三萜
生物合成
萜烯
生物化学
环蒿醇
酶
生物
异源表达
化学
基因
甾醇
医学
替代医学
病理
胆固醇
重组DNA
作者
Liufang Huang,Yonger Hu,Ruoshi Huang,Jiabo Chen,Xiande Zhang,Jingyang Yue,Laibao Feng,Yaru She,Aijia Ji,Ying Zheng,Zhongqiu Liu,Rong-Rong Zhang,Lixin Duan
标识
DOI:10.1021/acs.jafc.2c03011
摘要
Camellia sasanqua is an important economic plant that is rich in lipophilic triterpenols with pharmacological activities including antiallergic, anti-inflammatory, and anticancer activities. However, the key enzymes related to triterpene biosynthesis have seldom been studied in C. sasanqua. Oxidosqualene cyclases (OSCs) are the rate-limiting enzymes related to triterpene biosynthesis. In this study, seven putative OSC genes (CsOSC1-7) were mined from the C. sasanqua transcriptome. Six CsOSCs were characterized for the biosynthesis of diverse triterpene skeletons, including α-amyrin, β-amyrin, δ-amyrin, dammarenediol-II, ψ-taraxasterol, taraxasterol, and cycloartenol by the heterologous expression system. CsOSC3 was a multiple functional α-amyrin synthase. Three key residues, Trp260, Tyr262, and Phe415, are critical to the catalytic performance of CsOSC3 judging from the results of molecular docking and site-directed mutagenesis. These findings provide important insights into the biosynthesis pathway of triterpenes in C. sasanqua.
科研通智能强力驱动
Strongly Powered by AbleSci AI