首页> 外文期刊>Clinical Phytoscience >Triterpene saponins from Barringtonia acutangula (L.) Gaertn as a potent inhibitor of 11β-HSD1 for type 2 diabetes mellitus, obesity, and metabolic syndrome
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Triterpene saponins from Barringtonia acutangula (L.) Gaertn as a potent inhibitor of 11β-HSD1 for type 2 diabetes mellitus, obesity, and metabolic syndrome

机译:来自Barringtonia Acutangula(L.)Gaertn作为11β-HSD1的有效抑制剂,适用于2型糖尿病,肥胖症和代谢综合征

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Background: Barringtonia acutangula (L.) Gaertn, Garcinia indica (Thouars) Choisy, and Feronia limonia (L.) Swingle is widely utilized in traditional folk medicine against diabetes, obesity, and metabolic syndrome but lacks the evidence of compound-protein interaction for the treatment. Methods: Phytocompounds were retrieved from herbs databases and public repositories. Probable protein targets were predicted using BindingDB (p ≥ 0.7). The pathways modulated by compounds were analyzed using the STRI NG and KEGG pathways. The compound-protein-pathway network was constructed using Cytoscape v3.6.1. Druglikeness was predicted by Molsoft. Docking was performed by AutoDock vina by PyRx 0.8v. Results: Among three plants, eleven triterpene saponins from B. acutangula showed druggable characteristics and identified to inhibit the 11β-hydroxysteroid dehydrogenase type 1 (11β-HSD1/HSD11B1) as a key protein target and also inhibit/modulate other 27 protein molecules involved in the 3 major pathways i.e. Metabolic syndrome, cGMPPKG signaling, and insulin resistance pathways and also these compounds showed interactions with the active site amino acid residues of 11β-HSD1. Among eleven compounds Barringtogenol B scored the highest binding affinity by forming a hydrogen bond with Ile218 active site residue of 11β-HSD1. Conclusion: Triterpene saponins contained in B. acutangula bark and seed inhibits 11Β-HSD1 and this multicompound contained enriched fraction could be the potent treatment regimen for T2DM, obesity, and MetS.
机译:背景:Barringtonia Acutangula(L.)Gaertn,Garcinia indica(Thouars)Choisy和Feronia Limonia(L.)摆动广泛用于传统的民间医学对抗糖尿病,肥胖症和代谢综合征,但缺乏复合蛋白质相互作用的证据治疗。方法:从草药数据库和公共存储库中检索植入植物化合物。使用结合剂预测可能的蛋白质靶标(p≥0.7)。使用斯特丽NG和KEGG途径分析由化合物调节的途径。使用Cytoscape V3.6.1构建复合蛋白途径网络。莫斯科oft预测了药物性能。通过Pyrx 0.8V通过Autodock Vina进行对接。结果:三种植物中,来自B. acutangula的11种三萜皂苷显示出可用的特性,并鉴定为抑制11β-羟类脱氢酶1(11β-HSD1 / HSD11b1)作为关键蛋白靶标,并且还抑制/调节其他27个蛋白质分子3主要途径即代谢综合征,CGMPPKG信号和胰岛素抵抗途径以及这些化合物的相互作用与11β-HSD1的活性位点氨基酸残基相互作用。在11β-HSD1的ILE218活性位点残余物中形成氢键,11型化合物B间接素BARRINGTOGOOL B通过形成氢键来缩小最高的结合亲和力。结论:B.Acutangula树皮和种子中含有的三萜皂苷11β-HSD1,含有富含富集的级数的多组分可能是T2DM,肥胖和MET的有效治疗方案。

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