首页> 美国卫生研究院文献>Frontiers in Plant Science >Germacrene A synthase in yarrow (Achillea millefolium) is an enzyme with mixed substrate specificity: gene cloning functional characterization and expression analysis
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Germacrene A synthase in yarrow (Achillea millefolium) is an enzyme with mixed substrate specificity: gene cloning functional characterization and expression analysis

机译:草中的Germacrene A合酶(Achillea millefolium)是一种具有混合底物特异性的酶:基因克隆功能表征和表达分析

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摘要

Terpenoid synthases constitute a highly diverse gene family producing a wide range of cyclic and acyclic molecules consisting of isoprene (C5) residues. Often a single terpene synthase produces a spectrum of molecules of given chain length, but some terpene synthases can use multiple substrates, producing products of different chain length. Only a few such enzymes has been characterized, but the capacity for multiple-substrate use can be more widespread than previously thought. Here we focused on germacrene A synthase (GAS) that is a key cytosolic enzyme in the sesquiterpene lactone biosynthesis pathway in the important medicinal plant Achillea millefolium (AmGAS). The full length encoding gene was heterologously expressed in Escherichia coli BL21 (DE3), functionally characterized, and its in vivo expression was analyzed. The recombinant protein catalyzed formation of germacrene A with the C15 substrate farnesyl diphosphate (FDP), while acyclic monoterpenes were formed with the C10 substrate geranyl diphosphate (GDP) and cyclic monoterpenes with the C10 substrate neryl diphosphate (NDP). Although monoterpene synthesis has been assumed to be confined exclusively to plastids, AmGAS can potentially synthesize monoterpenes in cytosol when GDP or NDP become available. AmGAS enzyme had high homology with GAS sequences from other Asteraceae species, suggesting that multi-substrate use can be more widespread among germacrene A synthases than previously thought. Expression studies indicated that AmGAS was expressed in both autotrophic and heterotrophic plant compartments with the highest expression levels in leaves and flowers. To our knowledge, this is the first report on the cloning and characterization of germacrene A synthase coding gene in A. millefolium, and multi-substrate use of GAS enzymes.
机译:萜类合酶构成高度多样化的基因家族,产生广泛的由异戊二烯(C5)残基组成的环状和非环状分子。通常,单个萜烯合酶会产生一系列给定链长的分子,但是某些萜烯合酶可以使用多种底物,从而产生不同链长的产物。只有少数几种这样的酶已被表征,但是用于多种底物的能力比以前认为的要广泛。在这里,我们重点研究了重要的药用植物小A(Achillea millefolium,AmGAS)中倍半萜内酯生物合成途径中关键的胞质酶胚芽烯A合酶(GAS)。全长编码基因在大肠杆菌BL21(DE3)中异源表达,对其功能进行了表征,并对其体内表达进行了分析。重组蛋白催化具有C15底物法呢基二磷酸二氢呋喃酯(FDP)的胚芽甲A的形成,而无环单萜则由C10底物香叶基二磷酸二氢呋喃酯(GDP)和环状单萜与C10底物的二磷酸神经磷酸酯(NDP)形成。尽管单萜的合成被认为仅限于质体,但当获得GDP或NDP时,AmGAS可以潜在地在细胞质中合成单萜。 AmGAS酶与其他菊科物种的GAS序列具有高度同源性,这表明在多菌种A合成酶中多底物的使用比以前认为的更为广泛。表达研究表明,AmGAS在自养和异养植物区系中均有表达,在叶和花中的表达水平最高。据我们所知,这是关于千足菌中胚芽烯A合成酶编码基因的克隆和鉴定,以及GAS酶在多种底物中的应用的首次报道。

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