Schmidt_2008_J.Biol.Chem_283_21827

Reference

Title : Atomic resolution crystal structures and quantum chemistry meet to reveal subtleties of hydroxynitrile lyase catalysis - Schmidt_2008_J.Biol.Chem_283_21827
Author(s) : Schmidt A , Gruber K , Kratky C , Lamzin VS
Ref : Journal of Biological Chemistry , 283 :21827 , 2008
Abstract :

Hydroxynitrile lyases are versatile enzymes that enantiospecifically cope with cyanohydrins, important intermediates in the production of various agrochemicals or pharmaceuticals. We determined four atomic resolution crystal structures of hydroxynitrile lyase from Hevea brasiliensis: one native and three complexes with acetone, isopropyl alcohol, and thiocyanate. We observed distinct distance changes among the active site residues related to proton shifts upon substrate binding. The combined use of crystallography and ab initio quantum chemical calculations allowed the determination of the protonation states in the enzyme active site. We show that His(235) of the catalytic triad must be protonated in order for catalysis to proceed, and we could reproduce the cyanohydrin synthesis in ab initio calculations. We also found evidence for the considerable pK(a) shifts that had been hypothesized earlier. We envision that this knowledge can be used to enhance the catalytic properties and the stability of the enzyme for industrial production of enantiomerically pure cyanohydrins.

PubMedSearch : Schmidt_2008_J.Biol.Chem_283_21827
PubMedID: 18524775
Gene_locus related to this paper: hevbr-hnl

Related information

Inhibitor Acetone    Rhodanide
Substrate Acetone
Gene_locus hevbr-hnl
Structure 3C6X    3C6Y    3C6Z    3C70
Chemical Isopropanol

Citations formats

Schmidt A, Gruber K, Kratky C, Lamzin VS (2008)
Atomic resolution crystal structures and quantum chemistry meet to reveal subtleties of hydroxynitrile lyase catalysis
Journal of Biological Chemistry 283 :21827

Schmidt A, Gruber K, Kratky C, Lamzin VS (2008)
Journal of Biological Chemistry 283 :21827