Gerhards Nina, Li Shu-Ming
Institut für Pharmazeutische Biologie und Biotechnologie, Philipps-Universität Marburg, Robert-Koch-Straße 4, D-35037 Marburg, Germany.
Org Biomol Chem. 2017 Oct 4;15(38):8059-8071. doi: 10.1039/c7ob02095c.
The blue cheese-making fungus Penicillium roqueforti produces isofumigaclavine A as the main ergot alkaloid. Recently, genome mining revealed the presence of two DNA loci bearing the genetic potential for its biosynthesis. In this study, a short-chain dehydrogenase/reductase (SDR) from one of the loci was proved to be responsible for the conversion of chanoclavine-I to its aldehyde. Furthermore, a putative gene coding for an enzyme with high homology to Old Yellow Enzymes (OYEs) involved in the ergot alkaloid biosynthesis was found outside the two clusters. Biochemical characterisation of this enzyme, named FgaOx3, showed that it can indeed catalyse the formation of festuclavine in the presence of a festuclavine synthase FgaFS, as had been observed for other OYEs in ergot alkaloid biosynthesis. Differing from other homologues, FgaOx3 does not convert chanoclavine-I aldehyde to its shunt products in the absence of FgaFS. Instead, it increases significantly the product yields of several SDRs for the conversion of chanoclavine-I to its aldehyde. Kinetic studies proved that overcoming the product inhibition is responsible for the observed enhancement. To the best of our knowledge, this is the first report on the bifunctionality of an OYE and its synergistic effect with SDRs.
用于制作蓝纹奶酪的真菌娄地青霉产生异烟曲霉毒素A作为主要的麦角生物碱。最近,基因组挖掘揭示了两个具有其生物合成遗传潜力的DNA位点。在本研究中,来自其中一个位点的短链脱氢酶/还原酶(SDR)被证明负责将棒麦角黄素-I转化为其醛类。此外,在这两个基因簇之外发现了一个推定基因,其编码的酶与参与麦角生物碱生物合成的老黄色酶(OYEs)具有高度同源性。对这种名为FgaOx3的酶进行生化特性分析表明,在存在棒麦角黄素合酶FgaFS的情况下,它确实可以催化棒麦角黄素的形成,这与在麦角生物碱生物合成中观察到的其他OYEs情况相同。与其他同源物不同,在没有FgaFS的情况下,FgaOx3不会将棒麦角黄素-I醛转化为其分流产物。相反,它显著提高了几种SDR将棒麦角黄素-I转化为其醛类的产物产量。动力学研究证明,克服产物抑制是观察到的增强作用的原因。据我们所知,这是关于OYE双功能及其与SDR协同效应的首次报道。