Isolation and Functional Characterization of CYP71AJ4 Encoding for the First P450 Monooxygenase of Angular Furanocoumarin Biosynthesis

Выделение и функциональная характеристика CYP71AJ4, кодирующего первую P450-монооксигеназу биосинтеза угловых фуранокумаринов
Bernd Schneider, Ulrich Matern, Frédéric Bourgaud, Alain Hehn, Romain Larbat, Joachim Hans, Sarah Schneider, Hélène Jugdé
2008-12-21

CYP71AJ4P450 monooxygenaseangelicin synthaseangular furanocoumarin biosynthesissyn-elimination
The biosynthesis of linear and angular furanocoumarins is still poorly understood at the molecular level, with only psoralen synthase (CYP71AJ1) identified from Ammi majus. Using cDNA probes inferred from CYP71AJ1, three orthologs were isolated from Apium graveolens (CYP71AJ2) and Pastinaca sativa (CYP71AJ3 and -4) and functionally expressed in yeast cells. CYP71AJ2 and CYP71AJ3 displayed psoralen synthase activity, whereas CYP71AJ4 only catalyzed the conversion of (+)-columbianetin to angelicin and negligible amounts of a hydroxylated columbianetin by-product. CYP71AJ4 thus constitutes the first fully characterized P450 monooxygenase specific for the angular furanocoumarin pathway. The angelicin synthase exhibited an apparent K(m) of 2.1 +/- 0.4 microm for (+)-columbianetin and a k(cat) of 112 +/- 14 min(-1). Moreover, the use of 3'-deuterated (+)-columbianetin as substrate led to an almost complete "metabolic switch," resulting in the synthesis of anti-3'-hydroxy-3'-deuterated(+)-columbianetin. This confirms that angelicin synthase attacks columbianetin by syn-elimination of hydrogen from C-3'. Sequence comparison between psoralen synthase (CYP71AJ3) and angelicin synthase (CYP71AJ4) showed 70% identity, whereas the identity dropped to 40% in those regions thought to provide the substrate recognition sites. Accordingly, CYP71AJ3 and CYP71AJ4 might be derived from a common ancestor of unknown functionality by gene duplication and subsequent molecular evolution.
1
CYP71AJ2 and CYP71AJ3 catalyzed psoralen formation, whereas CYP71AJ4 specifically converted (+)-columbianetin into angelicin.
2
CYP71AJ3 and CYP71AJ4 share 70% sequence identity overall but only 40% identity in putative substrate-recognition regions, consistent with divergence after gene duplication.
3
CYP71AJ4 is the first fully characterized P450 monooxygenase dedicated to angular furanocoumarin biosynthesis and exhibited a Km of 2.1 ± 0.4 μM and a kcat of 112 ± 14 min−1.
4
Three CYP71AJ orthologs were isolated from celery and parsnip and functionally expressed in yeast, expanding characterized furanocoumarin biosynthesis enzymes.
5
Using 3′-deuterated (+)-columbianetin caused an almost complete metabolic switch to anti-3′-hydroxy-3′-deuterated product, supporting syn-elimination of hydrogen from C-3′.

CYP71AJ4 (angelicin synthase), a P450 monooxygenase involved in angular furanocoumarin biosynthesis

The catalytic specificity and reaction mechanism of CYP71AJ4, including conversion of (+)-columbianetin to angelicin and syn-elimination at C-3′

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2008-12-21
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Bernd Schneider
Ulrich Matern
Frédéric Bourgaud
Alain Hehn
Romain Larbat
Joachim Hans
Sarah Schneider
Hélène Jugdé
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