前往化源商城

Applied and Environmental Microbiology 2014-12-01

Microbial Synthesis of the Forskolin Precursor Manoyl Oxide in an Enantiomerically Pure Form.

Morten T Nielsen, Johan Andersen Ranberg, Ulla Christensen, Hanne Bjerre Christensen, Scott J Harrison, Carl Erik Olsen, Björn Hamberger, Birger Lindberg Møller, Morten H H Nørholm

文献索引:Appl. Environ. Microbiol. 80(23) , 7258-65, (2015)

全文:HTML全文

摘要

Forskolin is a promising medicinal compound belonging to a plethora of specialized plant metabolites that constitute a rich source of bioactive high-value compounds. A major obstacle for exploitation of plant metabolites is that they often are produced in small amounts and in plants difficult to cultivate. This may result in insufficient and unreliable supply leading to fluctuating and high sales prices. Hence, substantial efforts and resources have been invested in developing sustainable and reliable supply routes based on microbial cell factories. Here, we report microbial synthesis of (13R)-manoyl oxide, a proposed intermediate in the biosynthesis of forskolin and other medically important labdane-type terpenoids. Process optimization enabled synthesis of enantiomerically pure (13R)-manoyl oxide as the sole metabolite, providing a pure compound in just two steps with a yield of 10 mg/liter. The work presented here demonstrates the value of a standardized bioengineering pipeline and the large potential of microbial cell factories as sources for sustainable synthesis of complex biochemicals. Copyright © 2014, American Society for Microbiology. All Rights Reserved.

相关化合物

结构式 名称/CAS号 全部文献
正己烷 结构式 正己烷
CAS:110-54-3
元明粉 结构式 元明粉
CAS:7757-82-6
1-二十烯 结构式 1-二十烯
CAS:3452-07-1