A coumarin‐specific prenyltransferase catalyzes the crucial biosynthetic reaction for furanocoumarin formation in parsley
Кумарин-специфичная пренилтрансфераза катализирует ключевую биосинтетическую реакцию образования фуранокумаринов у петрушки
2013-12-13
SCID: 54.1/ny73w4u7
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coumarin-specific prenyltransferasefuranocoumarin biosynthesislinear psoralenmetabolic engineeringumbelliferone prenylation
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Abstract (AI)
Furanocoumarins constitute a sub-family of coumarin compounds with important defense properties against pathogens and insects, as well as allelopathic functions in plants. Furanocoumarins are divided into two sub-groups according to the alignment of the furan ring with the lactone structure: linear psoralen and angular angelicin derivatives. Determination of furanocoumarin type is based on the prenylation position of the common precursor of all furanocoumarins, umbelliferone, at C6 or C8, which gives rise to the psoralen or angelicin derivatives, respectively. Here, we identified a membrane-bound prenyltransferase PcPT from parsley (Petroselinum crispum), and characterized the properties of the gene product. PcPT expression in various parsley tissues is increased by UV irradiation, with a concomitant increase in furanocoumarin production. This enzyme has strict substrate specificity towards umbelliferone and dimethylallyl diphosphate, and a strong preference for the C6 position of the prenylated product (demethylsuberosin), leading to linear furanocoumarins. The C8-prenylated derivative (osthenol) is also formed, but to a much lesser extent. The PcPT protein is targeted to the plastids in planta. Introduction of this PcPT into the coumarin-producing plant Ruta graveolens showed increased consumption of endogenous umbelliferone. Expression of PcPT and a 4-coumaroyl CoA 2'-hydroxylase gene in Nicotiana benthamiana, which does not produce furanocoumarins, resulted in formation of demethylsuberosin, indicating that furanocoumarin production may be reconstructed by a metabolic engineering approach. The results demonstrate that a single prenyltransferase, such as PcPT, opens the pathway to linear furanocoumarins in parsley, but may also catalyze the synthesis of osthenol, the first intermediate committed to the angular furanocoumarin pathway, in other plants.
Key Findings
1
Although C6 prenylation predominates, PcPT also produces the C8-prenylated osthenol, potentially linking it to angular furanocoumarin biosynthesis in other plants.
2
Co-expression of PcPT with 4-coumaroyl CoA 2'-hydroxylase in Nicotiana benthamiana produces demethylsuberosin, demonstrating reconstruction of furanocoumarin biosynthesis by metabolic engineering.
3
PcPT expression and furanocoumarin production increase coordinately after UV irradiation in parsley tissues.
4
PcPT is targeted to plastids and can consume endogenous umbelliferone when introduced into the coumarin-producing plant Ruta graveolens.
5
PcPT strongly favors umbelliferone prenylation at C6, producing demethylsuberosin and initiating linear psoralen furanocoumarin biosynthesis.
6
The parsley membrane-bound prenyltransferase PcPT specifically uses umbelliferone and dimethylallyl diphosphate as substrates.
Research Object
The parsley membrane-bound prenyltransferase PcPT and its furanocoumarin biosynthetic activity
Research Subject
PcPT substrate specificity, prenylation-site preference, subcellular targeting, and role in directing linear versus angular furanocoumarin formation
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2013-12-13
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References available in scid.ai4
CYP98A22, a phenolic ester 3’-hydroxylase specialized in the synthesis of chlorogenic acid, as a new tool for enhancing the furanocoumarin concentration in Ruta graveolens2012
MEGA5: Molecular Evolutionary Genetics Analysis Using Maximum Likelihood, Evolutionary Distance, and Maximum Parsimony Methods2011
Isolation and Functional Characterization of CYP71AJ4 Encoding for the First P450 Monooxygenase of Angular Furanocoumarin Biosynthesis2008
Molecular Cloning and Functional Characterization of Psoralen Synthase, the First Committed Monooxygenase of Furanocoumarin Biosynthesis2006