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Total biosynthesis of the cyclic AMP booster forskolin from Coleus forskohlii

机译:锦紫苏中环状AMP促进福斯高林的总生物合成

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摘要

Forskolin is a unique structurally complex labdane-type diterpenoid used in the treatment of glaucoma and heart failure based on its activity as a cyclic AMP booster. Commercial production of forskolin relies exclusively on extraction from its only known natural source, the plant Coleus forskohlii, in which forskolin accumulates in the root cork. Here, we report the discovery of five cytochrome P450s and two acetyltransferases which catalyze a cascade of reactions converting the forskolin precursor 13R-manoyl oxide into forskolin and a diverse array of additional labdane-type diterpenoids. A minimal set of three P450s in combination with a single acetyl transferase was identified that catalyzes the conversion of 13R-manoyl oxide into forskolin as demonstrated by transient expression in Nicotiana benthamiana. The entire pathway for forskolin production from glucose encompassing expression of nine genes was stably integrated into Saccharomyces cerevisiae and afforded forskolin titers of 40 mg/L.>DOI:
机译:佛司可林是一种独特的结构复杂的拉丹烷型二萜类化合物,基于其作为环AMP促进剂的活性,可用于治疗青光眼和心力衰竭。福司可林的商业生产完全依赖于从其唯一已知的天然来源提取的植物锦紫苏(Coleus forskohlii),其中福司可林在根状软木中积累。在这里,我们报告发现了五种细胞色素P450和两种乙酰基转移酶,它们催化将福斯高林前体13R-环氧丙烷转化为福斯高林和一系列其他拉丹烷型二萜的反应。鉴定出最小的三个P450与单个乙酰基转移酶的组合,该催化可催化13R-环氧丙烷转化为毛喉素,如在本氏烟草中的瞬时表达所证明。葡萄糖产生的毛喉总蛋白的完整途径(包括9个基因的表达)被稳定整合到酿酒酵母中,并得到40 mg / L的毛喉总效价。> DOI:

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