Morgan Kalindi D
Department of Chemistry and Biochemistry, University of Northern British Columbia, Prince George, BC, Canada.
Front Microbiol. 2023 May 10;14:1174591. doi: 10.3389/fmicb.2023.1174591. eCollection 2023.
This mini-review covers the use of nitrogen-15 in bacterial and fungal natural product discovery and biosynthetic characterization from 1970 to 2022. Nitrogen is an important element in a number of bioactive and structurally intriguing natural products including alkaloids, non-ribosomal peptides, and hybrid natural products. Nitrogen-15 can be detected at natural abundance utilizing two-dimensional nuclear magnetic resonance and mass spectrometry. Additionally, it is a stable isotope that can be added to growth media for both filamentous fungi and bacteria. With stable isotope feeding, additional two-dimensional nuclear magnetic resonance and mass spectrometry strategies have become available, and there is a growing trend to use nitrogen-15 stable isotope feeding for the biosynthetic characterization of natural products. This mini-review will catalog the use of these strategies, analyze the strengths and weaknesses of the different approaches, and suggest future directions for the use of nitrogen-15 in natural product discovery and biosynthetic characterization.
本综述涵盖了1970年至2022年期间氮-15在细菌和真菌天然产物发现及生物合成表征中的应用。氮是许多具有生物活性且结构引人入胜的天然产物中的重要元素,包括生物碱、非核糖体肽和杂合天然产物。利用二维核磁共振和质谱可在天然丰度下检测到氮-15。此外,它是一种稳定同位素,可添加到丝状真菌和细菌的生长培养基中。通过稳定同位素标记,更多的二维核磁共振和质谱策略得以应用,并且使用氮-15稳定同位素标记进行天然产物生物合成表征的趋势日益增长。本综述将梳理这些策略的应用情况,分析不同方法的优缺点,并提出氮-15在天然产物发现和生物合成表征中未来的应用方向。