de Kraker J W, Franssen M C, Dalm M C, de Groot A, Bouwmeester H J
Plant Research International, P.O. Box 16, 6700 AA Wageningen, The Netherlands.
Plant Physiol. 2001 Apr;125(4):1930-40. doi: 10.1104/pp.125.4.1930.
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 elema-1,3,11(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.
菊苣(Cichorium intybus)是一种在黑暗中生长的蔬菜,其芽苗带有与愈创木烷型倍半萜内酯、桉烷型倍半萜内酯和吉马烷型倍半萜内酯相关的微苦味。这些化合物生物合成的关键步骤由(+)-吉马烯A合酶催化。内酯环的形成被假定为吉马烯衍生的倍半萜内酯生物合成的下一步。本研究通过从菊苣根中分离出能在吉马烯A异丙烯基侧链引入羧酸官能团(内酯环形成所必需)的酶活性,证实了这一假设。(+)-吉马烯A被一种细胞色素P450酶羟基化为germacra-1(10),4,11(13)-trien-12-ol,随后被NADP+依赖性脱氢酶氧化为germacra-1(10),4,11(13)-trien-12-oic酸。两种氧化的吉马烯分别被检测为它们的科普重排产物elema-1,3,11(13)-trien-12-ol和elema-1,3,11(13)-trien-12-oic酸。还观察到了germacra-1(10),4,11(13)-trien-12-ol的环化产物,即木香醇。(+)-吉马烯A羟化酶被一氧化碳抑制(蓝光可逆),最适pH为8.0,并且以适度的对映选择性羟基化β-榄香烯。