Pateraki Irini, Heskes Allison Maree, Hamberger Björn
Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, Thorvaldsensvej 40, 1871, Copenhagen, Denmark.
Adv Biochem Eng Biotechnol. 2015;148:107-39. doi: 10.1007/10_2014_301.
Plants have evolved the capacity to produce a striking array of specialised metabolites. Terpenoids are the oldest and most diverse class of such compounds and have attracted interest for industrial and pharmaceutical applications. The development of biotechnological alternatives for their production is the focus of intense research. Photosynthetic systems provide new strategies for autotrophic metabolic engineering. Focusing on cytochromes P450, involved in the functionalisation of the core terpene molecules, this review highlights the latest approaches in this field and looks towards recent discoveries that have the potential to shape the future of terpenoid bioengineering.
植物已经进化出产生一系列惊人的特殊代谢物的能力。萜类化合物是这类化合物中最古老、最多样化的一类,在工业和制药应用中引起了人们的兴趣。开发其生产的生物技术替代方法是深入研究的重点。光合系统为自养代谢工程提供了新策略。本文聚焦于参与核心萜烯分子功能化的细胞色素P450,重点介绍了该领域的最新方法,并展望了可能塑造萜类生物工程未来的最新发现。