4.6 Article

Coexpression in yeast of Taxus cytochrome p450 reductase with cytochrorne P450 oxygenases involved in taxol biosynthesis

Journal

BIOTECHNOLOGY AND BIOENGINEERING
Volume 89, Issue 5, Pages 588-598

Publisher

WILEY
DOI: 10.1002/bit.20390

Keywords

Taxol; paclitaxel; cytochrome P450 reductase; cytochrome P450 taxoid 10 beta-hydroxylase; cytochrome P450 taxoid 13 alpha-hydroxylase; Taxus; yew; Saccharomyces cerevisiae; yeast

Funding

  1. NCI NIH HHS [CA 55254, R37 CA055254-14] Funding Source: Medline

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To maximize redox coupling efficiency with recombinant cytochrome P450 hydroxylases from yew (Taxus) species installed in yeast for the production of the anticancer drug Taxol, a cDNA encoding NADPH:cytochrome P450 reductase from T cuspidata was isolated. This single-copy gene (2,154 bp encoding a protein of 717 amino acids) resembles more closely other reductases from gymnosperms (similar to90% similarity) than those from angiosperms (<80% similarity). The recombinant reductase was characterized and compared to other reductases by heterologous expression in insect cells and was shown to support reconstituted taxoid 10beta-hydroxylase activity with an efficiency comparable to that of other plant-derived reductases. Coexpression in yeast of the reductase along with T cuspidata taxoid 10beta-hydroxylase, which catalyzes an early step of taxoid biosynthesis, demonstrated significant enhancement of hydroxylase activity compared to that supported by the endogenous yeast reductase alone. Functional transgenic coupling of the Taxus reductase with a homologous cytochrome P450 taxoid hydroxylase represents an important initial step in reconstructing Taxol biosynthesis in a microbial host. (C) 2005 Wiley Periodicals, Inc.

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