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首页> 外文期刊>Bioorganic and medicinal chemistry >Pharmacophore-based discovery of FXR-agonists. Part II: identification of bioactive triterpenes from Ganoderma lucidum.
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Pharmacophore-based discovery of FXR-agonists. Part II: identification of bioactive triterpenes from Ganoderma lucidum.

机译:基于药理学的FXR激动剂发现。第二部分:灵芝中生物活性三萜的鉴定。

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摘要

The farnesoid X receptor (FXR) belonging to the metabolic subfamily of nuclear receptors is a ligand-induced transcriptional activator. Its central function is the physiological maintenance of bile acid homeostasis including the regulation of glucose and lipid metabolism. Accessible structural information about its ligand-binding domain renders FXR an attractive target for in silico approaches. Integrated to natural product research these computational tools assist to find novel bioactive compounds showing beneficial effects in prevention and treatment of, for example, the metabolic syndrome, dyslipidemia, atherosclerosis, and type 2 diabetes. Virtual screening experiments of our in-house Chinese Herbal Medicine database with structure-based pharmacophore models, previously generated and validated, revealed mainly lanostane-type triterpenes of the TCM fungus Ganoderma lucidum Karst. as putative FXR ligands. To verify the prediction of the in silico approach, two Ganoderma fruit body extracts and compounds isolated thereof were pharmacologically investigated. Pronounced FXR-inducing effects were observed for the extracts at a concentration of 100 mug/mL. Intriguingly, five lanostanes out of 25 secondary metabolites from G. lucidum, that is, ergosterol peroxide (2), lucidumol A (11), ganoderic acid TR (12), ganodermanontriol (13), and ganoderiol F (14), dose-dependently induced FXR in the low micromolar range in a reporter gene assay. To rationalize the binding interactions, additional pharmacophore profiling and molecular docking studies were performed, which allowed establishing a first structure-activity relationship of the investigated triterpenes.
机译:属于核受体代谢亚家族的法尼醇X受体(FXR)是配体诱导的转录激活因子。它的中心功能是胆汁酸稳态的生理维持,包括调节葡萄糖和脂质代谢。有关其配体结合域的可访问结构信息使FXR成为计算机方法的有吸引力的目标。将这些计算工具集成到天然产物研究中,有助于发现新型生物活性化合物,这些化合物在预防和治疗例如代谢综合征,血脂异常,动脉粥样硬化和2型糖尿病方面显示出有益的作用。我们内部的中草药数据库的虚拟筛选实验,使用先前生成和验证的基于结构的药效团模型,主要揭示了中药灵芝灵芝喀斯特的羊毛甾烷型三萜。作为推定的FXR配体。为了验证计算机方法的预测,对两种灵芝子实体提取物及其分离出的化合物进行了药理学研究。对于浓度为100杯/毫升的提取物,观察到明显的FXR诱导作用。有趣的是,来自灵芝的25种次级代谢产物中有5种羊毛甾烷素,即剂量的过氧化麦角固醇(2),卢西度莫A(11),灵芝酸TR(12),灵芝三醇(13)和灵芝F(14)。在报告基因测定中在低微摩尔范围内依赖性诱导的FXR。为了使结合相互作用合理化,还​​进行了其他药效基分析和分子对接研究,从而建立了所研究三萜的第一构效关系。

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