LaFever R E, Vogel B S, Croteau R
Institute of Biological Chemistry, Washington State University, Pullman 99164-6340.
Arch Biochem Biophys. 1994 Aug 15;313(1):139-49. doi: 10.1006/abbi.1994.1370.
Abietic acid is a major component of the rosin fraction of oleoresin synthesized by conifer species, such as grand fir (Abies grandis) and lodgepole pine (Pinus contorta), as a defensive secretion against insect and pathogen attack. This diterpenoid resin acid is derived from geranylgeranyl pyrophosphate by conversion to abietadiene and sequential oxidation of the C18-methyl group of the precursor olefin to a carboxyl function. Resin acid biosynthesis is constitutively expressed at high levels in lodgepole pine stem and is induced to these levels by stem wounding in grand fir. Soluble enzyme extracts of lodgepole pine stem and of mechanically wounded grand fir stem catalyzed the divalent metal ion-dependent cyclization of [1-3H]geranylgeranyl pyrophosphate to (-)-abieta-7(8),13(14)-diene. The wound-inducible enzyme was partially purified and identified as an 80-kDa protein with general characteristics typical of those of other terpenoid cyclases. Although the enzymatic cyclization sequence almost certainly involves the formation of copalyl pyrophosphate and a pimaradiene as stable intermediates, no evidence for the separation of the corresponding partial activities was obtained. A pathway involving the production of various pimaradiene and abietadiene isomers is proposed to account for the origin of several common resin acids.
枞酸是针叶树如大冷杉(Abies grandis)和扭叶松(Pinus contorta)合成的含油树脂中松香部分的主要成分,作为一种针对昆虫和病原体攻击的防御性分泌物。这种二萜树脂酸由香叶基香叶基焦磷酸转化为枞二烯,并将前体烯烃的C18 - 甲基依次氧化为羧基官能团衍生而来。树脂酸生物合成在扭叶松茎中持续高水平表达,在大冷杉中则通过茎部创伤诱导至这些水平。扭叶松茎和机械创伤的大冷杉茎的可溶性酶提取物催化了[1 - 3H]香叶基香叶基焦磷酸的二价金属离子依赖性环化反应生成(-)-枞-7(8),13(14)-二烯。这种创伤诱导酶经过部分纯化,鉴定为一种80 kDa的蛋白质,具有其他萜类环化酶典型的一般特征。尽管酶促环化序列几乎肯定涉及到枞酸焦磷酸酯和海松二烯作为稳定中间体的形成,但未获得相应部分活性分离的证据。提出了一条涉及各种海松二烯和枞二烯异构体产生的途径来解释几种常见树脂酸的起源。