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An Isotopic Ratio Outlier Analysis Approach for Global Metabolomics of Biosynthetically Talented Actinomycetes

机译:生物合成有天赋的放线菌的全局代谢组学的同位素比值异常值分析方法

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摘要

Actinomycetes are powerhouses of natural product biosynthesis. Full realization of this biosynthetic potential requires approaches for recognizing novel metabolites and determining mediators of metabolite production. Herein, we develop an isotopic ratio outlier analysis (IROA) ultra-high performance liquid chromatography-mass spectrometry (UHPLC/MS) global metabolomics strategy for actinomycetes that facilitates recognition of novel metabolites and evaluation of production mediators. We demonstrate this approach by determining impacts of the iron chelator 2,2′-bipyridyl on the Nocardiopsis dassonvillei metabolome. Experimental and control cultures produced metabolites with isotopic carbon signatures that were distinct from corresponding “standard” culture metabolites, which were used as internal standards for LC/MS. This provided an isotopic MS peak pair for each metabolite, which revealed the number of carbon atoms and relative concentrations of metabolites and distinguished biosynthetic products from artifacts. Principal component analysis (PCA) and random forest (RF) differentiated bipyridyl-treated samples from controls. RF mean decrease accuracy (MDA) values supported perturbation of metabolites from multiple amino acid pathways and novel natural products. Evaluation of bipyridyl impacts on the nocazine/XR334 diketopiperazine (DKP) pathway revealed upregulation of amino acid precursors and downregulation of late stage intermediates and products. These results establish IROA as a tool in the actinomycete natural product chemistry arsenal and support broad metabolic consequences of bipyridyl.
机译:放线菌是天然产物生物合成的动力。要充分实现这种生物合成潜力,就需要识别新的代谢产物并确定代谢产物产生介质的方法。在这里,我们为放线菌开发了一种同位素比值离群分析(IROA)超高效液相色谱-质谱(UHPLC / MS)全球代谢组学策略,该策略可促进新代谢物的识别和生产介质的评估。我们通过确定铁螯合剂2,2'-联吡啶对诺卡氏菌dassonvillei代谢组的影响来证明这种方法。实验和对照培养产生的代谢物具有同位素碳特征,与相应的“标准”培养代谢物不同,后者被用作LC / MS的内标。这为每种代谢物提供了一个同位素MS峰对,揭示了碳原子数和代谢物的相对浓度,并从人工产物中区分出了生物合成产物。主成分分析(PCA)和随机森林(RF)区分了联吡啶处理的样品和对照样品。 RF平均降低准确性(MDA)值支持来自多种氨基酸途径和新型天然产物的代谢物的扰动。联吡啶对Nocazine / XR334二酮哌嗪(DKP)途径的影响评估显示,氨基酸前体的上调和后期中间体和产物的下调。这些结果使IROA成为放线菌天然产物化学武器库中的一种工具,并支持联吡啶的广泛代谢后果。

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