Kolar Norbert W, Swart Amanda C, Mason J Ian, Swart Pieter
Department of Biochemistry, University of Stellenbosch, Matieland, South Africa.
J Biotechnol. 2007 May 10;129(4):635-44. doi: 10.1016/j.jbiotec.2007.02.003. Epub 2007 Feb 14.
Human cytochrome P45017alpha (CYP17), present in mammalian adrenal and gonadal tissues, catalyses both steroid 17-hydroxylation and C17,20 lyase reactions, producing intermediates for the glucocorticoid and androgenic pathways, respectively. The characterisation of this complex enzyme was initially hampered due to low level in vivo expression of CYP17. Heterologous expression systems have contributed greatly to our current knowledge of CYP17's dual catalytic activity. However, due to the hydrophobic nature of this membrane-bound protein, primarily truncated and modified forms of CYP17 are currently being expressed heterologously. Although the N-terminally modified enzyme has been well characterised, protein structure and function studies still necessitate the expression of unmodified, wild-type CYP17. We report here the expression of a catalytically active, unmodified human CYP17 in the industrial methylotrophic yeast, Pichia pastoris. A typical P450 carbon monoxide difference spectrum, with an absorption maximum at 448nm and a substrate-induced type I spectrum were recorded using a detergent-solubilised cellular fraction containing CYP17. The expressed enzyme catalysed the conversion of progesterone to 17-hydroxyprogesterone as well as 16-hydroxyprogesterone, a product unique to human and chimpanzee CYP17. This is the first report showing the heterologous expression of a fully functional human steroidogenic cytochrome P450 enzyme in P. pastoris.
人类细胞色素P45017α(CYP17)存在于哺乳动物的肾上腺和性腺组织中,催化类固醇17-羟化反应和C17,20裂解酶反应,分别产生糖皮质激素和雄激素途径的中间体。由于CYP17在体内的表达水平较低,最初对这种复合酶的表征受到了阻碍。异源表达系统对我们目前对CYP17双重催化活性的了解有很大贡献。然而,由于这种膜结合蛋白的疏水性,目前在异源表达的主要是CYP17的截短和修饰形式。尽管N端修饰的酶已得到充分表征,但蛋白质结构和功能研究仍然需要表达未修饰的野生型CYP17。我们在此报告在工业甲基营养酵母毕赤酵母中表达具有催化活性的未修饰人类CYP17。使用含有CYP17的去污剂增溶细胞组分记录了典型的P450一氧化碳差光谱,其在448nm处有最大吸收,以及底物诱导的I型光谱。表达的酶催化孕酮转化为17-羟孕酮以及16-羟孕酮,16-羟孕酮是人类和黑猩猩CYP17特有的产物。这是首次报道在毕赤酵母中异源表达具有完全功能的人类类固醇生成细胞色素P450酶。