays demonstrate that all-trans RA (atRA) specifically activated FXR/RXR. However, detailed molecular analyses indicate that this activation is through RXR, whose ligand is 9-cis RA. Knocking down of FXR or RXRα by small interference RNA (siRNA) in human hepatocytes increased CYP7A1 basal expression, but the repressive effect of atRA persisted, suggesting there are also FXR/RXR-independent mechanisms mediating atRA repression of CYP7A1 expression. Chromatin immunoprecipitation (ChIP) assay and cell transfection results indicate that PGC-1α plays a role in the FXR/RXR-independent mechanism. Our findings may provide a potential explanation for hyperlipidemic side effects observed in some patients treated with high-dose RA.  相似文献   

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