He Peng, Li Hui, Sun Jin, Zhang Xiaomei, Gong Jinsong, Shi Jinsong, Xu Zhenghong
School of Pharmaceutical Sciences, Jiangnan University, Wuxi 214122, PR China.
School of Pharmaceutical Sciences, Jiangnan University, Wuxi 214122, PR China.
J Steroid Biochem Mol Biol. 2022 Jun;220:106096. doi: 10.1016/j.jsbmb.2022.106096. Epub 2022 Mar 14.
Microbial hydroxylation reaction has greatly enriched the number of steroids and created many meaningful new compounds. The dihydroxylation of dehydroepiandrosterone (DHEA) by filamentous fungi produces an important product 3β,7α,15α-trihydroxy-5-androstene-17-one (7α,15α-diOH-DHEA), which can be used as a key intermediate for the synthesis of contraceptive drospirenone. The introduction of microbial hydroxylation reaction reduces the traditional chemical synthesis process by 4 steps and greatly improves the productivity and economic efficiency. Colletotrichum lini is an industrial strain producing 7α,15α-diOH-DHEA, but the related cytochrome P450 that plays hydroxylation effect has not yet been discovered. In this work, a combination of quantitative proteomics, qRT-PCR, and functional expression in Pichia pastoris was used to identify highly induced steroid hydroxylase from Colletotrichum lini ST-1. A novel fungal cytochrome P450 monooxygenase CYP68JX was identified. The biotransformation in recombinant yeast confirmed that the cytochrome P450 has steroid C7α and C15α hydroxylase activities. The hydroxylation of DHEA by CYP68JX is an ordered reaction, proceeding from the C7 to the C15 site of the steroidal nucleus. The cloning and identification of the CYP68JX gene provide useful information for deepening the understanding regarding the structural basis of its regional and stereoselectivity.
微生物羟基化反应极大地丰富了甾体化合物的种类,并产生了许多有意义的新化合物。丝状真菌对脱氢表雄酮(DHEA)进行二羟基化反应可生成重要产物3β,7α,15α-三羟基-5-雄烯-17-酮(7α,15α-二羟基-DHEA),该产物可作为合成避孕药屈螺酮的关键中间体。微生物羟基化反应的引入使传统化学合成过程减少了4步,大大提高了生产效率和经济效益。亚麻炭疽菌是一种生产7α,15α-二羟基-DHEA的工业菌株,但尚未发现起羟基化作用的相关细胞色素P450。在这项工作中,采用定量蛋白质组学、qRT-PCR以及在毕赤酵母中的功能表达相结合的方法,从亚麻炭疽菌ST-1中鉴定出高度诱导的甾体羟化酶。鉴定出一种新型真菌细胞色素P450单加氧酶CYP68JX。重组酵母中的生物转化证实该细胞色素P450具有甾体C7α和C15α羟化酶活性。CYP68JX对DHEA的羟基化反应是一个有序反应,从甾体核的C7位点到C15位点进行。CYP68JX基因的克隆和鉴定为深入了解其区域和立体选择性的结构基础提供了有用信息。