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基于肽模拟物的恶性疟原虫抗原AMA1抑制剂的生物信息学鉴定

Bioinformatic Identification of Peptidomimetic-Based Inhibitors against Plasmodium falciparum Antigen AMA1.

作者信息

Alam Asrar

机构信息

Department of Biological Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Colaba, Mumbai 400005, India.

出版信息

Malar Res Treat. 2014;2014:642391. doi: 10.1155/2014/642391. Epub 2014 Dec 18.

Abstract

Plasmodium falciparum apical membrane antigen 1 (PfAMA1) is a valuable vaccine candidate and exported on the merozoite surface at the time of erythrocyte invasion. PfAMA1 interacts with rhoptry neck protein PfRON2, a component of the rhoptry protein complex, which forms the tight junction at the time of invasion. Phage display studies have identified a 15-residue (F1) and a 20-residue (R1) peptide that bind to PfAMA1 and block the invasion of erythrocytes. Cocrystal structures of central region of PfAMA1 containing disulfide-linked clusters (domains I and II) with R1 peptide and a peptide derived from PfRON2 showed strong structural similarity in binding. The peptides bound to a hydrophobic groove surrounded by domain I and II loops. In this study, peptidomimetics based on the crucial PfAMA1-binding residues of PfRON2 peptide have been identified. Top 5 peptidomimetics when checked for their docking on the region of PfAMA1 encompassing the hydrophobic groove were found to dock on the groove. Drug-like molecules having structural similarity to the top 5 peptidomimetics were identified based on their binding ability to PfAMA1 hydrophobic groove in blind docking. These inhibitors provide potential lead compounds, which could be used in the development of antimalarials targeting PfAMA1.

摘要

恶性疟原虫顶端膜抗原1(PfAMA1)是一种很有价值的疫苗候选物,在疟原虫侵入红细胞时会转运至裂殖子表面。PfAMA1与棒状体颈部蛋白PfRON2相互作用,PfRON2是棒状体蛋白复合物的一个组成部分,在侵入时形成紧密连接。噬菌体展示研究已鉴定出一种15个残基的肽(F1)和一种20个残基的肽(R1),它们可与PfAMA1结合并阻断红细胞的侵入。含二硫键连接簇(结构域I和II)的PfAMA1中央区域与R1肽以及源自PfRON2的一种肽的共晶体结构在结合方面显示出很强的结构相似性。这些肽与由结构域I和II环包围的一个疏水凹槽结合。在本研究中,已鉴定出基于PfRON2肽关键的PfAMA1结合残基的拟肽。对排名前5的拟肽在PfAMA1包含疏水凹槽的区域进行对接检查时,发现它们可对接至该凹槽。基于在盲对接中它们与PfAMA1疏水凹槽的结合能力,鉴定出了与排名前5的拟肽具有结构相似性且类似药物的分子。这些抑制剂提供了潜在的先导化合物,可用于开发靶向PfAMA1的抗疟药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ce9/4281401/4f68cb8cc3bf/MRT2014-642391.001.jpg

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