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蒎烯环化酶I和II。来自鼠尾草(药用鼠尾草)的两种酶,它们催化焦磷酸香叶酯立体定向环化生成构型相反的单萜烯烃。

Pinene cyclases I and II. Two enzymes from sage (Salvia officinalis) which catalyze stereospecific cyclizations of geranyl pyrophosphate to monoterpene olefins of opposite configuration.

作者信息

Gambliel H, Croteau R

出版信息

J Biol Chem. 1984 Jan 25;259(2):740-8.

PMID:6693393
Abstract

A soluble enzyme preparation from immature sage (Salvia officinalis) leaves has been shown to catalyze the cation-dependent cyclization of geranyl pyrophosphate to the isomeric monoterpene olefins (+/-)-alpha-pinene and (-)-beta-pinene and to lesser amounts of camphene and limonene (Gambliel, H., and Croteau, R. (1982) J. Biol. Chem. 257, 2335-2342). This preparation was fractionated by gel filtration on Sephadex G-150 to afford two regions of enzymic activity termed geranyl pyrophosphate:pinene cyclase I (Mr approximately equal to 96,000), which catalyzed the conversion of geranyl pyrophosphate to the bicyclic olefin (+)-alpha-pinene, and to smaller quantities of the rearranged olefin (+)-camphene and the monocyclic olefin (+)-limonene, and geranyl pyrophosphate:pinene cyclase II (Mr approximately equal to 55,000), which transformed the acyclic precursor to (-)-alpha-pinene and (-)-beta-pinene, as well as to (-)-camphene, (-)-limonene, and the acyclic olefin myrcene. The multiple olefin biosynthetic activities co-purified with pinene cyclase I on four subsequent chromatographic and electrophoretic steps, and the ability to cyclize geranyl pyrophosphate and the related allylic pyrophosphates neryl pyrophosphate and linalyl pyrophosphate was likewise coincident throughout purification. Fractionation of pinene cyclase II by an identical sequence showed that the activities for the synthesis of the stereochemically related (-)-olefins co-purified, as did the ability to utilize the three acyclic precursors. The general properties of cyclase I and cyclase II were determined, and a scheme for the biosynthesis of the pinenes and related monoterpene olefins was proposed.

摘要

已证明从未成熟的鼠尾草(Salvia officinalis)叶片中提取的一种可溶性酶制剂可催化焦磷酸香叶酯阳离子依赖性环化生成异构体单萜烯烃(±)-α-蒎烯和(-)-β-蒎烯,以及少量的莰烯和柠檬烯(甘布利尔,H.,和克罗托,R.(1982年)《生物化学杂志》257,2335 - 2342)。该制剂通过在葡聚糖G - 150上进行凝胶过滤分级分离,得到两个具有酶活性的区域,分别称为焦磷酸香叶酯:蒎烯环化酶I(分子量约为96,000),它催化焦磷酸香叶酯转化为双环烯烃(+)-α-蒎烯,以及少量重排烯烃(+)-莰烯和单环烯烃(+)-柠檬烯;还有焦磷酸香叶酯:蒎烯环化酶II(分子量约为55,000),它将无环前体转化为(-)-α-蒎烯和(-)-β-蒎烯,以及(-)-莰烯、(-)-柠檬烯和无环烯烃月桂烯。在随后的四个色谱和电泳步骤中,多种烯烃生物合成活性与蒎烯环化酶I共纯化,并且在整个纯化过程中,环化焦磷酸香叶酯以及相关烯丙基焦磷酸酯(焦磷酸橙花酯和芳樟基焦磷酸酯)的能力同样一致。通过相同的序列对蒎烯环化酶II进行分级分离表明,合成立体化学相关(-)-烯烃的活性共纯化,利用三种无环前体的能力也是如此。确定了环化酶I和环化酶II的一般性质,并提出了蒎烯和相关单萜烯烃的生物合成方案。

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