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Shape- and chemical feature-based 3D-pharmacophore model generation and virtual screening: Identification of potential leads for P. falciparum DHFR enzyme inhibition

机译:基于形状和化学特征的3D药效团模型生成和虚拟筛选:鉴定恶性疟原虫DHFR酶抑制作用的潜在先导

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Plasmodium falciparum dihydrofolate reductase (PfDHFR) enzyme is one of the validated targets in the treatment of malaria using typical antifolates such as cycloguanil and pyrimethamine. However, point mutations at amino acid residues such as Ala16, Ile51, Cys59, Ser108 and Ile164 in the active site of the wild-type enzyme resulted in a widespread resistance of the parasite to these drugs. Thus, design and discovery of new potential Pf-DHFR inhibitors, equally active against both the wild-type and mutant strains, is an urgent need. Catalyst software was used to generate a 3D pharmacophore query based on the bioactive conformation of WR99210 extracted from the X-ray crystal structure of quadruple mutant PfDHFR enzyme. Validation criteria based on the experimentally determined conformation of WR99210 and its key interactions with the protein were considered to identify hits from two chemical databases, namely, NCI2000 and Maybridge2004 using different virtual filters. Virtual screening based on FlexX, GOLD and Glide docking programs resulted in a total of 73 hits. The hits reported in this article showed good potential to be inhibitors of the above Pf-DHFRs based on their (i) best-fit values (ii) binding scores (iii) binding modes and (iv) interactions with the key amino acid residues (Asp54, Ileu/Leu164, Asn/Ser108 and Ile14).
机译:恶性疟原虫二氢叶酸还原酶(PfDHFR)酶是使用典型的抗叶酸药物如环鸟嘌呤和乙胺嘧啶治疗疟疾的有效靶标之一。但是,野生型酶活性位点的氨基酸残基(例如Ala16,Ile51,Cys59,Ser108和Ile164)的点突变导致该寄生虫对这些药物的广泛耐药。因此,迫切需要设计和发现对野生型和突变菌株均具有同等活性的新型潜在Pf-DHFR抑制剂。基于从四重突变体PfDHFR酶的X射线晶体结构提取的WR99210的生物活性构象,使用Catalyst软件生成3D药效团查询。考虑到基于实验确定的WR99210构象及其与蛋白质的关键相互作用的验证标准,可使用不同的虚拟过滤器从两个化学数据库(即NCI2000和Maybridge2004)中确定命中。基于FlexX,GOLD和Glide对接程序的虚拟筛选产生了73次匹配。基于它们的(i)最佳拟合值(ii)结合分数(iii)结合模式和(iv)与关键氨基酸残基的相互作用( Asp54,Ileu / Leu164,Asn / Ser108和Ile14)。

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