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功能鉴定缬草烯-1,10-二烯合酶,一种萜烯合酶,催化缬草属植物中生物活性倍半萜生物合成中的独特化学级联反应。

Functional identification of valerena-1,10-diene synthase, a terpene synthase catalyzing a unique chemical cascade in the biosynthesis of biologically active sesquiterpenes in Valeriana officinalis.

机构信息

Plant Biology Program, University of Kentucky, Lexington, Kentucky 40503, USA.

出版信息

J Biol Chem. 2013 Feb 1;288(5):3163-73. doi: 10.1074/jbc.M112.415836. Epub 2012 Dec 14.

Abstract

Valerian is an herbal preparation from the roots of Valeriana officinalis used as an anxiolytic and sedative and in the treatment of insomnia. The biological activities of valerian are attributed to valerenic acid and its putative biosynthetic precursor valerenadiene, sesquiterpenes, found in V. officinalis roots. These sesquiterpenes retain an isobutenyl side chain whose origin has been long recognized as enigmatic because a chemical rationalization for their biosynthesis has not been obvious. Using recently developed metabolomic and transcriptomic resources, we identified seven V. officinalis terpene synthase genes (VoTPSs), two that were functionally characterized as monoterpene synthases and three that preferred farnesyl diphosphate, the substrate for sesquiterpene synthases. The reaction products for two of the sesquiterpene synthases exhibiting root-specific expression were characterized by a combination of GC-MS and NMR in comparison to the terpenes accumulating in planta. VoTPS7 encodes for a synthase that biosynthesizes predominately germacrene C, whereas VoTPS1 catalyzes the conversion of farnesyl diphosphate to valerena-1,10-diene. Using a yeast expression system, specific labeled [(13)C]acetate, and NMR, we investigated the catalytic mechanism for VoTPS1 and provide evidence for the involvement of a caryophyllenyl carbocation, a cyclobutyl intermediate, in the biosynthesis of valerena-1,10-diene. We suggest a similar mechanism for the biosynthesis of several other biologically related isobutenyl-containing sesquiterpenes.

摘要

缬草是一种从缬草根中提取的草药制剂,用作抗焦虑药和镇静剂,并用于治疗失眠。缬草的生物活性归因于缬草酸及其假定的生物合成前体缬烯二烯,它们存在于缬草根中。这些倍半萜保留了异丁烯侧链,其来源长期以来一直被认为是神秘的,因为它们的生物合成没有明显的化学合理化。使用最近开发的代谢组学和转录组学资源,我们鉴定了七种缬草根萜烯合酶基因(VoTPSs),其中两种被功能表征为单萜合酶,三种偏爱法呢基二磷酸,这是倍半萜合酶的底物。两种具有根特异性表达的倍半萜合酶的反应产物通过 GC-MS 和 NMR 与在植物中积累的萜烯进行了比较。VoTPS7 编码合成主要为大根香叶烯 C 的合酶,而 VoTPS1 催化法呢基二磷酸转化为缬烯-1,10-二烯。我们使用酵母表达系统、特定标记的 [(13)C]乙酸盐和 NMR 研究了 VoTPS1 的催化机制,并提供了涉及 Caryophyllenyl carbocation 和环丁基中间体参与缬烯-1,10-二烯生物合成的证据。我们建议类似的机制适用于几种其他具有生物相关性的含异丁烯侧链的倍半萜的生物合成。

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