Hallahan D L, West J M, Wallsgrove R M, Smiley D W, Dawson G W, Pickett J A, Hamilton J G
Department of Biochemistry and Physiology, IACR Rothamsted, Harpenden, Hertfordshire, United Kingdom.
Arch Biochem Biophys. 1995 Apr 1;318(1):105-12. doi: 10.1006/abbi.1995.1210.
A soluble monoterpene primary alcohol:NADP+ oxidoreductase has been purified to apparent homogeneity from leaves of the catmint, Nepeta racemosa. The purified enzyme consisted of two polypeptides, with molecular masses of 42,000 and 40,000 Da, and contained zinc ions. A number of monoterpene alcohols (geraniol, nerol, citronellol, and their hydroxylated derivatives) were substrates, but the enzyme was inactive toward ethanol. The enzyme required NADP(H) as cofactor, with NAD(H) ineffective. Gas chromatographic and coupled mass spectrometric analysis of the reaction products showed that 10-hydroxygeraniol and 10-hydroxynerol were oxidized by the enzyme in the presence of NADP+, at both C-1 and C-10. These results are consistent with a role for this enzyme in the biosynthesis of iridoid monoterpenes.
NADP⁺氧化还原酶已从荆芥属植物总花荆芥的叶片中纯化至表观均一。纯化后的酶由两条多肽组成,分子量分别为42,000和40,000 Da,并含有锌离子。多种单萜醇(香叶醇、橙花醇、香茅醇及其羟基化衍生物)是该酶的底物,但该酶对乙醇无活性。该酶需要NADP(H)作为辅因子,NAD(H)无效。对反应产物进行气相色谱和耦合质谱分析表明,在NADP⁺存在的情况下,10 - 羟基香叶醇和10 - 羟基橙花醇在C - 1和C - 10位均被该酶氧化。这些结果与该酶在环烯醚萜单萜生物合成中的作用一致。