Arneaud Sonja L B, Porter John R
Department of Biological Sciences, University of the Sciences, 600 South 43rd Street, Philadelphia, PA, 19104, USA.
Mol Biotechnol. 2015 Dec;57(11-12):961-73. doi: 10.1007/s12033-015-9888-8.
Podophyllotoxin (PPT) is a plant natural product that serves as a precursor for the synthesis of many well-known chemotherapeutic drugs. The limited availability and high demand for the source plants of PPT have led to the exploration of alternative sources for this compound. In this study, we utilized the endophytic fungus Phialocephala podophylli (strain PPE7) that we isolated from the rhizomes of Podophyllum peltatum and is known to produce detectable amounts of PPT in broth culture. To date, the complete PPT biosynthetic pathway has yet to be determined in any species. Since fungi are well known for clustering genes that belong to secondary metabolite pathways, use of a fungal system for investigation of the PPT biosynthesis genes may ultimately lead to elucidation of the entire pathway. In this study, we investigated the secoisolariciresinol dehydrogenase (SD) gene that facilitates the dehydrogenation of secoisolariciresinol to form matairesinol, a mid-pathway intermediate product in PPT biosynthesis. We utilized PCR amplification to acquire the complete SD gene sequence in PPE7 and opted to synthesize the P. peltatum SD sequence for expression. Through western blotting, we confirmed the expression of the recombinant SD (PpSD) and verified protein functionality with a bioconversion assay followed by HPLC and LC-MS analyses. Here, we report the identification of the SD gene in PPE7; this is the first report of the SD gene in an endophytic fungus. Additionally, we established the groundwork for the future expression of the complete PPT biosynthetic pathway in the heterologous host Pichia pastoris.
鬼臼毒素(PPT)是一种植物天然产物,是许多知名化疗药物合成的前体。PPT来源植物的有限供应和高需求促使人们探索该化合物的替代来源。在本研究中,我们利用了从盾叶鬼臼根茎中分离出的内生真菌Podophyllotoxin podophylli(菌株PPE7),已知该真菌在肉汤培养中能产生可检测量的PPT。迄今为止,任何物种中完整的PPT生物合成途径尚未确定。由于真菌以聚集属于次生代谢物途径的基因而闻名,利用真菌系统研究PPT生物合成基因最终可能有助于阐明整个途径。在本研究中,我们研究了松柏醇脱氢酶(SD)基因,该基因促进松柏醇脱氢形成罗汉松脂醇,罗汉松脂醇是PPT生物合成中的一种中间途径中间产物。我们利用PCR扩增获得了PPE7中完整的SD基因序列,并选择合成盾叶鬼臼SD序列进行表达。通过蛋白质印迹法,我们证实了重组SD(PpSD)的表达,并通过生物转化试验,随后进行HPLC和LC-MS分析验证了蛋白质功能。在此,我们报告了在PPE7中鉴定出SD基因;这是内生真菌中SD基因的首次报道。此外,我们为未来在异源宿主毕赤酵母中表达完整的PPT生物合成途径奠定了基础。