Chan_2011_J.Am.Chem.Soc_133_7461

Reference

Title : Mapping the reaction coordinates of enzymatic defluorination - Chan_2011_J.Am.Chem.Soc_133_7461
Author(s) : Chan PW , Yakunin AF , Edwards EA , Pai EF
Ref : Journal of the American Chemical Society , 133 :7461 , 2011
Abstract :

The carbon-fluorine bond is the strongest covalent bond in organic chemistry, yet fluoroacetate dehalogenases can readily hydrolyze this bond under mild physiological conditions. Elucidating the molecular basis of this rare biocatalytic activity will provide the fundamental chemical insights into how this formidable feat is achieved. Here, we present a series of high-resolution (1.15-1.80 A) crystal structures of a fluoroacetate dehalogenase, capturing snapshots along the defluorination reaction: the free enzyme, enzyme-fluoroacetate Michaelis complex, glycolyl-enzyme covalent intermediate, and enzyme-product complex. We demonstrate that enzymatic defluorination requires a halide pocket that not only supplies three hydrogen bonds to stabilize the fluoride ion but also is finely tailored for the smaller fluorine halogen atom to establish selectivity toward fluorinated substrates. We have further uncovered dynamics near the active site which may play pivotal roles in enzymatic defluorination. These findings may ultimately lead to the development of novel defluorinases that will enable the biotransformation of more complex fluorinated organic compounds, which in turn will assist the synthesis, detoxification, biodegradation, disposal, recycling, and regulatory strategies for the growing markets of organofluorines across major industrial sectors.

PubMedSearch : Chan_2011_J.Am.Chem.Soc_133_7461
PubMedID: 21510690
Gene_locus related to this paper: rhopa-q6nam1

Related information

Inhibitor Glycolate
Substrate Chloroacetate    Bromoacetate    Fluoroacetate
Gene_locus rhopa-q6nam1
Structure 3R3U    3R3V    3R3W    3R3X    3R3Y    3R3Z    3R40    3R41

Citations formats

Chan PW, Yakunin AF, Edwards EA, Pai EF (2011)
Mapping the reaction coordinates of enzymatic defluorination
Journal of the American Chemical Society 133 :7461

Chan PW, Yakunin AF, Edwards EA, Pai EF (2011)
Journal of the American Chemical Society 133 :7461