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Identification of enzymes responsible for the reduction of geraniol to citronellol

机译:鉴定负责将香叶醇还原为香茅醇的酶

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The reduction of geraniol to citronellol is the first step for the synthesis of natural phytol in the production of tocopherols and natural vitamin K. Baker’s yeast was used in the bioreduction described above as a whole-cell biocatalyst. However, the enzyme responsible for the reduction of geraniol to citronellol is not yet known. Four old yellow enzyme (OYE) genes were cloned from yeast and plants, and expressed in Escherichia coli for a high level of recombinant proteins. The recombinant protein displayed a catalytic activity of converting geraniol to citronellol as a sole product verified by GC-MS analyses. The recombinant OYE2 intact cells were found to show 3.7 and 1.9-fold higher activity than that of yeast cells and the recombinant crude extracts, respectively. Compared to the recombinant fusion enzyme, the entrokinase-cleaved enzyme displayed nearly identical activity for geraniol reduction. To our knowledge, this is the first enzyme identified to catalyze the formation of citronellol from geraniol by reducing the allylic alcohol double bond, which is normally known as inactivating group for the old yellow enzymes.
机译:将香叶醇还原为香茅醇是生产生育酚和天然维生素K的过程中合成天然植物醇的第一步。贝克酵母在上述生物还原中用作全细胞生物催化剂。然而,尚不清楚负责将香叶醇还原为香茅醇的酶。从酵母和植物中克隆了四个旧的黄色酶(OYE)基因,并在大肠杆菌中表达了高水平的重组蛋白。重组蛋白显示出将香叶醇转化为香茅醇作为唯一产物的催化活性,通过GC-MS分析证实。发现重组的完整的YEE2细胞分别比酵母细胞和重组的粗提物具有3.7和1.9倍的活性。与重组融合酶相比,内切激酶切割的酶对香叶醇的还原作用几乎相同。据我们所知,这是第一个通过还原烯丙基醇双键而催化从香叶醇形成香茅醇的酶,该酶通常被称为旧黄色酶的失活基团。

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