Svetaz Laura A, Di Liberto Melina G, Zanardi María M, Suárez Alejandra G, Zacchino Susana A
Pharmacognosy Area, School of Biochemical and Pharmaceutical Sciences, National University of Rosario, Suipacha 531, 2000 Rosario, Argentina.
Institute of Chemistry Rosario (IQUIR)-CONICET, School of Biochemical and Pharmaceutical Sciences, National University of Rosario, Suipacha 531, 2000 Rosario, Argentina.
Int J Mol Sci. 2014 Dec 1;15(12):22042-58. doi: 10.3390/ijms151222042.
Zingerone (1) and both chiral forms of zingerol (2) were obtained from dehydrozingerone (3) by biotransformation with filamentous fungi. The bioconversion of 3 with A. fumigatus, G. candidum or R. oryzae allowed the production of 1 as the sole product at 8 h and in 81%-90% at 72 h. In turn, A. flavus, A. niger, C. echinulata, M. circinelloides and P. citrinum produced 1 at 8 h, but at 72 h alcohol 2 was obtained as the major product (74%-99%). Among them, A. niger and M. circinelloides led to the anti-Prelog zingerol (R)-2 in only one step with high conversion rates and ee. Instead, C. echinulata and P. citrinum allowed to obtain (S)-2 in only one step, with high conversion rates and ee. Both chiral forms of 2 were tested for antifungal properties against a panel of clinically important fungi, showing that (R)-, but not (S)-2 possessed antifungal activity.
姜辣素(1)和姜辣醇的两种手性形式(2)是通过丝状真菌对脱氢姜辣素(3)进行生物转化而获得的。用烟曲霉、假丝酵母或米根霉对3进行生物转化,在8小时时可将1作为唯一产物生成,在72小时时产率为81%-90%。反过来,黄曲霉、黑曲霉、刺孢小克银汉霉、卷枝毛霉和橘青霉在8小时时产生1,但在72小时时,醇2作为主要产物获得(74%-99%)。其中,黑曲霉和卷枝毛霉仅一步就以高转化率和对映体过量获得反普雷洛格姜辣醇(R)-2。相反,刺孢小克银汉霉和橘青霉仅一步就以高转化率和对映体过量获得(S)-2。对2的两种手性形式针对一组临床上重要的真菌进行了抗真菌特性测试,结果表明(R)-2具有抗真菌活性,而(S)-2不具有。