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利用基于 MS/MS 的分子网络技术研究异形胞蓝藻菌株的抗菌活性和生物活性特征。

Antimicrobial activity and bioactive profiling of heterocytous cyanobacterial strains using MS/MS-based molecular networking.

机构信息

Laboratory of Algal Biotechnology-Centre Algatech, Institute of Microbiology of the Czech Academy of Sciences, Opatovický mlýn, Novohradská 237, 379 81, Třeboň, Czech Republic.

The Czech Academy of Sciences, Biology Centre, Institute of Hydrobiology, Na Sádkách 702/7, 370 05, České Budějovice, Czech Republic.

出版信息

Folia Microbiol (Praha). 2019 Sep;64(5):645-654. doi: 10.1007/s12223-019-00737-9. Epub 2019 Aug 5.

Abstract

The rapid emergence of resistance in pathogenic bacteria together with a steep decline in economic incentives has rendered a new wave in the drug development by the pharmaceutical industry and researchers. Since cyanobacteria are recognized as wide producers of pharmaceutically important compounds, we investigated thirty-four cyanobacterial extracts prepared by solvents of different polarities for their antimicrobial potential. Almost all tested cyanobacterial strains exhibited some degree of antimicrobial bioactivity, with more general effect on fungal strains compared with bacteria. Surprisingly ~50% of cyanobacterial extracts exhibited specific activity against one or few bacterial indicator strains with Gram-positive bacteria being more affected. Extracts of two most promising strains were subjected to activity-guided fractionation and determination of the minimum inhibitory concentration (MIC) against selected bacterial and fungal isolates. Multiple fractions were responsible for their antimicrobial effect with MIC reaching low-micromolar concentrations and in some of them high level of specificity was recorded. Twenty-six bioactive fractions analyzed on LC-HRMS/MS and Global Natural Product Social Molecular Networking (GNPS) online workflow using dereplication resulted in identification of only forty-nine peptide spectrum matches (PSMs) with eleven unique metabolites spectrum matches (MSMs). Interestingly, only three fractions from Nostoc calcicola Lukešová 3/97 and four fractions from Desmonostoc sp. Cc2 showed the presence of unique MSMs suggesting the presence of unknown antimicrobial metabolites among majority of bioactive fractions from both the strains. Our results highlight potential for isolation and discovery of potential antimicrobial bioactive lead molecules from cyanobacterial extracts.

摘要

病原菌耐药性的迅速出现,加上制药行业和研究人员经济激励的大幅下降,使得药物研发出现了新一轮浪潮。由于蓝藻被认为是具有重要药用价值化合物的广泛生产者,我们研究了 34 种用不同极性溶剂制备的蓝藻提取物,以评估它们的抗菌潜力。几乎所有测试的蓝藻菌株都表现出一定程度的抗菌生物活性,与细菌相比,对真菌菌株的作用更普遍。令人惊讶的是,约 50%的蓝藻提取物对一种或几种革兰氏阳性菌指示菌株具有特异性活性。对两种最有前途的菌株的提取物进行了活性导向的分离,并测定了对选定的细菌和真菌分离物的最低抑菌浓度 (MIC)。多种馏分对其具有抗菌作用,MIC 达到低微摩尔浓度,其中一些具有很高的特异性。对 26 种具有生物活性的馏分进行 LC-HRMS/MS 分析,并在 Global Natural Product Social Molecular Networking (GNPS) 在线工作流程中使用去重分析,结果仅鉴定出 49 个肽谱匹配物 (PSMs) 和 11 个独特代谢物谱匹配物 (MSMs)。有趣的是,只有来自 Nostoc calcicola Lukešová 3/97 的 3 个馏分和来自 Desmonostoc sp. Cc2 的 4 个馏分显示出存在独特的 MSMs,这表明在来自这两种菌株的大多数生物活性馏分中存在未知的抗菌代谢物。我们的研究结果突出了从蓝藻提取物中分离和发现潜在抗菌生物活性先导分子的潜力。

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