Prawesty Diah Utami, Herin Setianingsih, Dewi Ratih Tirto Sari
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引用次数: 0
摘要
本研究通过分子对接研究了H. atra三萜苷通过靶向恶性疟原虫体内的5-单磷酸脱羧酶蛋白(PfOMPDC)的潜在抗疟活性。利用Corina网络服务器对阿特拉提取物中的9种三萜苷进行结构建模,并利用Hex 8.0.0与PfOMPDC蛋白进行相互作用,利用Discovery Studio 21.1.1版对对接结果进行可视化分析。17-Hydroxyfuscocineroside B与PfOMPDC蛋白的结合能最低,为-1,098.13 kJ/mol。Holothurin A3、echinoside A 和 fuscocineroside C 的结合能较低。H. atra 的 9 种三萜苷与 PfOMPDC 蛋白在同一区域发生了相互作用。Holothurin A1 通过 8 个氢键、3 个疏水作用和 8 个不利键与 PfOMPDC 蛋白相互作用。在其他三萜苷类的相同活性位点检测到了几个残基。总之,H. atra 的三萜苷可能是疟疾治疗剂的候选药物。进一步的研究还需要进行体外和体内研究。
In Silico Approach Triterpene Glycoside of H. atra Targeting Orotidine 5-Monophosphate Decarboxylase Protein (PfOMPDC) in P. falciparum Infection Mechanism
This study accessed the potential antimalarial activity of triterpene glycoside of H. atra through targeting orotidine 5-monophosphate decarboxylase protein (PfOMPDC) in P. falciparum by molecular docking. Nine triterpene glycosides from H. atra extract modeled the structure by the Corina web server and interacted with PfOMPDC protein by using Hex 8.0.0. The docking results were visualized and analyzed by Discovery Studio version 21.1.1. 17-Hydroxyfuscocineroside B showed the lowest binding energy in PfOMPDC interaction, which was -1,098.13 kJ/mol. Holothurin A3, echinoside A, and fuscocineroside C showed low binding energy. Nine triterpene glycosides of H. atra performed interaction with PfOMPDC protein at the same region. Holothurin A1 posed interaction with PfOMPDC protein by 8 hydrogen bonds, 3 hydrophobic interactions, and 8 unfavorable bonds. Several residues were detected in the same active sites of other triterpene glycosides. Residue TYR111 was identified in all triterpene glycoside complexes, except holothurin A3 and calcigeroside B. In summary, the triterpene glycoside of H. atra is potentially a drug candidate for malaria therapeutic agents. In vitro and in vivo studies were required for further investigation.