Characterization and heterologous reconstitution of <i>Taxus</i> biosynthetic enzymes leading to baccatin III.
basic_science · Level V
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- Record sourced from PubMed, PMID 38271490.
- Also identified by DOI 10.1126/science.adj3484.
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Abstract
Paclitaxel is a well known anticancer compound. Its biosynthesis involves the formation of a highly functionalized diterpenoid core skeleton (baccatin III) and the subsequent assembly of a phenylisoserinoyl side chain. Despite intensive investigation for half a century, the complete biosynthetic pathway of baccatin III remains unknown. In this work, we identified a bifunctional cytochrome P450 enzyme [taxane oxetanase 1 (TOT1)] in <i>Taxus mairei</i> that catalyzes an oxidative rearrangement in paclitaxel oxetane formation, which represents a previously unknown enzyme mechanism for oxetane ring formation. We created a screening strategy based on the taxusin biosynthesis pathway and uncovered the enzyme responsible for the taxane oxidation of the C9 position (T9αH1). Finally, we artificially reconstituted a biosynthetic pathway for the production of baccatin III in tobacco.
Medical subject headings
- Alkaloids
- Paclitaxel
- Taxoids
- Taxus
- Metabolic Engineering
- Cytochrome P-450 Enzyme System
- Plant Proteins