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基于分子建模的抗疟内过氧化物类药物靶点识别

Molecular modelling based target identification for endo-peroxides class of antimalarials.

作者信息

Gupta Amit K, Saxena Anil K

机构信息

Academy of Sciences and Innovative Research, India.

出版信息

Comb Chem High Throughput Screen. 2015;18(2):199-207. doi: 10.2174/1386207318666141229124112.

Abstract

The emerging cases of artemisinin and endoperoxide drug resistance are becoming a challenge to antimalarial drug discovery and therapy. The exact mode of action of this class of antimalarials is still unknown which presents a bottleneck for the understanding of drug resistance as well as designing new lead molecules of this class. To address this issue, the molecular docking and scoring studies of a homogeneous and structurally diverse dataset of artemisinin derived trioxanes have been performed on each of the two plausible targets of this class viz. heme and PfATP6. Since the crystal structure of PfATP6 is unknown, its homology model was built utilizing the human SERCA1 protein crystallized structure as a template. The binding energies of the heme binding site of the docked artemisinin derivatives showed very good correlation with the antimalarial activity (r(2) = 0.69), whereas the same study with the binding site of pfATP6 showed a very poor correlation (r(2) = 0.12), suggesting heme to be the possible target of artemisinin derived endoperoxides.

摘要

青蒿素和内过氧化物耐药性的新出现病例正对抗疟药物研发和治疗构成挑战。这类抗疟药物的确切作用模式仍不清楚,这为理解耐药性以及设计这类药物的新先导分子带来了瓶颈。为解决这一问题,针对青蒿素衍生的三氧杂环已烷的一个同质且结构多样的数据集,在这类药物的两个可能靶点(即血红素和PfATP6)上分别进行了分子对接和评分研究。由于PfATP6的晶体结构未知,利用人SERCA1蛋白的晶体结构作为模板构建了其同源模型。对接的青蒿素衍生物与血红素结合位点的结合能与抗疟活性显示出很好的相关性(r(2) = 0.69),而对PfATP6结合位点的相同研究显示相关性很差(r(2) = 0.12),这表明血红素可能是青蒿素衍生的内过氧化物的靶点。

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