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首页> 外文期刊>Medicinal chemistry research: an international journal for rapid communications on design and mechanisms of action of biologically active agents >Optimization of phage heptapeptide library-screening process for developing inhibitors of the isocitrate lyase homologue from Mycobacterium tuberculosis
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Optimization of phage heptapeptide library-screening process for developing inhibitors of the isocitrate lyase homologue from Mycobacterium tuberculosis

机译:用于开发结核分枝杆菌异柠檬酸裂合酶同源物抑制剂的噬菌体七肽文库筛选工艺的优化

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The aims of this study were to screen peptide inhibitors specific for isocitrate lyase (ICL) using a phage peptide library and computer molecular docking and to explore the relevant mechanisms. Using ICL as a target, the phage peptide library was screened to obtain peptides with specific binding affinity. Based on the three-dimensional crystal structure of ICL(pdb:lF8I), the obtained polypep-tides were docked to the 1F8I using the computer-simulated molecular docking technique. The successfully docked polypeptides were synthesized using the Fmoc solid-phase synthesis method, and the ICL inhibition rate of these peptides was measured. Finally, the possible mechanism underlying the inhibition was explored by Binding Site Analysis. A total of 29 heptapeptides were obtained through screening the phage peptide library. We found that 12 out of the 29 peptides were successfully docked to the 1F8I, and all 12 peptides could obviously inhibit the ICL activity, of which three heptapeptides showed an inhibiting (extent of inhibition over 50 %), IC50 value of 126 uM. Structural analysis revealed that the ICL tetramer has a large cavity in the center, and the polypeptides bind to ICL at amino acid residue 119's GLN of the ICL monomer. We successfully obtained peptide inhibitors specific for ICL, and analyzed the mechanism underlying the interaction between the peptides and ICL. Our study provides scientific evidence for the development of antituberculosis peptide drags targeting ICL.
机译:这项研究的目的是使用噬菌体肽库和计算机分子对接筛选特异于柠檬酸裂合酶(ICL)的肽抑制剂,并探索相关的机制。使用ICL作为靶标,筛选噬菌体肽文库以获得具有特异性结合亲和力的肽。基于ICL(pdb:1F8I)的三维晶体结构,使用计算机模拟的分子对接技术将获得的多肽对接至1F8I。使用Fmoc固相合成方法合成成功对接的多肽,并测量这些肽的ICL抑制率。最后,通过结合位点分析探索了抑制作用的潜在机制。通过筛选噬菌体肽文库获得总共29个七肽。我们发现29种肽中的12种已成功对接至1F8I,并且所有12种肽均可以明显抑制ICL活性,其中3种七肽显示出抑制作用(抑制程度超过50%),IC50值为126 uM。结构分析表明,ICL四聚体在中心具有大的空腔,并且多肽在ICL单体的氨基酸残基119的GLN处与ICL结合。我们成功获得了对ICL特异的肽抑制剂,并分析了肽与ICL之间相互作用的潜在机制。我们的研究为靶向ICL的抗结核肽药的研发提供了科学依据。

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