Ichiyama_2004_Biochim.Biophys.Acta_1698_27

Reference

Title : Reactivity of asparagine residue at the active site of the D105N mutant of fluoroacetate dehalogenase from Moraxella sp. B - Ichiyama_2004_Biochim.Biophys.Acta_1698_27
Author(s) : Ichiyama S , Kurihara T , Kogure Y , Tsunasawa S , Kawasaki H , Esaki N
Ref : Biochimica & Biophysica Acta , 1698 :27 , 2004
Abstract :

Fluoroacetate dehalogenase from Moraxella sp. B (FAc-DEX) catalyzes cleavage of the carbon-fluorine bond of fluoroacetate, whose dissociation energy is among the highest found in natural products. Asp105 functions as the catalytic nucleophile that attacks the alpha-carbon atom of the substrate to displace the fluorine atom. In spite of the essential role of Asp105, we found that site-directed mutagenesis to replace Asp105 by Asn does not result in total inactivation of the enzyme. The activity of the mutant enzyme increased in a time- and temperature-dependent manner. We analyzed the enzyme by ion-spray mass spectrometry and found that the reactivation was caused by the hydrolytic deamidation of Asn105 to generate the wild-type enzyme. Unlike Asn10 of the l-2-haloacid dehalogenase (L-DEX YL) D10N mutant, Asn105 of the fluoroacetate dehalogenase D105N mutant did not function as a nucleophile to catalyze the dehalogenation.

PubMedSearch : Ichiyama_2004_Biochim.Biophys.Acta_1698_27
PubMedID: 15063312
Gene_locus related to this paper: morsp-deh1

Related information

Gene_locus morsp-deh1

Citations formats

Ichiyama S, Kurihara T, Kogure Y, Tsunasawa S, Kawasaki H, Esaki N (2004)
Reactivity of asparagine residue at the active site of the D105N mutant of fluoroacetate dehalogenase from Moraxella sp. B
Biochimica & Biophysica Acta 1698 :27

Ichiyama S, Kurihara T, Kogure Y, Tsunasawa S, Kawasaki H, Esaki N (2004)
Biochimica & Biophysica Acta 1698 :27