Department of Biochemistry and Molecular Biology, Facultad de CC, Biológicas, C/Jose Antonio Novais, Universidad Complutense de Madrid, Madrid, Spain.
PLoS One. 2019 Jul 26;14(7):e0220492. doi: 10.1371/journal.pone.0220492. eCollection 2019.
Rhodococcus ruber Chol-4 is a potent steroid degrader that has a great potential as a biotechnological tool. As proof of concept, this work presents testosterone production from 4-androstene-3,17-dione by tailoring innate catabolic enzymes of the steroid catabolism inside the strain. A R. ruber quadruple mutant was constructed in order to avoid the breakage of the steroid nucleus. At the same time, an inducible expression vector for this strain was developed. The 17-ketoreductase gene from the fungus Cochliobolus lunatus was cloned and overexpressed in this vector. The engineered strain was able to produce testosterone from 4-androstene-3,17-dione using glucose for cofactor regeneration with a molar conversion of 61%. It is important to note that 91% of the testosterone was secreted outside the cell after 3 days of cell biotransformation. The results support the idea that Rhodococcus ruber Chol-4 can be metabolically engineered and can be used for the production of steroid intermediates.
红色糖多孢菌 Chol-4 是一种高效的甾体降解菌,具有成为生物技术工具的巨大潜力。本研究通过对该菌固有甾体降解酶的改造,以 4-雄烯二酮为原料生产睾酮,验证了这一概念。为避免破坏甾体核,构建了红色糖多孢菌四重突变体。同时,还为该菌株开发了一种诱导表达载体。克隆并在该载体中过表达了来自真菌 Cochliobolus lunatus 的 17-酮还原酶基因。工程菌能够利用葡萄糖作为辅因子再生剂,从 4-雄烯二酮生产睾酮,摩尔转化率为 61%。值得注意的是,细胞生物转化 3 天后,91%的睾酮分泌到细胞外。这些结果支持了红色糖多孢菌 Chol-4 可以进行代谢工程改造并可用于生产甾体中间体的观点。