Institut für Pharmazeutische Wissenschaften, Albert-Ludwigs-Universität Freiburg, Albertstrasse 25, 79104, Freiburg, Germany.
Donald Danforth Plant Science Center, 975 N. Warson Road, St. Louis, MO, 63132, USA.
Chembiochem. 2018 Sep 4;19(17):1849-1852. doi: 10.1002/cbic.201800291. Epub 2018 Aug 7.
Numerous short-chain dehydrogenases/reductases (SDRs) have found biocatalytic applications in C=O and C=C (enone) reduction. For NADPH-dependent C=N reduction, imine reductases (IREDs) have primarily been investigated for extension of the substrate range. Here, we show that SDRs are also suitable for a broad range of imine reductions. The SDR noroxomaritidine reductase (NR) is involved in Amaryllidaceae alkaloid biosynthesis, serving as an enone reductase. We have characterized NR by using a set of typical imine substrates and established that the enzyme is active with all four tested imine compounds (up to 99 % conversion, up to 92 % ee). Remarkably, NR reduced two keto compounds as well, thus highlighting this enzyme family's versatility. Using NR as a template, we have identified an as yet unexplored SDR from the Amaryllidacea Zephyranthes treatiae with imine-reducing activity (≤95 % ee). Our results encourage the future characterization of SDR family members as a means of discovering new imine-reducing enzymes.
许多短链脱氢酶/还原酶(SDR)在 C=O 和 C=C(烯酮)还原中找到了生物催化应用。对于依赖 NADPH 的 C=N 还原,亚胺还原酶(IRED)主要被用于扩展底物范围。在这里,我们表明 SDR 也适用于广泛的亚胺还原。SDR noroxomaritidine reductase(NR)参与石蒜科生物碱的生物合成,作为烯酮还原酶。我们使用一组典型的亚胺底物对 NR 进行了表征,并确定该酶对所有四种测试的亚胺化合物均具有活性(转化率高达 99%,ee 值高达 92%)。值得注意的是,NR 还还原了两种酮化合物,从而突出了该酶家族的多功能性。使用 NR 作为模板,我们从石蒜科葱属植物中鉴定出了一种具有亚胺还原活性的(≤95%ee)尚未被探索的 SDR。我们的结果鼓励对 SDR 家族成员进行未来的表征,作为发现新的亚胺还原酶的一种手段。