Ghasemi Sabrieh, Mohajeri Maryam, Habibi Zohreh
Department of Pure Chemistry, Faculty of Chemistry, Shahid Beheshti University, G.C., Tehran, Iran.
Department of Pure Chemistry, Faculty of Chemistry, Shahid Beheshti University, G.C., Tehran, Iran.
Steroids. 2014 Dec;92:7-12. doi: 10.1016/j.steroids.2014.09.002. Epub 2014 Sep 16.
The microbial transformations of testosterone and testosterone heptanoate by four fungi: Absidia griseolla var. igachii PTCC 5260, Acremonium chrysogenu PTCC 5271, Fusarium fujikuroi PTCC 5144, and Fusarium solani complex PTCC 5285 were investigated for the first time. Incubation of testosterone heptanoate with F. fujikuroi and F. solani yielded three metabolites, which were isolated and characterized as testosterone, androst-4-ene-3,17-dione, and 6β-hydroxy testosterone. 6β-Hydroxy testosterone was the major metabolite obtained from testosterone heptanoate biotransformation by two fungal species. A. griseolla and A. chrysogenu produced 14α-hydroxy testosterone as major metabolite, together with testosterone and 6β-hydroxy testosterone in lower yields. The biotransformation of testosterone by F. fujikuroi and A. griseolla was also investigated in order to examine the influence of the ester group on the course of transformation. Androst-4-ene-3,17-dione was only identified in the biotransformation of testosterone by F. fujikuroi. The same product was observed in incubation of testosterone by A. griseolla, together with 14α-hydroxy testosterone in very low yield. Furthermore, time course study was also carried out in order to examine the formation of metabolites as a function of time, which was determined by HPLC. The structures of compounds were determined by their comprehensive spectroscopic analysis and comparison with literature data.
灰褐犁头霉伊加奇变种PTCC 5260、产黄顶孢霉PTCC 5271、藤仓镰孢菌PTCC 5144和茄病镰刀菌复合体PTCC 5285对睾酮和庚酸睾酮的微生物转化。将庚酸睾酮与藤仓镰孢菌和茄病镰刀菌一起培养产生了三种代谢产物,这些代谢产物被分离并鉴定为睾酮、雄甾-4-烯-3,17-二酮和6β-羟基睾酮。6β-羟基睾酮是两种真菌对庚酸睾酮进行生物转化获得的主要代谢产物。灰褐犁头霉和产黄顶孢霉产生的主要代谢产物是14α-羟基睾酮,同时还产生了产量较低的睾酮和6β-羟基睾酮。还研究了藤仓镰孢菌和灰褐犁头霉对睾酮的生物转化,以考察酯基对转化过程的影响。仅在藤仓镰孢菌对睾酮的生物转化中鉴定出雄甾-4-烯-3,17-二酮。在灰褐犁头霉对睾酮的培养中也观察到了相同的产物,同时还产生了极低产量的14α-羟基睾酮。此外,还进行了时间进程研究,以考察代谢产物的形成随时间的变化情况,这是通过高效液相色谱法测定的。化合物的结构通过其综合光谱分析并与文献数据进行比较来确定。