首页 | 本学科首页   官方微博 | 高级检索  
     


Switch in Cofactor Specificity of a Baeyer–Villiger Monooxygenase
Authors:Andy Beier  Sven Bordewick  Dr Maika Genz  Dr Sandy Schmidt  Tom van?den?Bergh  Dr Christin Peters  Dr Henk‐Jan Joosten  Prof?Dr Uwe T Bornscheuer
Affiliation:1. Institute of Biochemistry, Department of Biotechnology and Enzyme Catalysis, Greifswald University, Greifswald, Germany;2. Bio-Prodict, Nijmegen, The Netherlands
Abstract:Baeyer–Villiger monooxygenases (BVMOs) catalyze the oxidation of ketones to esters or lactones by using molecular oxygen and a cofactor. Type I BVMOs display a strong preference for NADPH. However, for industrial purposes NADH is the preferred cofactor, as it is ten times cheaper and more stable. Thus, we created a variant of the cyclohexanone monooxygenase from Acinetobacter sp. NCIMB 9871 (CHMOAcineto); this used NADH 4200‐fold better than NADPH. By combining structure analysis, sequence alignment, and literature data, 21 residues in proximity of the cofactor were identified and targeted for mutagenesis. Two combinatorial variants bearing three or four mutations showed higher conversions of cyclohexanone with NADH (79 %) compared to NADPH (58 %) as well as specificity. The structural reasons for this switch in cofactor specificity of a type I BVMO are especially a hydrogen‐bond network coordinating the two hydroxy groups of NADH through direct interactions and bridging water molecules.
Keywords:Baeyer–  Villiger monooxygenases  cofactor specificity  enzyme catalysis  protein engineering  rational design
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号