首页> 外文期刊>Archives of Biochemistry and Biophysics >Monoterpene double-bond reductases of the (-)-menthol biosynthetic pathway: isolation and characterization of cDNAs encoding (-)-isopiperitenone reductase and (+)-pulegone reductase of peppermint
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Monoterpene double-bond reductases of the (-)-menthol biosynthetic pathway: isolation and characterization of cDNAs encoding (-)-isopiperitenone reductase and (+)-pulegone reductase of peppermint

机译:(-)-薄荷醇生物合成途径的单萜双键还原酶:分离和表征编码薄荷的(-)-异哌啶酮还原酶和(+)-普勒高酮还原酶的cDNA

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Random sequencing of a peppermint essential oil gland secretory cell cDNA library revealed a large number of clones that specified redox-type enzymes. Full-length acquisitions of each type were screened by functional expression in Escherichia coli using a newly developed in situ assay. cDNA clones encoding the monoterpene double-bond reductases (-)-isopiperitenone reductase and (+)-pulegone reductase were isolated, representing two central steps in the biosynthesis of (-)-menthol, the principal component of peppermint essential oil, and the first reductase genes of terpenoid metabolism to be described. The (-)-isopiperitenone reductase cDNA has an open reading frame of 942 nucleotides that encodes a 314 residue protein with a calculated molecular weight of 34,409. The recombinant reductase has an optimum pH of 5.5, and K-m values of 1.0 and 2.2 muM for (-)-isopiperitenone and NADPH, respectively, with k(cat) of 1.3 s(-1) for the formation of the product (+)-cis-isopulegone. The (+)-pulegone reductase cDNA has an open reading frame of 1026 nucleotides and encodes a 342 residue protein with a calculated molecular weight of 37,914. This recombinant reductase catalyzes the reduction of the 4(8)-double bond of (+)-pulegone to produce both (-)-menthone and (+)-isomenthone in a 55:45 ratio, has an optimum pH of 5.0, and K-m values of 2.3 and 6.9 muM for (+)-pulegone and NADPH, respectively, with kat of 1.8 s(-1). Deduced sequence comparison revealed that these two highly substrate specific double-bond reductases show less than 12% identity. (-)-Isopiperitenone reductase is a member of the short-chain dehydrogenase/reductase superfamily and (+)-pulegone reductase is a member of the medium-chain dehydrogenase/reductase superfamily, implying very different evolutionary origins in spite of the similarity in substrates utilized and reactions catalyzed. (C) 2003 Elsevier Inc. All rights reserved. [References: 58]
机译:薄荷精油腺分泌细胞cDNA文库的随机测序显示了大量克隆,这些克隆指定了氧化还原型酶。使用新开发的原位测定法通过在大肠杆菌中的功能性表达来筛选每种类型的全长捕获。分离出编码单萜双键还原酶(-)-异哌啶酮还原酶和(+)-pulegone还原酶的cDNA克隆,代表了薄荷精油主要成分(-)-薄荷醇的生物合成中的两个主要步骤,并且将描述萜类代谢的还原酶基因。 (-)-异哌啶酮还原酶cDNA具有942个核苷酸的开放阅读框,该框编码314个残基蛋白,计算的分子量为34,409。重组还原酶的最佳pH值为5.5,(-)-异哌啶酮和NADPH的Km值分别为1.0和2.2μM,形成产物(+)的k(cat)为1.3 s(-1)。 -顺式异豆蔻酮。 (+)-pulegone还原酶cDNA具有1026个核苷酸的开放阅读框,编码342个残基蛋白,计算分子量为37,914。该重组还原酶催化(+)-普勒酮的4(8)-双键还原,从而以55:45的比例生成(-)-薄荷酮和(+)-异薄荷酮,最佳pH为5.0,并且(+)-pulegone和NADPH的Km值分别为2.3和6.9μM,kat为1.8 s(-1)。推导的序列比较显示这两种高度底物特异性的双键还原酶显示少于12%的同一性。 (-)-异哌啶酮还原酶是短链脱氢酶/还原酶超家族的成员,(+)-pulegone还原酶是中链脱氢酶/还原酶超家族的成员,尽管底物相似,这暗示着非常不同的进化起源。利用并催化反应。 (C)2003 Elsevier Inc.保留所有权利。 [参考:58]

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