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  • Discovery of the cryptic function of terpene cyclases as aromatic prenyltransferases.

Discovery of the cryptic function of terpene cyclases as aromatic prenyltransferases.

Nature communications (2020-08-10)
Haibing He, Guangkai Bian, Corey J Herbst-Gervasoni, Takahiro Mori, Stephen A Shinsky, Anwei Hou, Xin Mu, Minjian Huang, Shu Cheng, Zixin Deng, David W Christianson, Ikuro Abe, Tiangang Liu
ABSTRACT

Catalytic versatility is an inherent property of many enzymes. In nature, terpene cyclases comprise the foundation of molecular biodiversity as they generate diverse hydrocarbon scaffolds found in thousands of terpenoid natural products. Here, we report that the catalytic activity of the terpene cyclases AaTPS and FgGS can be switched from cyclase to aromatic prenyltransferase at basic pH to generate prenylindoles. The crystal structures of AaTPS and FgGS provide insights into the catalytic mechanism of this cryptic function. Moreover, aromatic prenyltransferase activity discovered in other terpene cyclases indicates that this cryptic function is broadly conserved among the greater family of terpene cyclases. We suggest that this cryptic function is chemoprotective for the cell by regulating isoprenoid diphosphate concentrations so that they are maintained below toxic thresholds.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Pyrophosphate reagent, spectrophotometric assay
Sigma-Aldrich
γ,γ-Dimethylallyl pyrophosphate triammonium salt, 1 mg/mL in methanol (:aqueous 10 mM NH4OH (7:3)), ≥90% (TLC)
Sigma-Aldrich
Isopentenyl pyrophosphate triammonium salt solution, 1 mg/mL in methanol (:aqueous 10 mM NH4OH (7:3)), ≥95% (TLC)