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Discovery of FoTO1 and Taxol genes enables biosynthesis of baccatin III

Nature. 2025-06; 
Conor James McClune, Jack Chun-Ting Liu, Chloe Wick, Ricardo De La Peña, Bernd Markus Lange, Polly M Fordyce, Elizabeth S Sattely Department of Chemical Engineering, Stanford University, Stanford, CA, USA
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Protein and Antibody Isolation Blots were subsequently washed and incubated with HRP–protein G (Genscript, M00090) for 1 h, Get A Quote

摘要

Plants make complex and potent therapeutic molecules1,2, but sourcing these molecules from natural producers or through chemical synthesis is difficult, which limits their use in the clinic. A prominent example is the anti-cancer therapeutic paclitaxel (sold under the brand name Taxol), which is derived from yew trees (Taxus species)3. Identifying the full paclitaxel biosynthetic pathway would enable heterologous production of the drug, but this has yet to be achieved despite half a century of research4. Within Taxus' large, enzyme-rich genome5, we suspected that the paclitaxel pathway would be difficult to resolve using conventional RNA-sequencing and co-expression analyses. Here, to improve the resolution of ... More

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