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Biosynthesis of Indole Diterpene Lolitrems : Radical-Induced Cyclization of an Epoxyalcohol Affording a Characteristic Lolitremane Skeleton

Authors :
Jiang, Yulu
Ozaki, Taro
Harada, Mei
Miyasaka, Tadachika
Sato, Hajime
Miyamoto, Kazunori
Kanazawa, Junichiro
Liu, Chengwei
Maruyama, Jun-ichi
Adachi, Masaatsu
Nakazaki, Atsuo
Nishikawa, Toshio
Uchiyama, Masanobu
Minami, Atsushi
1000000185175
Oikawa, Hideaki
Jiang, Yulu
Ozaki, Taro
Harada, Mei
Miyasaka, Tadachika
Sato, Hajime
Miyamoto, Kazunori
Kanazawa, Junichiro
Liu, Chengwei
Maruyama, Jun-ichi
Adachi, Masaatsu
Nakazaki, Atsuo
Nishikawa, Toshio
Uchiyama, Masanobu
Minami, Atsushi
1000000185175
Oikawa, Hideaki
Publication Year :
2020

Abstract

Lolitrems are tremorgenic indole diterpenes that exhibit a unique 5/6 bicyclic system of the indole moiety. Although genetic analysis has indicated that the prenyltransferase LtmE and the cytochrome P450 LtmJ are involved in the construction of this unique structure, the detailed mechanism remains to be elucidated. Herein, we report the reconstitution of the biosynthetic pathway for lolitrems employing a recently established genome-editing technique for the expression host Aspergillus oryzae. Heterologous expression and bioconversion of the various intermediates revealed that LtmJ catalyzes multistep oxidation to furnish the lolitrem core. We also isolated the key reaction intermediate with an epoxyalcohol moiety. This observation allowed us to establish the mechanism of radical-induced cyclization, which was firmly supported by density functional theory calculations and a model experiment with a synthetic analogue.

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1375195381
Document Type :
Electronic Resource