血桂碱
苄基异喹啉
普罗托品
生物合成
互补DNA
生物化学
生物
分子克隆
异源表达
羟基化
细胞色素P450
分子生物学
化学
酶
生物碱
重组DNA
基因
植物
作者
Tomoya Takemura,Nobuhiro Ikezawa,Kinuko Iwasa,Fumihiko Sato
出处
期刊:Phytochemistry
[Elsevier BV]
日期:2012-03-13
卷期号:91: 100-108
被引量:75
标识
DOI:10.1016/j.phytochem.2012.02.013
摘要
Benzophenanthridine alkaloids, such as sanguinarine, are produced from reticuline, a common intermediate in benzylisoquinoline alkaloid biosynthesis, via protopine. Four cytochrome P450s are involved in the biosynthesis of sanguinarine from reticuline; i.e. cheilanthifoline synthase (CYP719A5; EC 1.14.21.2.), stylopine synthase (CYP719A2/A3; EC 1.14.21.1.), N-methylstylopine hydroxylase (MSH) and protopine 6-hydroxylase (P6H; EC 1.14.13.55.). In this study, a cDNA of P6H was isolated from cultured Eschscholzia californica cells, based on an integrated analysis of metabolites and transcript expression profiles of transgenic cells with Coptis japonica scoulerine-9-O-methyltransferase. Using the full-length candidate cDNA for P6H (CYP82N2v2), recombinant protein was produced in Saccharomyces cerevisiae for characterization. The microsomal fraction containing recombinant CYP82N2v2 showed typical reduced CO-difference spectra of P450, and production of dihydrosanguinarine and dihydrochelerythrine from protopine and allocryptopine, respectively. Further characterization of the substrate-specificity of CYP82N2v2 indicated that 6-hydroxylation played a role in the reaction.
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