Wang_2017_J.Am.Chem.Soc_139_11241

Reference

Title : Investigating Substrate Scope and Enantioselectivity of a Defluorinase by a Stereochemical Probe - Wang_2017_J.Am.Chem.Soc_139_11241
Author(s) : Wang JB , Ilie A , Yuan S , Reetz MT
Ref : Journal of the American Chemical Society , 139 :11241 , 2017
Abstract :

The possibility of a double Walden inversion mechanism of the fluoracetate dehalogenase FAcD (RPA1163) has been studied by subjecting rac-2-fluoro-2-phenyl acetic acid to the defluorination process. This stereochemical probe led to inversion of configuration in a kinetic resolution with an extremely high selectivity factor (E > 500), showing that the classical mechanism involving S(N)2 reaction by Asp110 pertains. The high preference for the (S)-substrate is of synthetic value. Wide substrate scope of RPA1163 in such hydrolytic kinetic resolutions can be expected because the reaction of the even more sterically demanding rac-2-fluoro-2-benzyl acetic acid proceeded similarly. Substrate acceptance and stereoselectivity were explained by extensive molecular modeling (MM) and molecular dynamics (MD) computations. These computations were also applied to fluoroacetic acid itself, leading to further insights.

PubMedSearch : Wang_2017_J.Am.Chem.Soc_139_11241
PubMedID: 28741946

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Citations formats

Wang JB, Ilie A, Yuan S, Reetz MT (2017)
Investigating Substrate Scope and Enantioselectivity of a Defluorinase by a Stereochemical Probe
Journal of the American Chemical Society 139 :11241

Wang JB, Ilie A, Yuan S, Reetz MT (2017)
Journal of the American Chemical Society 139 :11241