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Characterization of 12-Oxophytodienoic Acid Reductases from Rose-scented Geranium (Pelargonium graveolens)

机译:玫瑰香天竺葵(香叶天竺葵)中12-氧代乙二酸还原酶的表征

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摘要

Pelargonium graveolens L'Her, also referred to as rose geranium, is a popular herbal plant with typical rosy fragrance largely based on the blend of monoterpenoid constituents. Among them, citronellol, which is biosynthesized from geraniol via double bond reduction, is the most abundant scent compound. In this study, three 12-oxophytodienoic acid reductases (PgOPR1-3) have been cloned from P. graveolens, as possible candidates for the double-bond reductase involved in citronellol biosynthesis. The bacterially expressed recombinant PgOPRs did not reduce geraniol to citronellol, but stereoselectively converted citral into (S)-citronellal in the presence of NADPH. Thus, the alpha,beta-unsaturated carbonyl moiety in the substrate is essential for the catalytic activity of PgOPRs, as reported for OPRs from other plants and structurally related yeast old yellow enzymes. PgOPRs promiscuously accepted linear and cyclic alpha,beta-unsaturated carbonyl substrates, including methacrolein, a typical reactive carbonyl compound. The possible biotechnological applications for PgOPRs in plant metabolic engineering, based on their catalytic properties, are discussed herein.
机译:香叶天竺葵L'Her,也称为玫瑰天竺葵,是一种流行的草药植物,具有典型的玫瑰色香味,主要基于单萜类成分的混合。其中,香茅醇是香气中含量最多的化合物,它是通过香叶醇通过双键还原反应而生物合成的。在这项研究中,已从graveolenens克隆了三个12-氧代乙二酸还原酶(PgOPR1-3),作为香茅醇生物合成中涉及的双键还原酶的可能候选物。细菌表达的重组PgOPR不会将香叶醇还原为香茅醇,而是在NADPH存在下将柠檬醛立体选择性地转化为(S)-香茅醛。因此,底物中的α,β-不饱和羰基部分对于PgOPRs的催化活性是必不可少的,如来自其他植物和结构相关的酵母老黄酶的OPRs报道的那样。 PgOPR混杂地接受线性和环状的α,β-不饱和羰基底物,包括甲基丙烯醛,一种典型的活性羰基化合物。本文讨论了基于PgOPR催化特性的植物生物工程中可能的生物技术应用。

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