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针对其外膜蛋白 U 靶向控制 的有效天然资源小分子抑制剂的鉴定:一种计算机模拟方法。

Identification of Potent Natural Resource Small Molecule Inhibitor to Control by Targeting Its Outer Membrane Protein U: An In Silico Approach.

机构信息

College of Food Science and Engineering, Foshan University, Foshan 528231, China.

School of Food Science and Engineering, South China University of Technology, Guangzhou 510641, China.

出版信息

Molecules. 2021 Oct 28;26(21):6517. doi: 10.3390/molecules26216517.

Abstract

causes the diarrheal disease cholera which affects millions of people globally. The outer membrane protein U (OmpU) is the outer membrane protein that is most prevalent in and has already been recognized as a critical component of pathogenicity involved in host cell contact and as being necessary for the survival of pathogenic in the host body. Computational approaches were used in this study to screen a total of 37,709 natural compounds from the traditional Chinese medicine (TCM) database against the active site of OmpU. Following a sequential screening of the TCM database, we report three lead compounds-ZINC06494587, ZINC85510056, and ZINC95910434-that bind strongly to OmpU, with binding affinity values of -8.92, -8.12, and -8.78 kcal/mol, which were higher than the control ligand (-7.0 kcal/mol). To optimize the interaction, several 100 ns molecular dynamics simulations were performed, and the resulting complexes were shown to be stable in their vicinity. Additionally, these compounds were predicted to have good drug-like properties based on physicochemical properties and ADMET assessments. This study suggests that further research be conducted on these compounds to determine their potential use as cholera disease treatment.

摘要

引起腹泻病霍乱,影响全球数百万人。外膜蛋白 U(OmpU)是最常见的外膜蛋白,已经被认为是致病性的关键组成部分,涉及宿主细胞接触,并且是病原体在宿主体内存活所必需的。在这项研究中,使用计算方法从中药(TCM)数据库中筛选了总共 37709 种天然化合物,针对 OmpU 的活性部位。在对 TCM 数据库进行了顺序筛选后,我们报告了三种与 OmpU 结合紧密的先导化合物-ZINC06494587、ZINC85510056 和 ZINC95910434,其结合亲和力值分别为-8.92、-8.12 和-8.78 kcal/mol,高于对照配体(-7.0 kcal/mol)。为了优化相互作用,进行了多次 100 ns 的分子动力学模拟,结果表明复合物在其附近是稳定的。此外,根据物理化学性质和 ADMET 评估,这些化合物被预测具有良好的类药性。这项研究表明,应进一步研究这些化合物,以确定它们作为霍乱病治疗的潜在用途。

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