次生代谢
次生代谢物
生物
基因簇
酶
细胞色素P450
代谢途径
基因
生物化学
生物合成
基因组
计算生物学
作者
Bin Wei,Ao‐Qi Du,Ti‐Ti Ying,Gang‐Ao Hu,Zhen‐Yi Zhou,Wenchao Yu,Jing He,Yanlei Yu,Hong Wang,Xue‐Wei Xu
标识
DOI:10.1021/acs.jnatprod.3c00007
摘要
Kutzneria is a rare genus of Actinobacteria that harbors a variety of secondary metabolite gene clusters and produces several interesting types of bioactive secondary metabolites. Recent efforts have partially elucidated the biosynthetic pathways of some of these bioactive natural products, suggesting the diversity and specificity of secondary metabolism within this genus. Here, we summarized the chemical structures, biosynthetic pathways, and key metabolic enzymes of the secondary metabolites isolated from Kutzneria strains. In-depth comparative genomic analysis of all six available high-quality Kutzneria genomes revealed that the majority (77%) of the biosynthetic gene cluster families of Kutzneria were untapped and identified homologues of key metabolic enzymes in the putative gene clusters, including cytochrome P450s, halogenases, and flavin-dependent N-hydroxylases. The present study suggests that Kutzneria exhibits great potential to synthesize novel secondary metabolites, encodes a variety of valuable metabolic enzymes, and also provides valuable information for the targeted discovery and biosynthesis of novel natural products from Kutzneria.
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