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Designing the substrate specificity of d-hydantoinase using a rational approach
Lee, S.C.,Chang, Y.,Shin, D.M.,Han, J.,Seo, M.H.,Fazelinia, H.,Maranas, C.D.,Kim, H.S. IPC Science and Technology Press ; Elsevier Scienc 2009 Enzyme and microbial technology Vol.44 No.3
Enzymes that exhibit superior catalytic activity, stability and substrate specificity are highly desirable for industrial applications. These goals prompted the designed substrate specificity of Bacillus stearothermophilusd-hydantoinase toward the target substrate hydroxyphenylhydantoin (HPH). Positions crucial to substrate specificity were selected using structural and mechanistic information on the structural loops at the active site. The size and hydrophobicity of the involved amino acids were rationally changed, and the substrate specificities of the designed d-Hyd mutants were investigated. As a result, M63I/F159S exhibited about 200-fold higher specificity for HPH than the wild-type enzyme. Systematic mutational analysis and computational modeling also supported the rationale used in the design.