Emmerstorfer Anita, Wimmer-Teubenbacher Miriam, Wriessnegger Tamara, Leitner Erich, Müller Monika, Kaluzna Iwona, Schürmann Martin, Mink Daniel, Zellnig Günther, Schwab Helmut, Pichler Harald
ACIB-Austrian Centre of Industrial Biotechnology, Graz, Austria.
Biotechnol J. 2015 Apr;10(4):623-35. doi: 10.1002/biot.201400780. Epub 2015 Feb 23.
Membrane-anchored cytochrome P450 enzymes (CYPs) are a versatile and interesting class of enzymes for industrial applications, as they are capable of regio- and stereoselectively hydroxylating hydrophobic molecules. However, CYP activity requires sufficient levels of suitable cytochrome P450 reductases (CPRs) for regeneration of catalytic capacity, which is a bottleneck in many industrial applications. Searching for positive effectors of membrane-anchored CYP/CPR function, we transformed and screened selected strains from a Saccharomyces cerevisiae knockout collection for Hyoscyamus muticus premnaspirodiene oxygenase (HPO; CYP) and Arabidopsis thaliana CPR (AtCPR) expression levels, as well as for activity towards (+)-valencene. We found that in cells lacking the type III membrane protein Ice2p, AtCPR was destabilized. Remarkably, over-expression of ICE2 improved (+)-valencene hydroxylation to trans-nootkatol by 40-50%, both in resting cells and in vivo. Time-resolved immunoblot analysis and cytochrome c reductase activity assays revealed that Ice2 up-regulation stabilized AtCPR levels and activity over extended periods of bioconversion. To underscore that we had identified a novel positive effector of recombinant CYP/CPR function, we confirmed the beneficial effect of ICE2 over-expression for two further CYP/CPR combinations and the alternative host Pichia pastoris. Thus, we propose Ice2 up-regulation as a general tool for improving the applications of recombinant CYPs in yeasts.
膜锚定细胞色素P450酶(CYPs)是一类在工业应用中用途广泛且有趣的酶,因为它们能够对疏水分子进行区域和立体选择性羟基化。然而,CYP活性需要足够水平的合适细胞色素P450还原酶(CPRs)来再生催化能力,这在许多工业应用中是一个瓶颈。为了寻找膜锚定CYP/CPR功能的正效应物,我们从酿酒酵母基因敲除文库中转化并筛选了特定菌株,以检测天仙子垂丝茄前马螺二烯氧化酶(HPO;CYP)和拟南芥CPR(AtCPR)的表达水平,以及对(+)-瓦伦烯的活性。我们发现,在缺乏III型膜蛋白Ice2p的细胞中,AtCPR不稳定。值得注意的是,ICE2的过表达使静止细胞和体内的(+)-瓦伦烯羟基化生成反式诺卡酮的效率提高了40-50%。时间分辨免疫印迹分析和细胞色素c还原酶活性测定表明,在延长的生物转化过程中,Ice2的上调稳定了AtCPR的水平和活性。为了强调我们已经鉴定出一种重组CYP/CPR功能的新型正效应物,我们证实了ICE2过表达对另外两种CYP/CPR组合以及替代宿主巴斯德毕赤酵母的有益作用。因此,我们提出上调Ice2作为改善重组CYPs在酵母中应用的通用工具。