Jia Longgang, Dong Jianzhang, Wang Ruijie, Mao Shuhong, Lu Fuping, Singh Suren, Wang Zhengxiang, Liu Xiaoguang
College of Biotechnology, Tianjin University of Science and Technology, Tianjin, 300457, China.
Department of Biotechnology & Food Technology, Faculty of Applied Sciences, Durban University of Technology, P.O. Box 1334, Durban, 4001, South Africa.
Appl Microbiol Biotechnol. 2017 Aug;101(16):6409-6418. doi: 10.1007/s00253-017-8377-3. Epub 2017 Jun 29.
Penicillium raistrickii ATCC 10490 is used for the commercial preparation of 15α-13-methy-estr-4-ene-3,17-dione, a key intermediate in the synthesis of gestodene, which is a major component of third-generation contraceptive pills. Although it was previously shown that a cytochrome P450 enzyme in P. raistrickii is involved in steroid 15α-hydroxylation, the gene encoding the steroid 15α-hydroxylase remained unknown. In this study, we report the cloning and characterization of the 15α-hydroxylase gene from P. raistrickii ATCC 10490 by combining transcriptomic profiling with functional heterologous expression in Saccharomyces cerevisiae. The full-length open reading frame (ORF) of the 15α-hydroxylase gene P450pra is 1563 bp and predicted to encode a cytochrome P450 protein of 520 amino acids. Targeted gene deletion revealed that P450pra is solely responsible for 15α-hydroxylation activity on 13-methy-estr-4-ene-3,17-dione in P. raistrickii ATCC 10490. The identification of the 15α-hydroxylase gene from P. raistrickii should help elucidate the molecular basis of regio- and stereo-specificity of steroid 15α-hydroxylation and aid in the engineering of more efficient industrial strains for useful steroid 15α-hydroxylation reactions.
赖氏青霉ATCC 10490用于商业制备15α-13-甲基-雌甾-4-烯-3,17-二酮,它是孕二烯酮合成中的关键中间体,而孕二烯酮是第三代避孕药的主要成分。尽管此前已表明赖氏青霉中的一种细胞色素P450酶参与甾体15α-羟基化反应,但编码该甾体15α-羟化酶的基因仍不清楚。在本研究中,我们通过将转录组分析与在酿酒酵母中的功能性异源表达相结合,报道了从赖氏青霉ATCC 10490中克隆和鉴定15α-羟化酶基因的过程。15α-羟化酶基因P450pra的全长开放阅读框(ORF)为1563 bp,预计编码一个由520个氨基酸组成的细胞色素P450蛋白。靶向基因缺失显示,P450pra是赖氏青霉ATCC 10490中对13-甲基-雌甾-4-烯-3,17-二酮进行15α-羟基化活性的唯一原因。从赖氏青霉中鉴定出15α-羟化酶基因,应有助于阐明甾体15α-羟基化区域和立体特异性的分子基础,并有助于构建更高效的工业菌株,用于有用的甾体15α-羟基化反应。