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链球菌 FabG 脂肪酸途径相关酶的分子建模与模拟

Molecular modeling and simulation of FabG, an enzyme involved in the fatty acid pathway of Streptococcus pyogenes.

机构信息

Department of Biotechnology, Alagappa University, Karaikudi, Tamil Nadu, India.

出版信息

J Mol Graph Model. 2013 Sep;45:1-12. doi: 10.1016/j.jmgm.2013.07.009. Epub 2013 Aug 13.

DOI:10.1016/j.jmgm.2013.07.009
PMID:23988477
Abstract

Streptococcus pyogenes (SP) is the major cause of pharyngitis accompanied by strep throat infections in humans. 3-keto acyl reductase (FabG), an important enzyme involved in the elongation cycle of the fatty acid pathway of S. pyogenes, is essential for synthesis of the cell-membrane, virulence factors and quorum sensing-related mechanisms. Targeting SPFabG may provide an important aid for the development of drugs against S. pyogenes. However, the absence of a crystal structure for FabG of S. pyogenes limits the development of structure-based drug designs. Hence, in the present study, a homology model of FabG was generated using the X-ray crystallographic structure of Aquifex aeolicus (PDB ID: 2PNF). The modeled structure was refined using energy minimization. Furthermore, active sites were predicted, and a large dataset of compounds was screened against SPFabG. The ligands were docked using the LigandFit module that is available from Discovery Studio version 2.5. From this list, 13 best hit ligands were chosen based on the docking score and binding energy. All of the 13 ligands were screened for Absorption, Distribution, Metabolism, Excretion and Toxicity (ADMET) properties. From this, the two best descriptors, along with one descriptor that lay outside the ADMET plot, were selected for molecular dynamic (MD) simulation. In vitro testing of the ligands using biological assays further substantiated the efficacy of the ligands that were screened based on the in silico methods.

摘要

化脓性链球菌(SP)是人类咽峡炎伴链球菌感染的主要病原体。3-酮酰基还原酶(FabG)是化脓性链球菌脂肪酸途径延伸循环中的一种重要酶,对于细胞膜、毒力因子和群体感应相关机制的合成至关重要。靶向 SPFabG 可能为开发针对化脓性链球菌的药物提供重要帮助。然而,由于缺乏化脓性链球菌 FabG 的晶体结构,限制了基于结构的药物设计的发展。因此,在本研究中,使用 Aquifex aeolicus(PDB ID:2PNF)的 X 射线晶体结构生成了 FabG 的同源模型。使用能量最小化对模型结构进行了优化。此外,预测了活性部位,并使用 Discovery Studio 版本 2.5 中的 LigandFit 模块筛选了针对 SPFabG 的大量化合物数据集。使用 LigandFit 模块对接配体,该模块可从 Discovery Studio 版本 2.5 中获得。根据对接得分和结合能,从该列表中选择了 13 个最佳命中配体。对所有 13 种配体进行了吸收、分布、代谢、排泄和毒性 (ADMET) 性质的筛选。在此基础上,选择了两个最佳描述符和一个不在 ADMET 图内的描述符进行分子动力学 (MD) 模拟。使用生物测定法对配体进行体外测试,进一步证实了根据计算机方法筛选出的配体的功效。

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