古老的 CYP716 家族是毛茛科植物三萜生物合成多样化的主要贡献者。
The ancient CYP716 family is a major contributor to the diversification of eudicot triterpenoid biosynthesis.
机构信息
Department of Plant Systems Biology, VIB, Technologiepark 927, B-9052 Ghent, Belgium.
Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium.
出版信息
Nat Commun. 2017 Feb 6;8:14153. doi: 10.1038/ncomms14153.
Triterpenoids are widespread bioactive plant defence compounds with potential use as pharmaceuticals, pesticides and other high-value products. Enzymes belonging to the cytochrome P450 family have an essential role in creating the immense structural diversity of triterpenoids across the plant kingdom. However, for many triterpenoid oxidation reactions, the corresponding enzyme remains unknown. Here we characterize CYP716 enzymes from different medicinal plant species by heterologous expression in engineered yeasts and report ten hitherto unreported triterpenoid oxidation activities, including a cyclization reaction, leading to a triterpenoid lactone. Kingdom-wide phylogenetic analysis of over 400 CYP716s from over 200 plant species reveals details of their evolution and suggests that in eudicots the CYP716s evolved specifically towards triterpenoid biosynthesis. Our findings underscore the great potential of CYP716s as a source for generating triterpenoid structural diversity and expand the toolbox available for synthetic biology programmes for sustainable production of bioactive plant triterpenoids.
三萜类化合物是广泛存在的植物生物活性防御化合物,具有作为药物、农药和其他高价值产品的潜在用途。属于细胞色素 P450 家族的酶在创造植物界中三萜类化合物的巨大结构多样性方面发挥着重要作用。然而,对于许多三萜类化合物的氧化反应,对应的酶仍然未知。在这里,我们通过在工程酵母中的异源表达来表征来自不同药用植物物种的 CYP716 酶,并报告了十种迄今未报道的三萜类化合物氧化活性,包括环化反应,导致三萜类化合物内酯的形成。对来自 200 多种植物物种的超过 400 种 CYP716 的全王国系统发育分析揭示了它们进化的细节,并表明在真双子叶植物中,CYP716 专门进化为三萜类化合物的生物合成。我们的发现强调了 CYP716 作为产生三萜类化合物结构多样性的来源的巨大潜力,并扩展了用于可持续生产生物活性植物三萜类化合物的合成生物学计划的可用工具包。