首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Structure-based manual screening and automatic networking for systematically exploring sansanmycin analogues using high performance liquid chromatography tandem mass spectroscopy
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Structure-based manual screening and automatic networking for systematically exploring sansanmycin analogues using high performance liquid chromatography tandem mass spectroscopy

机译:基于结构的手动筛选和自动网络,用于使用高效液相色谱系统探索Sansanmycin类似物串联质谱

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Sansanmycins (SS), one of several known uridyl peptide antibiotics (UPAs) possessing a unique chemical scaffold, showed a good inhibitory effect on the highly refractory pathogens Pseudomonas aeruginosa and Mycobacterium tuberculosis, especially on the multi-drug resistant M. tuberculosis. This study employed high performance liquid chromatography-mass spectrometry detector (HPLC-MSD) ion trap and LTQ orbitrap tandem mass spectrometry (MS/MS) to explore sansanmycin analogues manually and automatically by re-analysis of the Streptomyces sp. SS fermentation broth. The structure-based manual screening method, based on analysis of the fragmentation pathway of known UPAs and on comparisons of the MS/MS spectra with that of sansanmycin A (SS-A), resulted in identifying twenty sansanmycin analogues, including twelve new structures (1-12). Furthermore, to deeply explore sansanmycin analogues, we utilized a GNPS based molecular networking workflow to re-analyze the HPLC-MS/MS data automatically. As a result, eight more new sansanmycins (13-20) were discovered. Compound 1 was discovered to lose two amino acids of residue 1 (AA(1) and (2S,3S)-N-3-methyl-2,3-diamino butyric acid (DABA) from the N-terminus, and compounds 6,11 and 12 were found to contain a 2',3'-dehydrated 4',5'-enamine3'-deoxyuridyl moiety, which have not been reported before. Interestingly, three trace components with novel 5,6-dihydro-5'-aminouridyl group (16-18) were detected for the first time in the sansanmycin-producing strain. Their structures were primarily determined by detail analysis of the data from MS/MS. Compounds 8 and 10 were further confirmed by nuclear magnetic resonance (NMR) data, which proved the efficiency and accuracy of the method of HPLC-MS/MS for exploration of novel UPAs. Comparing to manual screening, the networking method can provide systematic visualization results. Manual screening and networking method may complement with each other to facilitate the mining of novel UPAs. (C) 2018 Elsevier B.V. All rights reserved.
机译:Sansanmycins(SS)是具有独特化学支架的几种已知的尿苷肽抗生素(UPAs)中的一种,对高难治性病原体铜绿假单胞菌和结核分枝杆菌术语表现出良好的抑制作用,尤其是对多药物抗性M.结核病。该研究采用高效液相色谱 - 质谱检测器(HPLC-MSD)离子捕集器和LTQ曲纹串联质谱(MS / MS),通过再分析Streptomyces SP手动和自动地手动探索Sansanmycin类似物。 SS发酵肉汤。基于基于结构的手动筛选方法,基于分析已知upas的碎片途径和Sansanmycin A(SS-A)的MS / MS光谱比较,导致鉴定20个Sansanmycin类似物,包括12个新结构( 1-12)。此外,为了深入探索Sansanmycin类似物,我们利用了基于GNP的分子网络工作流程来自动地重新分析HPLC-MS / MS数据。结果,发现了八个新的三丹霉素(13-20)。发现化合物1减掉了来自N-末端的残基1(AA(1)和(2S,3S)-N-3-甲基-2,3-偶二甲基-2,3-二氨基丁酸(DABA)的氨基酸,以及化合物6,发现11和12含有之前尚未报道的2',3'-脱水4',5'-烯氨基3'-脱氧脲基部分。有趣的是,三种痕量组分具有新的5,6-二氢-5'-在Sansanmycin产生菌株中首次检测氨基脲基(16-18)。它们的结构主要通过来自MS / MS的数据的细节分析来确定。通过核磁共振进一步证实化合物8和10数据证明了HPLC-MS / MS方法的效率和准确性,用于探索新型UPA。比较,网络方法可以提供系统的可视化结果。手动筛选和网络方法可以相互补充以方便新颖的upas挖掘。(c)2018年Elsevier BV保留所有权利。

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