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靶向多药耐药鲍曼不动杆菌:基于结构的方法识别谷氨酸消旋酶有前景的先导候选物。

Targeting multi-drug-resistant Acinetobacter baumannii: a structure-based approach to identify the promising lead candidates against glutamate racemase.

机构信息

Department of Biotechnology, Sharda School of Engineering and Technology, Sharda University, P.C. 201310, Greater Noida, U.P., India.

Department of Computer Science and Engineering, Sharda School of Engineering and Technology, Sharda University, P.C. 201310, Greater Noida, U.P., India.

出版信息

J Mol Model. 2023 May 25;29(6):188. doi: 10.1007/s00894-023-05587-4.

Abstract

CONTEXT

Acinetobacter baumannii, one of the critical ESKAPE pathogens, is a highly resilient, multi-drug-resistant, Gramnegative, rod-shaped, highly pathogenic bacteria. It is responsible for almost 1-2% of all hospital-borne infections in immunocompromised patients and causes community outbreaks. Because of its resilience and MDR characteristics, looking for new strategies to check the infections related to this pathogen becomes paramount. The enzymes involved in the peptidoglycan biosynthetic pathway are attractive and the most promising drug targets. They contribute to the formation of the bacterial envelope and help to maintain the rigidity and integrity of the cell. The MurI (glutamate racemase) is one of the crucial enzymes that aid in the formation of the pentapeptide responsible for the interlinkage of peptidoglycan chains. It converts L-glutamate to D-glutamate, which is required to synthesise the pentapeptide chain.

METHODS

In this study, the MurI protein of A. baumannii (strain AYE) was modelled and subjected to high-throughput virtual screening against the enamine-HTSC library, taking UDP-MurNAc-Ala binding site as the targeted site. Four ligand molecules, Z1156941329 (N-(1-methyl-2-oxo-3,4-dihydroquinolin-6-yl)-1-phenyl-3,4-dihydro-1H-isoquinoline-2-carboxamide), Z1726360919 (1-[2-[3-(benzimidazol-1-ylmethyl)piperidin-1-yl]-2-oxo-1-phenylethyl]piperidin-2-one), Z1920314754 (N-[[3-(3-methylphenyl)phenyl]methyl]-8-oxo-2,7-diazaspiro[4.4]nonane-2-carboxamide) and Z3240755352 (4R)-4-(2,5-difluorophenyl)-1-(4-fluorophenyl)-1,3a,4,5,7,7a-hexahydro-6H-pyrazolo[3,4-b]pyridin-6-one), were identified to be the lead candidates based on Lipinski's rule of five, toxicity, ADME properties, estimated binding affinity and intermolecular interactions. The complexes of these ligands with the protein molecule were then subjected to MD simulations to scrutinise their dynamic behaviour, structural stability and effects on protein dynamics. The molecular mechanics/Poisson-Boltzmann surface area-based binding free energy analysis was also performed to compute the binding free energy of protein-ligand complexes, which offered the following values -23.32 ± 3.04 kcal/mol, -20.67 ± 2.91kcal/mol, -8.93 ± 2.90 kcal/mol and -26.73 ± 2.95 kcal/mol for MurI-Z1726360919, MurI-Z1156941329, MurI-Z3240755352 and MurI-Z3240755354 complexes respectively. Together, the results from various computational analyses utilised in this study proposed that Z1726360919, Z1920314754 and Z3240755352 could act as potential lead molecules to suppress the function of MurI protein from Acinetobacter baumannii.

摘要

背景

鲍曼不动杆菌是 ESKAPE 关键病原体之一,是一种具有高度弹性、多药耐药、革兰氏阴性、杆状、高致病性细菌。它几乎占免疫功能低下患者所有医院获得性感染的 1-2%,并导致社区暴发。由于其弹性和多药耐药性的特点,寻找新的策略来检查与这种病原体相关的感染变得至关重要。参与肽聚糖生物合成途径的酶是有吸引力的和最有前途的药物靶点。它们有助于细菌包膜的形成,并有助于维持细胞的刚性和完整性。MurI(谷氨酸消旋酶)是有助于形成负责肽聚糖链交联的五肽的关键酶之一。它将 L-谷氨酸转化为 D-谷氨酸,这是合成五肽链所必需的。

方法

在这项研究中,对鲍曼不动杆菌(AYE 株)的 MurI 蛋白进行建模,并对 enamine-HTSC 文库进行高通量虚拟筛选,以 UDP-MurNAc-Ala 结合位点为靶向位点。四种配体分子 Z1156941329(N-(1-甲基-2-氧代-3,4-二氢喹啉-6-基)-1-苯基-3,4-二氢-1H-异喹啉-2-甲酰胺)、Z1726360919(1-[2-[3-(苯并咪唑-1-基甲基)哌啶-1-基]-2-氧代-1-苯乙基]哌啶-2-酮)、Z1920314754(N-[[3-(3-甲基苯基)苯基]甲基]-8-氧代-2,7-二氮杂螺[4.4]壬烷-2-甲酰胺)和 Z3240755352(4R)-4-(2,5-二氟苯基)-1-(4-氟苯基)-1,3a,4,5,7,7a-六氢-6H-吡唑并[3,4-b]吡啶-6-酮)被确定为基于利宾斯基五规则、毒性、ADME 特性、估计结合亲和力和分子间相互作用的先导候选物。然后,将这些配体与蛋白质分子的复合物进行 MD 模拟,以检查它们的动态行为、结构稳定性和对蛋白质动力学的影响。还进行了基于分子力学/泊松-玻尔兹曼表面区域的结合自由能分析,以计算蛋白质-配体复合物的结合自由能,其提供了以下值-23.32±3.04kcal/mol、-20.67±2.91kcal/mol、-8.93±2.90kcal/mol和-26.73±2.95kcal/mol分别用于 MurI-Z1726360919、MurI-Z1156941329、MurI-Z3240755352和 MurI-Z3240755354 复合物。总的来说,本研究中使用的各种计算分析结果表明,Z1726360919、Z1920314754 和 Z3240755352 可能作为潜在的先导分子,抑制鲍曼不动杆菌 MurI 蛋白的功能。

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