首页> 外文OA文献 >Metabolism of Monoterpenes: Conversion of l-Menthone to l-Menthol and d-Neomenthol by Stereospecific Dehydrogenases from Peppermint (Mentha piperita) Leaves 12
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Metabolism of Monoterpenes: Conversion of l-Menthone to l-Menthol and d-Neomenthol by Stereospecific Dehydrogenases from Peppermint (Mentha piperita) Leaves 12

机译:单萜类的代谢:薄荷叶中的立体特异性脱氢酶将L-甲酮转化为L-薄荷醇和d-新薄荷醇12

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摘要

The monoterpene ketone l-menthone is specifically converted to l-menthol and l-menthyl acetate and to d-neomenthol and d-neomenthyl-β-d-glucoside in mature peppermint (Mentha piperita L. cv. Black Mitcham) leaves. The selectivity of product formation results from compartmentation of the menthol dehydrogenase with the acetyl transferase and that of the neomenthol dehydrogenase with the glucosyl transferase. Soluble enzyme preparations, but not particulate preparations, from mature peppermint leaves catalyzed the NADPH-dependent reduction of l-menthone to both epimeric alcohols, and the two dehydrogenases responsible for these stereospecific transformations were resolved by affinity chromatography on Mātrex Gel Red A. Both enzymes have a molecular weight of approximately 35,000, possess a Km for NADPH of about 2 × 10−5m, are very sensitive to inhibition by thiol-directed reagents, and are not readily reversible. The menthol dehydrogenase showed a pH optimum at 7.5, exhibited a Km for l-menthone of about 2.5 × 10−4m, and also reduced d-isomenthone to d-neoisomenthol. The neomenthol dehydrogenase showed a pH optimum at 7.6, exhibited a Km for l-menthone of about 2.2 × 10−5m, and also reduced d-isomenthone to d-isomenthol. These stereochemically distinct, but otherwise similar, enzymes are of key importance in determining the metabolic fate of menthone in peppermint, and they are probably typical of the class of dehydrogenases thought to be responsible for the metabolism of monoterpene ketones during plant development.
机译:在成熟薄荷叶(Mentha piperita L.cv.Black Mitcham)的叶子中,单萜酮1-薄荷酮被特异性地转化为1-薄荷醇和乙酸1-薄荷基酯以及d-新薄荷醇和d-新薄荷基-β-d-葡萄糖苷。产物形成的选择性来自于薄荷醇脱氢酶与乙酰转移酶的区分开和新薄荷醇脱氢酶与葡糖基转移酶的区分开。来自成熟薄荷叶的可溶性酶制剂(而非颗粒剂)催化NADPH依赖的1-薄荷酮还原为两种差向异构醇,负责这些立体特异性转化的两种脱氢酶通过在MātrexGel Red A上进行的亲和色谱分离。分子量约为35,000,NADPH的Km约为2×10-5m,对巯基定向试剂的抑制非常敏感,并且不易逆转。薄荷醇脱氢酶的最适pH值为7.5,l-薄荷酮的Km约为2.5×10-4m,并且d-异薄荷酮还原为d-新异薄荷醇。新薄荷醇脱氢酶的最适pH值为7.6,l-薄荷酮的Km约为2.2×10-5m,并且d-异薄荷酮还原为d-异薄荷醇。这些在立体化学上不同但又相似的酶对于确定薄荷中薄荷酮的代谢命运至关重要,它们可能是典型的脱氢酶类别,被认为是造成植物发育过程中单萜酮代谢的原因。

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