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从 NPASS 数据库中阐明针对 FimH 凝集素结构域的新型抗菌化合物,用于治疗尿路感染:一项计算机研究。

Elucidating novel antibacterial compounds from the NPASS database against the FimH lectin domain for the treatment of urinary tract infections: an in-silico study.

机构信息

Institute of Genetic Engineering & Biotechnology Research, Baghdad University, Baghdad, Iraq.

Department of Pharmaceutical Science, College of Pharmacy, University of Thi-Qar, Nasiriyah, Iraq.

出版信息

J Biomol Struct Dyn. 2023 Jun;41(9):3914-3925. doi: 10.1080/07391102.2022.2059009. Epub 2022 Apr 9.

Abstract

The increase in multidrug-resistant pathogens in urinary tract infections (UTIs) among communities and hospitals threatens our ability to treat these common pathogens. (UPEC) strains are the most frequent uropathies linked to the development of UTIs. This work aims to introduce bioactive natural products via virtual screening of small molecules from a public database to prevent biofilm formation by inhibiting FimH, a type 1 fimbriae that plays a crucial role in UPEC pathogenicity. A total of 30926 small molecules from the NPASS database were subjected to screening via molecular docking. Followed by performing ADME studies, seven molecules showed promising docking results ranging from -6.8 to -8.7 kcal/mol. As a result of the docking score findings, 100 ns Molecular dynamics (MD) simulations were performed. Based on MM-PBSA analysis, NPC313334 ligand showed high binding affinity -42 and stability with the binding pocket of FimH protein during molecular dynamic simulations. DFT calculations were also performed on the ligands to calculate the HOMO-LUMO energies of the compounds in order to an idea about their structure and reactivity. This research suggests that NPC313334 may be a possible antibacterial drug candidate that targets FimH to reduce the number of UPEC-related urinary tract infections.Communicated by Ramaswamy H. Sarma.

摘要

社区和医院中尿路感染(UTI)的多药耐药病原体的增加威胁到我们治疗这些常见病原体的能力。(UPEC)菌株是与 UTIs 发展相关的最常见的尿路病原体。这项工作旨在通过从公共数据库中筛选小分子来引入生物活性天然产物,以抑制 FimH 抑制生物膜形成,FimH 是一种在 UPEC 致病性中起关键作用的 1 型菌毛。从 NPASS 数据库中筛选了 30926 个小分子。在进行 ADME 研究后,有 7 个分子表现出有希望的对接结果,范围从-6.8 到-8.7 kcal/mol。根据对接评分的结果,进行了 100 ns 分子动力学(MD)模拟。基于 MM-PBSA 分析,NPC313334 配体在分子动力学模拟过程中表现出与 FimH 蛋白结合口袋的高结合亲和力-42 和稳定性。还对配体进行了 DFT 计算,以计算化合物的 HOMO-LUMO 能,以了解其结构和反应性。这项研究表明,NPC313334 可能是一种针对 FimH 的潜在抗菌药物候选物,可减少与 UPEC 相关的尿路感染的数量。由 Ramaswamy H. Sarma 传达。

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