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通过基于配体和受体的筛选、SIFT、分子动力学和 DFT 的结构计算方法,在原子水平和结构上了解天然配体抑制肽脱甲酰酶的作用。

Atomic level and structural understanding of natural ligands inhibiting peptide deformylase through ligand and receptor based screening, SIFT, molecular dynamics and DFT - a structural computational approach.

机构信息

Department of Biotechnology, Manonmaniam Sundaranar University, Tirunelveli, India.

School of Medicine, Jiangsu University, Zhenjiang, Jiangsu, China.

出版信息

J Biomol Struct Dyn. 2023 May;41(8):3440-3461. doi: 10.1080/07391102.2022.2050946. Epub 2022 Mar 16.

DOI:10.1080/07391102.2022.2050946
PMID:35293845
Abstract

is a Gram-negative microaerophilic gastric pathogen, responsible for the cause of peptic ulcer around half of the global population. Although several antibiotics and combination therapies have been employed for -related gastric ulcer and cancer regiments, identifying potent inhibitors for specific targets of this bacterium will help assessing better treatment periodicity and methods to eradicate . Herein, 1,000,000 natural compounds were virtually screened against Peptide deformylase (HpPDF). Pharmacophore hypotheses were created using ligand and receptor-based pharmacophore modeling of GLIDE. Stringent HTVS and IFD docking protocol of GLIDE predicted leads with stable intermolecular bonds and scores. Molecular dynamics simulation of HpPDF was carried out for 100 ns using GROMACS. Hits ZINC00225109 and ZINC44896875 came up with a glide score of -9.967 kcal/mol and -12.114 kcal/mol whereas; reference compound actinonin produced a glide score of -9.730 kcal/mol. Binding energy values of these hits revealed the involvement of significant Van der Waals and Coulomb forces and the deduction of lipophilic forces that portray the deep hydrophobic residues in the S1pocket of . The DFT analysis established the electron density-based features of the molecules and observed that the results correlate with intermolecular docking interactions. Analysis of the MD trajectories revealed the crucial residues involved in HpPDF - ligand binding and the conformational changes in the receptor. We have identified and deciphered the crucial features necessary for the potent ligand binding at catalytic site of HpPDF. The resulting ZINC natural compound hits from the study could be further employed for potent drug development.Communicated by Ramaswamy H. Sarma.

摘要

幽门螺杆菌是一种革兰氏阴性微需氧胃病原体,负责造成全球约一半人口的消化性溃疡。尽管已经使用了几种抗生素和联合疗法来治疗与相关的胃溃疡和癌症,但鉴定该细菌特定靶点的有效抑制剂将有助于评估更好的治疗周期性和根除的方法。在此,通过虚拟筛选了 100 万种天然化合物,以对抗肽脱甲酰基酶(HpPDF)。使用 GLIDE 的配体和受体基于药理学的方法创建了药效团假说。GLIDE 的严格 HTVS 和 IFD 对接方案预测了具有稳定分子间键和得分的先导化合物。使用 GROMACS 对 HpPDF 进行了 100ns 的分子动力学模拟。命中化合物 ZINC00225109 和 ZINC44896875 的 glide 得分分别为-9.967 kcal/mol 和-12.114 kcal/mol,而参考化合物放线菌素的 glide 得分则为-9.730 kcal/mol。这些命中化合物的结合能值揭示了涉及显著范德华力和库仑力的作用,以及疏水力的推断,这描绘了在 HpPDF 的 S1 口袋中的深疏水性残基。DFT 分析建立了基于电子密度的分子特征,并观察到结果与分子对接相互作用相关。对 MD 轨迹的分析揭示了涉及 HpPDF-配体结合和受体构象变化的关键残基。我们已经确定并破译了在 HpPDF 催化位点上进行有效配体结合所需的关键特征。研究中产生的 ZINC 天然化合物命中可能进一步用于有效的药物开发。由 Ramaswamy H. Sarma 传达。

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