罂粟碱
代谢物
生物转化
血红素
基质(水族馆)
化学
细胞色素P450
羟基化
细胞色素
次生代谢物
链霉菌
生物化学
立体化学
组合化学
酶
生物
细菌
内分泌学
基因
遗传学
生态学
作者
Bashu Dev Pardhe,Hackwon Do,Chang‐Sook Jeong,Ki‐Hwa Kim,Jun Hyuck Lee,Tae‐Jin Oh
出处
期刊:IUCrJ
[International Union of Crystallography]
日期:2021-06-29
卷期号:8 (4): 684-694
被引量:8
标识
DOI:10.1107/s2052252521005522
摘要
The bacterial CYP105 family is involved in secondary metabolite biosynthetic pathways and plays essential roles in the biotransformation of xenobiotics. This study investigates the newly identified H2O2-mediated CYP105D18 from Streptomyces laurentii as the first bacterial CYP for N-oxidation. The catalytic efficiency of CYP105D18 for papaverine N-oxidation was 1.43 s-1 µM-1. The heme oxidation rate (k) was low (<0.3 min-1) in the presence of 200 mM H2O2. This high H2O2 tolerance capacity of CYP105D18 led to higher turnover prior to heme oxidation. Additionally, the high-resolution papaverine complexed structure and substrate-free structure of CYP105D18 were determined. Structural analysis and activity assay results revealed that CYP105D18 had a strong substrate preference for papaverine because of its bendable structure. These findings establish a basis for biotechnological applications of CYP105D18 in the pharmaceutical and medicinal industries.
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