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      Biosynthetic study of conidiation-inducing factor conidiogenone: heterologous production and cyclization mechanism of a key bifunctional diterpene synthase.

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          Abstract

          Conidiogenone, a diterpene with a unique structure, is known to induce the conidiation of Penicillium cyclopium. The biosynthetic pathway of (-)-conidiogenone has been fully elucidated by the heterologous expression of biosynthetic genes in Aspergillus oryzae and by in vitro enzyme assay with 13C-labeled substrates. After construction of deoxyconidiogenol by the action of bifunctional terpene synthase, one cytochrome P450 catalyzes two rounds of oxidation to furnish conidiogenone. Notably, similar biosynthetic genes are conserved among more than 10 Penicillium sp., suggesting that conidiogenone is a common conidiation inducer in this genus. The cyclization mechanism catalyzed by terpene synthase, which involves successive 1,2-alkyl shifts, was fully elucidated using 13C-labeled geranylgeranyl pyrophosphate (GGPP) as substrate. During the structural analysis of deoxyconidiogenol, we observed broadening of some of the 13C signals measured at room temperature, which has not been observed with other structurally related compounds. Careful examination using techniques including 13C NMR studies at -80 °C, conformational analysis and prediction of the 13C chemical shifts using density functional theory gave insights into this intriguing phenomenon.

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          Author and article information

          Journal
          Biosci Biotechnol Biochem
          Bioscience, biotechnology, and biochemistry
          Informa UK Limited
          1347-6947
          0916-8451
          Feb 2019
          : 83
          : 2
          Affiliations
          [1 ] a Department of Chemistry, Faculty of Science , Hokkaido University , Sapporo , Japan.
          [2 ] b Institute of Agriculture , Tokyo University of Agriculture and Technology , Fuchu , Japan.
          [3 ] c Department of Agriculture , Yamagata University , Tsuruoka , Japan.
          [4 ] d Faculty of Agriculture and Life Science , Hirosaki University , Hirosaki , Japan.
          [5 ] e Center for Sustainable Resource Science , RIKEN , Wako-shi , Japan.
          Article
          10.1080/09168451.2018.1536518
          30343633
          86454307-b7e9-461a-a7fb-a9590b94ab61
          History

          diterpene,Biosynthesis,conidiogenone,NMR analysis
          diterpene, Biosynthesis, conidiogenone, NMR analysis

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