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首页> 外文期刊>In silico biology: An international on computational biology >Theoretical Study of Escherichia Coli Peptide Deformylase Inhibition by Several Drugs
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Theoretical Study of Escherichia Coli Peptide Deformylase Inhibition by Several Drugs

机译:几种药物抑制大肠杆菌肽脱甲酰酶的理论研究

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Because peptide deformylase (PDF) is essential for the initiation of translation in eubacteria but not in eukaryotes, it is a potentially interesting target for antibiotics. Computer simulation using docking software can be used to model protein-ligand interactions, and in this brief report we describe its use in optimizing the design in PDF-directed inhibitors. PDF was used as target for a set of five inhibitors with substantial structural differences. Docking results show that the compound 1BB2 (actinonin) binds with high affinity to the enzyme and produces the most stable complex, forming nine hydrogen bonds with the enzyme active site. Its binding energy is ΔG=-31.880 kJ/mol. The modeling study shows that when the methyl group of 1BB2 is replaced with an amine group, the binding energy is increased to -35.316 kJ/mole. This enhancement is more marked (ΔG=-41.141 kJ/mol) when the propyl group and the five-membered ring of 1BB2 are replaced by an amide group and a phenyl ring, respectively. We describe an attempt to design better antibiotics on the basis of a computer-aided simulation of the interaction between a drug and its target molecule.
机译:由于肽去甲酰基化酶(PDF)对于真细菌中的翻译启动是必不可少的,而在真核生物中不是必需的,因此它是抗生素的潜在目标。使用对接软件的计算机模拟可用于对蛋白质-配体相互作用进行建模,在此简短的报告中,我们描述了其在优化PDF导向抑制剂设计中的用途。 PDF用作一组具有实质性结构差异的五种抑制剂的目标。对接结果表明,化合物1BB2(肌动蛋白)与酶具有很高的亲和力,并产生最稳定的复合物,与酶的活性位点形成9个氢键。其结合能为ΔG= -31.880kJ / mol。模型研究表明,当1BB2的甲基被胺基取代时,结合能增加至-35.316 kJ / mol。当1BB2的丙基和五元环分别被酰胺基和苯环取代时,这种增强作用更为明显(ΔG= -41.141 kJ / mol)。我们描述了在药物及其靶分子之间相互作用的计算机辅助模拟的基础上设计更好的抗生素的尝试。

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