色酮
生物合成
聚酮
生物化学
化学
酶
细胞色素P450
代谢途径
突变
立体化学
细胞色素
基质(水族馆)
呋喃香豆素
裂解酶
生物转化
生物
代谢工程
新陈代谢
作者
Jianlin Zou,Hongye Li,Huayang Tian,Weizhe Xu,Shi Qiao,Zi Wang,Qingyan Li,Min Ye
标识
DOI:10.1021/acscatal.6c01695
摘要
Khellin is a prototypical furochromone and was approved in Germany as an anti-anginal drug in 1990. However, its biosynthetic pathway remains elusive. In this study, we identify a polyketide synthase, a prenyltransferase, three O -methyltransferases, and three cytochrome P450 enzymes from Ammi visnaga and thus elucidate the biosynthetic pathway of khellin. Interestingly, the flowers and roots of A. visnaga have different pathways, involving two 5- O -methyltransferases (AvOMT1 and AvOMT2), which catalyze noreugenin and visamminol, respectively. Site-directed mutagenesis reveals that N272 and G327 are the determinant residues for the substrate specificity. Moreover, in A. visnaga, the presence of N272 in AvOMT1 gives rise to a chromone metabolic pathway that is distinctive among Apiaceae plants. This work provides a foundation for the biocatalytic production of khellin and related furochromones.
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