Division of Biotechnology, Advanced Radiation Technology Institute, Korea Atomic Energy Research Institute, 1266 Sinjeong-dong, Jeongeup, Jeonbuk 580-185, Korea.
Molecules. 2013 Mar 6;18(3):3028-40. doi: 10.3390/molecules18033028.
The roles of cytochrome P450 monooxygenases (CYPs) from Streptomyces spp. which are called the "treasure islands" for natural products for medicine and antibiotics are not well understood. Substrate specificity studies on CYPs may give a solution for elucidation of their roles. Based on homology sequence information, the CYP105D7 of a soluble cytochrome P450 known as heme protein from Streptomyces avermitilis MA4680 was expressed using the T7 promoter of the bacterial expression vector pET24ma, over-expressed in Escherichia coli system and characterized. An engineered whole cell system for daidzein hydroxylation was constructed using an exogenous electron transport system from ferredoxin reductase (PdR) and ferredoxin (Pdx). Also, an in vitro reaction study showed the purified CYP105D7 enzyme, using NADH-dependent-reducing equivalents of a redox partner from Pseudomonas putida, hydroxylated daidzein at the 3' position of the B ring to produce 7,3,'4' trihydroxyisoflavone. The hydroxylated position was confirmed by GC-MS analysis. The turnover number of the enzyme was 0.69 μmol 7,3,'4'-trihydroxyisoflavone produced per μmol P450 per min. This enzyme CYP105D7 represents a novel type of 3'-hydroxylase for daidzein hydroxylation. A P450 inhibitor such as coumarin significantly (ca.98%) inhibited the daidzein hydroxylation activity.
链霉菌属细胞色素 P450 单加氧酶(CYPs)的作用(被称为药物和抗生素天然产物的“宝藏岛”)尚未得到很好的理解。对 CYP 的底物特异性研究可能为阐明其作用提供解决方案。根据同源序列信息,来源于阿维链霉菌 MA4680 的可溶性细胞色素 P450 中的 CYP105D7 被表达为带有 T7 启动子的细菌表达载体 pET24ma 的 heme 蛋白,在大肠杆菌系统中过表达并进行了表征。使用来自脱铁还原酶(PdR)和铁氧还蛋白(Pdx)的外源电子传递系统构建了用于大豆苷元羟化的工程化全细胞系统。此外,体外反应研究表明,使用来自恶臭假单胞菌的氧化还原伴侣的 NADH 依赖性还原当量,纯化的 CYP105D7 酶在 B 环的 3'位置将大豆苷元羟化生成 7,3',4'-三羟基异黄酮。通过 GC-MS 分析确认了羟化位置。该酶的周转数为每微摩尔 P450 每分钟产生 0.69 微摩尔 7,3',4'-三羟基异黄酮。这种酶 CYP105D7 代表大豆苷元羟化的新型 3'-羟化酶。P450 抑制剂如香豆素可显著(约 98%)抑制大豆苷元的羟化活性。