Author:
Liu Xiuyu,Jiao Xiang,Cheng Yatian,Ma Ying,Bu Junling,Jin Baolong,Li Qishuang,Hu Zhimin,Tang Jinfu,Lai Changjiangsheng,Wang Jian,Cui Guanghong,Chen Yun,Guo Juan,Huang Luqi
Abstract
AbstractBenzylisoquinoline alkaloids (BIAs) are a type of secondary metabolite with clinical application value. (S)-stylopine is a special BIA which contains methylenedioxy bridge structures. CYP719As could catalyze the methylenedioxy bridge-formation on the A or D rings of protoberberine alkaloids, while displaying significant substrate regiospecificity. To explore the substrate preference of CYP719As, we cloned and identified five CyCYP719A candidates from Corydalis yanhusuo. Two CyCYP719As (CyCYP719A39 and CyCYP719A42) with high catalytic efficiency for the methylenedioxy bridge-formation on the D or A rings were characterized, respectively. The residues (Leu 294 for CyCYP719A42 and Asp 289 for CyCYP719A39) were identified as the key to controlling the regioselectivity of CYP719As affecting the methylenedioxy bridge-formation on the A or D rings by homology modeling and mutation analysis. Furthermore, for de novo production of BIAs, CyCYP719A39, CyCYP719A42, and their mutants were introduced into the (S)-scoulerine-producing yeast to produce 32 mg/L (S)-stylopine. These results lay a foundation for understanding the structure-function relationship of CYP719A-mediated methylenedioxy bridge-formation and provide yeast strains for the BIAs production by synthetic biology.
Funder
National Natural Science Foundation of China
The ability to establish sustainable use of valuable Chinese medicine resources
the Fundamental Research Funds of China Academy of Chinese Medical Sciences
Innovation Team and Talents Cultivation Program of National Administration of Traditional Chinese Medicine
Scientific and Technological Innovation Project of China Academy of Chinese Medical Sciences
Publisher
Springer Science and Business Media LLC
Subject
Applied Microbiology and Biotechnology,Bioengineering,Biotechnology
Cited by
5 articles.
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