Steroid Hydroxylation by Basidiomycete Peroxygenases: a Combined Experimental and Computational Study

被引:39
作者
Babot, Esteban D. [1 ]
del Rio, Jose C. [1 ]
Canellas, Marina [2 ,3 ]
Sancho, Ferran [2 ,3 ]
Lucas, Fatima [2 ]
Guallar, Victor [2 ,4 ]
Kalum, Lisbeth [5 ]
Lund, Henrik [5 ]
Groebe, Glenn [6 ]
Scheibner, Katrin [6 ]
Ullrich, Rene [7 ]
Hofrichter, Martin [7 ]
Martinez, Angel T. [8 ]
Gutiereza, Ana [1 ]
机构
[1] CSIC, Inst Recursos Nat & Agrobiol Sevilla, E-41080 Seville, Spain
[2] Barcelona Supercomp Ctr, Joint BSC CRG IRB Res Program Computat Biol, Barcelona, Spain
[3] Anax Biotech, Barcelona, Spain
[4] ICREA, Barcelona, Spain
[5] Novozymes AS, Bagsvaerd, Denmark
[6] JenaBios GmbH, Jena, Germany
[7] Tech Univ Dresden, Dept Bio & Environm Sci, Zittau, Germany
[8] CSIC, Ctr Invest Biol, E-41080 Seville, Spain
关键词
GAS-CHROMATOGRAPHY; 25-HYDROXYCHOLESTEROL; PROTEIN; EXPLORATION; PELE;
D O I
10.1128/AEM.00660-15
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The goal of this study is the selective oxyfunctionalization of steroids under mild and environmentally friendly conditions using fungal enzymes. With this purpose, peroxygenases from three basidiomycete species were tested for the hydroxylation of a variety of steroidal compounds, using H2O2 as the only cosubstrate. Two of them are wild-type enzymes from Agrocybe aegerita and Marasmius rotula, and the third one is a recombinant enzyme from Coprinopsis cinerea. The enzymatic reactions on free and esterified sterols, steroid hydrocarbons, and ketones were monitored by gas chromatography, and the products were identified by mass spectrometry. Hydroxylation at the side chain over the steroidal rings was preferred, with the 25-hydroxyderivatives predominating. Interestingly, antiviral and other biological activities of 25-hydroxycholesterol have been reported recently (M. Blanc et al., Immunity 38: 106-118, 2013, http://dx.doi.org/10.1016/j.immuni.2012.11.004). However, hydroxylation in the ring moiety and terminal hydroxylation at the side chain also was observed in some steroids, the former favored by the absence of oxygenated groups at C-3 and by the presence of conjugated double bonds in the rings. To understand the yield and selectivity differences between the different steroids, a computational study was performed using Protein Energy Landscape Exploration (PELE) software for dynamic ligand diffusion. These simulations showed that the active-site geometry and hydrophobicity favors the entrance of the steroid side chain, while the entrance of the ring is energetically penalized. Also, a direct correlation between the conversion rate and the side chain entrance ratio could be established that explains the various reaction yields observed.
引用
收藏
页码:4130 / 4142
页数:13
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