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天然蒽醌库的虚拟筛选及其作为潜在防污剂的研究

Virtual Screening of a Library of Naturally Occurring Anthraquinones for Potential Anti-Fouling Agents.

机构信息

Marine Biodiscovery Centre, Department of Chemistry, University of Aberdeen, Aberdeen AB24 3UE, UK.

The National Decommissioning Centre, University of Aberdeen, Aberdeen AB41 6AA, UK.

出版信息

Molecules. 2023 Jan 19;28(3):995. doi: 10.3390/molecules28030995.

Abstract

Marine biofouling is the undesired accumulation of organic molecules, microorganisms, macroalgae, marine invertebrates, and their by-products on submerged surfaces. It is a serious challenge for marine vessels and the oil, gas, and renewable energy industries, as biofouling can cause economic losses for these industries. Natural products have been an abundant source of therapeutics since the start of civilisation. Their use as novel anti-fouling agents is a promising approach for replacing currently used, harmful anti-fouling agents. Anthraquinones (AQs) have been used for centuries in the food, pharmaceutical, cosmetics, and paint industries. Citreorosein and emodin are typical additives used in the anti-fouling paint industry to help improve the global problem of biofouling. This study is based on our previous study, in which we presented the promising activity of structurally related anthraquinone compounds against biofilm-forming marine bacteria. To help uncover the anti-fouling potential of other AQ-related structures, 2194 compounds from the COCONUT natural products database were analysed. Molecular docking analysis was performed to assess the binding strength of these compounds to the LuxP protein in . The LuxP protein is a vital binding protein responsible for the movements of autoinducers within the quorum sensing system; hence, interrupting the process at an early stage could be an effective strategy. Seventy-six AQ structures were found to be highly docked, and eight of these structures were used in structure-based pharmacophore modelling, resulting in six unique pharmacophore features.

摘要

海洋生物附着是指有机分子、微生物、大型藻类、海洋无脊椎动物及其副产品在水下表面的不受欢迎的积累。这是海洋船舶以及石油、天然气和可再生能源行业面临的一个严重挑战,因为生物附着会给这些行业造成经济损失。自文明开始以来,天然产物一直是治疗药物的丰富来源。将其用作新型防污剂是替代目前使用的有害防污剂的一种很有前途的方法。蒽醌(AQs)在食品、制药、化妆品和涂料行业已经使用了几个世纪。橙皮苷和大黄素是防污漆工业中常用的典型添加剂,有助于改善生物附着这一全球性问题。本研究基于我们之前的研究,在该研究中,我们展示了结构相关的蒽醌化合物对形成生物膜的海洋细菌具有有希望的活性。为了帮助揭示其他与 AQ 相关结构的防污潜力,分析了来自 COCONUT 天然产物数据库的 2194 种化合物。进行了分子对接分析,以评估这些化合物与 LuxP 蛋白在. 中的结合强度。LuxP 蛋白是一种重要的结合蛋白,负责群体感应系统中自动诱导物的运动;因此,在早期阶段中断该过程可能是一种有效的策略。发现 76 种 AQ 结构具有高度对接性,其中 8 种结构用于基于结构的药效团建模,产生了 6 个独特的药效团特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ab2/9920117/3da52e83298f/molecules-28-00995-g001.jpg

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