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铁依赖型调控因子(ideR)的分子信息学研究揭示了潜在的新型天然产物衍生化合物。

Molecular Informatics Studies of the Iron-Dependent Regulator (ideR) Reveal Potential Novel Anti- Natural Product-Derived Compounds.

机构信息

Department of Biomedical Engineering, School of Engineering Sciences, College of Basic and Applied Sciences, University of Ghana, Legon P.O. Box LG 54, Accra, Ghana.

West African Centre for Cell Biology of Infectious Pathogens, Department of Biochemistry, Cell and Molecular Biology, University of Ghana, Legon P.O. Box LG 54, Accra, Ghana.

出版信息

Molecules. 2019 Jun 21;24(12):2299. doi: 10.3390/molecules24122299.

Abstract

Buruli ulcer is a neglected tropical disease caused by the bacterium Its virulence is attributed to the dermo-necrotic polyketide toxin mycolactone, whose synthesis is regressed when its iron acquisition system regulated by the iron-dependent regulator (ideR) is deactivated. Interfering with the activation mechanism of ideR to inhibit the toxin's synthesis could serve as a possible cure for Buruli ulcer. The three-dimensional structure of the ideR for was generated using homology modeling. A library of 832 African natural products (AfroDB), as well as five known anti-mycobacterial compounds were docked against the metal binding site of the ideR. The area under the curve (AUC) values greater than 0.7 were obtained for the computed Receiver Operating Characteristics (ROC) curves, validating the docking protocol. The identified top hits were pharmacologically profiled using Absorption, Distribution, Metabolism, Elimination and Toxicity (ADMET) predictions and their binding mechanisms were characterized. Four compounds with ZINC IDs ZINC000018185774, ZINC000095485921, ZINC000014417338 and ZINC000005357841 emerged as leads with binding energies of -7.7 kcal/mol, -7.6 kcal/mol, -8.0 kcal/mol and -7.4 kcal/mol, respectively. Induced Fit Docking (IFD) was also performed to account for the protein's flexibility upon ligand binding and to estimate the best plausible conformation of the complexes. Results obtained from the IFD were consistent with that of the molecular docking with the lead compounds forming interactions with known essential residues and some novel critical residues Thr14, Arg33 and Asp17. A hundred nanoseconds molecular dynamic simulations of the unbound ideR and its complexes with the respective lead compounds revealed changes in the ideR's conformations induced by ZINC000018185774. Comparison of the lead compounds to reported potent inhibitors by docking them against the DNA-binding domain of the protein also showed the lead compounds to have very close binding affinities to those of the potent inhibitors. Interestingly, structurally similar compounds to ZINC000018185774 and ZINC000014417338, as well as analogues of ZINC000095485921, including quercetin are reported to possess anti-mycobacterial activity. Also, ZINC000005357841 was predicted to possess anti-inflammatory and anti-oxidative activities, which are relevant in Buruli ulcer and iron acquisition mechanisms, respectively. The leads are molecular templates which may serve as essential scaffolds for the design of future anti- agents.

摘要

布鲁里溃疡是一种被忽视的热带病,由细菌引起。其毒力归因于真皮坏死聚酮毒素(mycolactone),当其铁摄取系统受铁依赖调节因子(ideR)调节失活时,毒素的合成就会退化。干扰 ideR 的激活机制以抑制毒素的合成可能是治疗布鲁里溃疡的一种可能方法。使用同源建模生成了 的 ideR 三维结构。针对 ideR 的金属结合位点对接了 832 种非洲天然产物(AfroDB)库和 5 种已知的抗分枝杆菌化合物。计算得到的接收者操作特征(ROC)曲线的曲线下面积(AUC)值大于 0.7,验证了对接方案的有效性。根据吸收、分布、代谢、消除和毒性(ADMET)预测对鉴定出的顶级命中物进行了药理学分析,并对其结合机制进行了表征。具有 ZINC ID ZINC000018185774、ZINC000095485921、ZINC000014417338 和 ZINC000005357841 的四种化合物脱颖而出,其结合能分别为-7.7 kcal/mol、-7.6 kcal/mol、-8.0 kcal/mol 和-7.4 kcal/mol。还进行了诱导契合对接(IFD),以解释配体结合时蛋白质的灵活性,并估计复合物的最佳可能构象。IFD 的结果与分子对接的结果一致,先导化合物与已知的必需残基和一些新的关键残基 Thr14、Arg33 和 Asp17 形成相互作用。对未结合的 ideR 及其与各自先导化合物的复合物进行 100 纳秒的分子动力学模拟表明,ZINC000018185774 诱导了 ideR 构象的变化。将这些先导化合物与蛋白质的 DNA 结合域对接,比较它们与报道的有效抑制剂的结合亲和力,也表明这些先导化合物与有效抑制剂的结合亲和力非常接近。有趣的是,与 ZINC000018185774 和 ZINC000014417338 结构相似的化合物,以及 ZINC000095485921 的类似物,包括槲皮素,据报道具有抗分枝杆菌活性。此外,预测 ZINC000005357841 具有抗炎和抗氧化活性,这分别与布鲁里溃疡和铁摄取机制相关。这些先导化合物是分子模板,可作为设计未来抗剂的重要支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0949/6631925/4cd9b29cab4a/molecules-24-02299-g001.jpg

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