嘧啶基碲化物作为恶性疟原虫潜在抑制剂的硅片研究

M. Kut, N. Korol, M. Onysko, V. Lendel
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引用次数: 0

摘要

疟疾疟原虫正日益对现有抗疟药物产生耐药性,对成功治疗构成严重威胁。以前的研究已经证明了含有外环芳基碲片段的化合物对恶性疟原虫的抑制活性。本研究的重点是评估融合吡啶芳基碲化物对镰状蛋白2 (falcipin -2, FP-2)的抑制潜力,镰状蛋白2是对抗疟疾的关键治疗靶点。其中,2-((4-甲氧基苯基)甲基)-2,3-二氢- 5h -噻唑[2,3-b]喹唑啉-5- 1与受体2GHU的蛋白质配体复合物最稳定。该配体的结合能为-6.18 kcal/mol,抑制浓度为29.74 μM。值得注意的是,该配体与受体的特定氨基酸相互作用,包括HIS27、ASP23、TYR199、LYS184和ALA21。此外,100 ns分子动力学研究证实了falcipin -2配合物与噻唑喹啉基三氯化碲的稳定性,进一步支持了化合物1的潜力。重要的是,与甲氟喹、伯氨喹和氯喹等抗疟药物相比,所测试的物质对恶性疟原虫的抑制能力更强,使其成为体外抗疟活性评价的候选药物。关键词:疟疾;恶性疟原虫;碲化;Falcipain-2;2 ghu。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IN SILICO STUDY OF PYRIMIDINARYLTELLURIDES AS POTENTIAL INHIBITORS OF PLASMODIUM FALCIPARUM
Malarial plasmodia are increasingly developing resistance to existing antimalarial drugs, posing a serious threat to successful treatment. Previous studies have demonstrated the inhibitory activity of compounds containing an exocyclic aryltellurium fragment against Plasmodium falciparum. This research focused on evaluating the inhibitory potential of fused pyrimidinaryl tellurides against falcipain-2 (FP-2), a crucial therapeutic target in the fight against malaria. Among the tested tellurides, 2-(((4-methoxyphenyl)thelanyl)methyl)-2,3-dihydro-5H-thiazolo[2,3-b]quinazolin-5-one demonstrated the most stable protein-ligand complex with the receptor 2GHU. The ligand exhibited a binding energy of -6.18 kcal/mol and an inhibition concentration of 29.74 μM. Notably, the ligand interacted with specific amino acids of the receptor, including HIS27, ASP23, TYR199, LYS184, and ALA21. Additionally, a 100 ns molecular dynamics study confirmed the stability of the falcipain-2 complex with this thiazoloquinazolinaryltellurtrichloride, further supporting the potential of compound 1. Importantly, the tested substance exhibited superior inhibitory capability against Plasmodium falciparum compared to antimalarial drugs such as mefloquine, primaquine, and chloroquine, making it a candidate for in vitro evaluation of antimalarial activity. Keywords: malaria; Plasmodium falciparum; telluride; Falcipain-2; 2GHU.
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