Biosynthesis of germacrene A carboxylic acid in chicory roots.: Demonstration of a cytochrome P450 (+)-germacrene A hydroxylase and NADP+-dependent sesquiterpenoid dehydrogenase(s) involved in sesquiterpene lactone biosynthesis

被引:73
作者
de Kraker, JW
Franssen, MCR
Dalm, MCF
de Groot, A
Bouwmeester, HJ
机构
[1] Univ Wageningen & Res Ctr, Dept Organ Chem, NL-6703 HB Wageningen, Netherlands
[2] Plant Res Int, NL-6700 AA Wageningen, Netherlands
关键词
D O I
10.1104/pp.125.4.1930
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Sprouts of chicory (Cichorium intybus), a vegetable grown in the dark, have a slightly bitter taste associated with the presence of guaianolides, eudesmanolides, and germacranolides. The committed step in the biosynthesis of these compounds is catalyzed by a (+)-germacrene A synthase. Formation of the lactone ring is the postulated next step in biosynthesis of the germacrene-derived sesquiterpene lactones. The present study confirms this hypothesis by isolation of enzyme activities from chicory roots that introduce a carboxylic acid function in the germacrene A isopropenyl side chain, which is necessary for lactone ring formation. (+)-Germacrene A is hydroxylated to germacra-1(10),4,11(13)-trien-12-ol by a cytochrome P450 enzyme, and is subsequently oxidized to germacra-1(10),4,11(13)-trien-12-oic acid by NADP(+)-dependent dehydrogenase(s). Both oxidized germacrenes were detected as their Cope-rearrangement products elema-1,3,11(13)-trien-12-ol and elema1,3,11(13)-trien-12-oic acid, respectively. The cyclization products of germacra-1(10),4,11(13)-trien-12-ol, i.e. costol, were also observed. The (+)-germacrene A hydroxylase is inhibited by carbon monoxide (blue-light reversible), has an optimum pH at 8.0, and hydroxylates beta -elemene with a modest degree of enantioselectivity.
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页码:1930 / 1940
页数:11
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