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单萜类化合物的代谢:从薄荷(Mentha piperita)叶片的可溶性酶制剂中对(-)薄荷醇进行乙酰化。

Metabolism of Monoterpenes: Acetylation of (-)-Menthol by a Soluble Enzyme Preparation from Peppermint (Mentha piperita) Leaves.

机构信息

Department of Agricultural Chemistry and Program in Biochemistry and Biophysics, Washington State University, Pullman, Washington 99164.

出版信息

Plant Physiol. 1978 May;61(5):737-42. doi: 10.1104/pp.61.5.737.

Abstract

The essential oil from mature leaves of flowering peppermint (Mentha piperita L.) contains up to 15% (-)-menthyl acetate, and leaf discs converted exogenous (-)-[G-(3)H]menthol into this ester in approximately 15% yield of the incorporated precursor. Leaf extracts catalyzed the acetyl coenzyme A-dependent acetylation of (-)-[G-(3)H]menthol and the product of this transacetylase reaction was identified by radiochromatographic techniques. Transacetylase activity was located mainly in the 100,000g supernatant fraction, and the preparation was partially purified by combination of Sephadex G-100 gel filtration and chromatography on O-diethylaminoethyl-cellulose. The transacetylase had a molecular weight of about 37,000 as judged by Sephadex G-150 gel filtration, and a pH optimum near 9. The apparent K(m) and velocity for (-)-menthol were 0.3 mm and 16 nmol/hr. mg of protein, respectively. The saturation curve for acetyl coenzyme A was sigmoidal, showing apparent saturation near 0.1 mm. Dithioerythritol was required for maximum activity and stability of the enzyme, and the enzyme was inhibited by thiol directed reagents such as p-hydroxymercuribenzoate. Diisopropylfluorophosphate also inhibited transacylation suggesting the involvement of a serine residue in catalysis. The transacylase was highly specific for acetyl coenzyme A; propionyl coenzyme A and butyryl coenzyme A were not nearly as efficient as acyl donors (11% and 2%, respectively). However, the enzyme was much less selective with regard to the alcohol substrate, suggesting that the nature of the acetate ester synthesized in mint is more dependent on the type of alcohol available than on the specificity of the transacetylase. This is the first report on an enzyme involved in monoterpenol acetylation in plants. A very similar enzyme, catalyzing this key reaction in the metabolism of menthol, was also isolated from the flowers of peppermint.

摘要

开花薄荷成熟叶片中的精油含有高达 15%的(-)-乙酸薄荷酯,而叶圆片将外源性(-)-[G-(3)H]薄荷醇转化为该酯,产率约为掺入前体的 15%。叶提取物催化(-)-[G-(3)H]薄荷醇与乙酰辅酶 A 的乙酰辅酶 A 依赖性乙酰化,并用放射色谱技术鉴定该转乙酰酶反应的产物。转乙酰酶活性主要位于 100,000g 上清液部分,并用 Sephadex G-100 凝胶过滤和 O-二乙氨基乙基-纤维素柱层析组合对其进行部分纯化。转乙酰酶的分子量约为 37,000,根据 Sephadex G-150 凝胶过滤判断,最适 pH 值接近 9。(-)-薄荷醇的表观 K(m)和速度分别为 0.3mm 和 16nmol/hr.mg 蛋白。乙酰辅酶 A 的饱和曲线呈 S 形,在接近 0.1mm 时显示出明显的饱和。二硫苏糖醇是酶活性和稳定性的必需物质,并且该酶被巯基定向试剂如对羟基汞苯甲酸抑制。二异丙基氟磷酸酯也抑制了转酰基反应,表明丝氨酸残基参与了催化作用。转乙酰酶对乙酰辅酶 A 具有高度特异性;丙酰辅酶 A 和丁酰辅酶 A 作为酰基供体的效率不高(分别为 11%和 2%)。然而,该酶对醇底物的选择性要低得多,这表明在薄荷中合成的乙酸酯的性质更多地取决于可用醇的类型,而不是转乙酰酶的特异性。这是第一个关于植物中单萜醇乙酰化过程中涉及的酶的报告。从薄荷花中也分离到了一种非常相似的酶,该酶催化薄荷醇代谢中的这一关键反应。

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