Wang De-Gao, Niu Luo, Lin Zhao-Min, Wang Jing-Jing, Gao Dong-Fang, Sui Hai-Yan, Li Yue-Zhong, Wu Changsheng
State Key Laboratory of Microbial Technology, Institute of Microbial Technology, Shandong University, Qingdao 266237, People's Republic of China.
Institute of Medical Science, The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan 250033, People's Republic of China.
J Nat Prod. 2021 Oct 22;84(10):2744-2748. doi: 10.1021/acs.jnatprod.1c00524. Epub 2021 Oct 8.
Myxobacteria are a prolific source of structurally diverse natural products, and one of the best-studied myxobacterial products is the siderophore myxochelin. Herein, we report two new compounds, myxochelins N () and O (), that are nicotinic paralogs of myxochelin A, from the terrestrial myxobacterium sp. SDU34; is functionalized with a rare 2-oxazolidinone. A precursor-feeding experiment implied that the biosynthesis of or was due to altered substrate specificity of the loading module of MxcE, which likely accepts nicotinic acid and benzoic acid instead of more conventional 2,3-dihydroxybenzoic acid. We also employed a phylogenomic approach to map the evolutionary relationships of the myxochelin biosynthetic gene clusters (BGCs) in all the available myxobacterial genomes, to pave the way for the future discovery of potentially hidden myxochelin derivatives. Although the biological function of and is unclear yet, this work underpins that even extensively studied BGCs in myxobacteria can still produce new chemistry.
粘细菌是结构多样的天然产物的丰富来源,其中研究最深入的粘细菌产物之一是铁载体粘杆菌素。在此,我们报道了两种新化合物,粘杆菌素N()和O(),它们是粘杆菌素A的烟碱类似物,来自陆生粘细菌菌株SDU34; 用罕见的2-恶唑烷酮进行了功能化。前体喂养实验表明,或的生物合成是由于MxcE加载模块的底物特异性改变,该模块可能接受烟酸和苯甲酸而不是更传统的2,3-二羟基苯甲酸。我们还采用了系统基因组学方法来绘制所有可用粘细菌基因组中粘杆菌素生物合成基因簇(BGC)的进化关系,为未来发现潜在隐藏的粘杆菌素衍生物铺平道路。尽管和的生物学功能尚不清楚,但这项工作表明,即使是粘细菌中广泛研究的BGC仍然可以产生新的化学物质。