立体选择性
单加氧酶
酶
细菌
细胞色素P450
酵母
生物化学
生物催化
部分
化学
生物
同源建模
生物合成
立体化学
催化作用
遗传学
离子液体
作者
Yanlong Yang,Man Zhou,Lin Yang,Markus Gressler,Johannes Rassbach,Jacob M. Wurlitzer,Ying Zeng,Kun Gao,Dirk Hoffmeister
标识
DOI:10.1002/anie.202313817
摘要
An epoxycyclohexenone (ECH) moiety occurs in natural products of both bacteria and ascomycete and basidiomycete fungi. While the enzymes for ECH formation in bacteria and ascomycetes have been identified and characterized, it remained obscure how this structure is biosynthesized in basidiomycetes. In this study, we i) identified a genetic locus responsible for panepoxydone biosynthesis in the basidiomycete mushroom Panus rudis and ii) biochemically characterized PanH, the cytochrome P450 enzyme catalyzing epoxide formation in this pathway. Using a PanH-producing yeast as a biocatalyst, we synthesized a small library of bioactive ECH compounds as a proof of concept. Furthermore, homology modeling, molecular dynamics simulation, and site directed mutation revealed the substrate specificity of PanH. Remarkably, PanH is unrelated to ECH-forming enzymes in bacteria and ascomycetes, suggesting that mushrooms evolved this biosynthetic capacity convergently and independently of other organisms.
科研通智能强力驱动
Strongly Powered by AbleSci AI