Isolation of Artemisia capillaris membrane-bound di-prenyltransferase for phenylpropanoids and redesign of artepillin C in yeast

Nobuo Kawahara, Hideyuki Suzuki, Ryosuke Munakata, Hikaru Seki, Toshiya Muranaka, Frédéric Bourgaud, Alain Hehn, Akifumi Sugiyama, Jérémy Grosjean, Kazufumi Yazaki, Kanade Tatsumi, Tomoya Takemura, Eiko Moriyoshi, Koki Yanagihara, Noriaki Kawano, Kayo Yoshimatsu, Takao Yamaura
2019-10-18

SCID:  54.1/z5yz9gan
Abstract Plants produce various prenylated phenolic metabolites, including flavonoids, phloroglucinols, and coumarins, many of which have multiple prenyl moieties and display various biological activities. Prenylated phenylpropanes, such as artepillin C (3,5-diprenyl- p -coumaric acid), exhibit a broad range of pharmaceutical effects. To date, however, no prenyltransferases (PTs) involved in the biosynthesis of phenylpropanes and no plant enzymes that introduce multiple prenyl residues to native substrates with different regio-specificities have been identified. This study describes the isolation from Artemisia capillaris of a phenylpropane-specific PT gene, AcPT1 , belonging to UbiA superfamily. This gene encodes a membrane-bound enzyme, which accepts p -coumaric acid as its specific substrate and transfers two prenyl residues stepwise to yield artepillin C. These findings provide novel insights into the molecular evolution of this gene family, contributing to the chemical diversification of plant specialized metabolites. These results also enabled the design of a yeast platform for the synthetic biology of artepillin C.
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2019-10-18
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Nobuo Kawahara
Hideyuki Suzuki
Ryosuke Munakata
Hikaru Seki
Toshiya Muranaka
Frédéric Bourgaud
Alain Hehn
Akifumi Sugiyama
Jérémy Grosjean
Kazufumi Yazaki
Kanade Tatsumi
Tomoya Takemura
Eiko Moriyoshi
Koki Yanagihara
Noriaki Kawano
Kayo Yoshimatsu
Takao Yamaura
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