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以铁原卟啉-IX作为假定受体,对青蒿素-奎宁杂化物及其类似物的结合模式和亲和力进行分子建模与评估。

Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor.

作者信息

Mahapatra Rajani Kanta, Behera Niranjan, Naik Pradeep Kumar

机构信息

School of Life Sciences, Sambalpur University, Burla, Odisha-768019, India; School of Biotechnology, KIIT University, Bhubaneswar, Odisha-751024, India.

出版信息

Bioinformation. 2012;8(8):369-80. doi: 10.6026/97320630008369. Epub 2012 Apr 30.

Abstract

A recent rational approach to anti-malarial drug design is characterized as "covalent biotherapy" involves linking of two molecules with individual intrinsic activity into a single agent, thus packaging dual activity into a single hybrid molecule. In view of this background and reported anti malaria synergism between artemisinin and quinine; we describe the computer-assisted docking to predict molecular interaction and binding affinity of Artemisinin-Quinine hybrid and its derivatives with the intraparasitic haeme group of human haemoglobin. Starting from a crystallographic structure of Fe-protoporphyrin-IX, binding modes, orientation of peroxide bridge (Fe-O distance), docking score and interaction energy are predicted using the docking molecular mechanics based on generalized Born/surface area (MM-GBSA) solvation model. Seven new ligands were identified with a favourable glide score (XP score) and binding free energy (ΔG) with reference to the experimental structure from a data set of thirty four hybrid derivatives. The result shows the conformational property of the drug-receptor interaction and may lead to rational design and synthesis of improved potent artemisinin based hybrid antimalarial that target haemozoin formation.

摘要

一种最新的抗疟疾药物设计合理方法被称为“共价生物疗法”,它涉及将两个具有各自内在活性的分子连接成一个单一药剂,从而将双重活性整合到一个单一的杂合分子中。鉴于此背景以及青蒿素和奎宁之间已报道的抗疟疾协同作用;我们描述了计算机辅助对接,以预测青蒿素 - 奎宁杂合物及其衍生物与人血红蛋白的寄生虫内血红素基团的分子相互作用和结合亲和力。从铁原卟啉 - IX的晶体结构出发,使用基于广义玻恩/表面积(MM - GBSA)溶剂化模型的对接分子力学来预测结合模式、过氧化物桥的取向(铁 - 氧距离)、对接分数和相互作用能。从三十四种杂合衍生物的数据集中,参照实验结构,鉴定出七种具有良好滑行分数(XP分数)和结合自由能(ΔG)的新配体。结果显示了药物 - 受体相互作用的构象性质,并可能导致针对疟原虫色素形成的基于青蒿素的改良高效杂合抗疟药的合理设计与合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da6e/3346024/539b578a7cfd/97320630008369F1.jpg

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