Author:
Macieira Sofia,Zhang Jin,Velarde Milko,Buckel Wolfgang,Messerschmidt Albrecht
Abstract
Abstract4-Hydroxybutyrate CoA-transferases (4-HB-CoAT) takes part in the fermentation of 4-aminobutyrate to ammonia, acetate, and butyrate in anaerobic bacteria such asClostridium aminobutyricumandPorphyromonas gingivalisor facultative anaerobic bacteria such asShewanella oneidensis. Site-directed mutagenesis of the highly active enzyme has identified the catalytic glutamate residue as E238. Crystal structure of this enzyme has been determined at a resolution of 1.85 Å. The 438-amino acid residue polypeptide chain folds into two topologically similar domains with an open α/β-fold, which is also found in other CoAT family I and family II members. The data indicate that the members of CoAT families I and II are closely related; the latter only lacking the catalytic glutamate residue. A putative co-substrate binding site for the 4-HB-CoAT was identified, in which a 4-hydroxybutyrate molecule has been modeled. This site is also responsible for binding the acetyl group of acetyl-CoA or the succinyl group of succinyl-CoA in succinyl-CoA:3-oxoacid CoA-transferase from mammalian mitochondria. Mutations of relevant active site amino acid residues have been produced and their activities tested to corroborate the proposed structural model for substrate binding. 4-HB-CoAT fromC. aminobutyricumrepresents the only functionally characterized 4-HB-CoAT present in the structural database.
Subject
Clinical Biochemistry,Molecular Biology,Biochemistry
Cited by
14 articles.
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