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一项利什曼病研究:基于结构的筛选及分子动力学机理分析以发现亚精胺合酶的有效抑制剂

A leishmaniasis study: structure-based screening and molecular dynamics mechanistic analysis for discovering potent inhibitors of spermidine synthase.

作者信息

Grover Abhinav, Katiyar Shashank Prakash, Singh Sanjeev Kumar, Dubey Vikash Kumar, Sundar Durai

机构信息

Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology (IIT) Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Biochim Biophys Acta. 2012 Dec;1824(12):1476-83. doi: 10.1016/j.bbapap.2012.05.016. Epub 2012 Jun 8.

DOI:10.1016/j.bbapap.2012.05.016
PMID:22684087
Abstract

Protozoa Leishmania donovani (Ld) is the main cause of the endemic disease leishmaniasis. Spermidine synthase (SS), an important enzyme in the synthetic pathway of polyamines in Ld, is an essential element for the survival of this protozoan. Targeting SS may provide an important aid for the development of drugs against Ld. However, absence of tertiary structure of spermidine synthase of Leishmania donovani (LSS) limits the possibilities of structure based drug designing. Presence of the same enzyme in the host itself further challenges the drug development process. We modeled the tertiary structure of LSS using homology modeling approach making use of homologous X-ray crystallographic structure of spermidine synthase of Trypanosoma cruzi (TSS) (2.5Å resolution). The modeled structure was stabilized using Molecular Dynamics simulations. Based on active site structural differences between LSS and human spermidine synthase (HSS), we screened a large dataset of compounds against modeled protein using Glide virtual screen docking and selected two best inhibitors based on their docking scores (-10.04 and -13.11 respectively) with LSS and having least/no binding with the human enzyme. Finally Molecular Dynamics simulations were used to assess the dynamic stability of the ligand bound structures and to elaborate on the binding modes. This article is part of a Special Issue entitled: Computational Methods for Protein Interaction and Structural Prediction.

摘要

原生动物杜氏利什曼原虫(Ld)是地方性疾病利什曼病的主要病因。亚精胺合酶(SS)是Ld多胺合成途径中的一种重要酶,是这种原生动物生存的必需元素。靶向SS可能为开发抗Ld药物提供重要帮助。然而,杜氏利什曼原虫亚精胺合酶(LSS)三级结构的缺失限制了基于结构的药物设计的可能性。宿主自身存在相同的酶进一步挑战了药物开发过程。我们利用克氏锥虫亚精胺合酶(TSS)的同源X射线晶体结构(分辨率为2.5Å),采用同源建模方法对LSS的三级结构进行了建模。通过分子动力学模拟使建模结构稳定。基于LSS和人亚精胺合酶(HSS)之间活性位点的结构差异,我们使用Glide虚拟筛选对接针对建模蛋白筛选了一个大型化合物数据集,并根据它们与LSS的对接分数(分别为-10.04和-13.11)以及与人类酶的结合最少/无结合,选择了两种最佳抑制剂。最后,利用分子动力学模拟评估配体结合结构的动态稳定性并阐述结合模式。本文是名为“蛋白质相互作用和结构预测的计算方法”的特刊的一部分。

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