Li Hu, Li Wei, Song Kaihui, Liu Yu, Zhao Guiyun, Du Yi-Ling
Polytechnic Institute, Zhejiang University, Hangzhou, 310022, China.
Department of Microbiology, Zhejiang University School of Medicine, Hangzhou, 310058, China.
Synth Syst Biotechnol. 2024 Jan 17;9(1):127-133. doi: 10.1016/j.synbio.2024.01.005. eCollection 2024 Mar.
The biological signaling molecule nitric oxide (NO) has recently emerged as a metabolic precursor for the creation of microbial natural products with diversified structures and biological activities. Within the biosynthetic gene clusters (BGCs) of these compounds, genes associated with NO production pathways have been pinpointed. In this study, we employ a nitric oxide synthase (NOS)-guided genome mining strategy for the targeted discovery of NO-derived bacterial natural products and NO-utilizing biocatalysts. We show that a conserved NOS-containing BGC, distributed across several actinobacterial genomes, is responsible for the biosynthesis of lajollamycin, a unique nitro-tetraene-containing antibiotic whose biosynthetic mechanism remains elusive. Through a combination of in vivo and in vitro studies, we unveil the first cytochrome P450 enzyme capable of catalyzing olefin nitration in natural product biosynthesis. These results not only expand the current knowledge about biosynthetic nitration processes but also offer an efficient way for targeted identification of NO-utilizing metabolic pathways and novel nitrating biocatalysts.
生物信号分子一氧化氮(NO)最近已成为生成具有多样化结构和生物活性的微生物天然产物的代谢前体。在这些化合物的生物合成基因簇(BGC)中,已确定了与NO产生途径相关的基因。在本研究中,我们采用一氧化氮合酶(NOS)导向的基因组挖掘策略,以靶向发现源自NO的细菌天然产物和利用NO的生物催化剂。我们表明,一个保守的含NOS的BGC分布在多个放线菌基因组中,负责拉霍亚霉素的生物合成,拉霍亚霉素是一种独特的含硝基四烯抗生素,其生物合成机制仍然不明。通过体内和体外研究相结合,我们揭示了第一种能够在天然产物生物合成中催化烯烃硝化的细胞色素P450酶。这些结果不仅扩展了目前关于生物合成硝化过程的知识,还为靶向鉴定利用NO的代谢途径和新型硝化生物催化剂提供了一种有效方法。