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De La Pena, R.

Publications and source records attributed to De La Pena, R..

2 recordsLinked to original sources

Reconstitution of Early Paclitaxel Biosynthetic Network

Paclitaxel is an anticancer therapeutic produced by the yew tree. Over the last two decades, a significant bottleneck in the reconstitution of early paclitaxel biosynthesis has been the propensity of heterologously expressed pathway cytochromes P450, including taxadiene 5-hydroxylase (T5H), to form multiple products. This diverts metabolic flux away from the paclitaxel precursor, taxadien-5-ol, thus previous attempts of reconstitution have not yielded sufficient material for characterization, regardless of the heterologous host. Here, we structurally characterized four new products of T5H, many of which appear to be over-oxidation of the primary mono-oxidized products. By tuning the promoter strength for T5H expression, levels of these proposed byproducts decrease with a concomitant increase in the accumulation of taxadien-5-ol by four-fold. This engineered system enabled the reconstitution of a six step biosynthetic pathway to produce isolatable 5,10{beta}-diacetoxy-taxadien-13-ol. Furthermore, we showed that this pathway may function as a metabolic network rather than a linear pathway. The engineering of the paclitaxel biosynthetic network demonstrates that Taxus genes can coordinatively function for the biosynthetic production of key early stage paclitaxel intermediates and serves as a crucial platform for the discovery of the remaining biosynthetic genes.

plant biology↗

Complex scaffold remodeling in plant triterpene biosynthesis

Triterpenes with complex scaffold modifications are widespread in plants yet little is known regarding biosynthesis. Limonoids are an exemplary family that includes the bitter taste in citrus (e.g., limonin) and the active constituents in neem oil, a widely used bioinsecticide (e.g., azadirachtin). Despite limonoid commercial value, a complete biosynthetic route has not been described. Here, we report the discovery of 22 enzymes that catalyze 12 unique reactions including the 4-carbon scission and furan installation that are a signature of the limonoid family and a pair of sterol isomerases previously unknown in plants. This gene set is then used for the total biosynthesis of kihadalactone A and azadirone in a heterologous plant. These results enable access to valuable limonoids and provide a template for discovery and reconstitution of triterpene biosynthetic pathways in plants that require multiple skeletal rearrangements and oxidations.

biochemistry↗