α-Amino-β-carboxymuconic-ε-semialdehyde Decarboxylase (ACMSD) Is a New Member of the Amidohydrolase Superfamily
- 1 May 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 45 (21) , 6628-6634
- https://doi.org/10.1021/bi060108c
Abstract
The enzymatic activity of Pseudomonas fluorescens alpha-amino-beta-carboxymuconic-epsilon-semialdehyde decarboxylase (ACMSD) is critically dependent on a transition metal ion [Li, T., Walker, A. L., Iwaki, H., Hasegawa, Y., and Liu, A. (2005) J. Am. Chem. Soc. 127, 12282- 12290]. Sequence analysis in this study further suggests that ACMSD belongs to the amidohydrolase superfamily, whose structurally characterized members comprise a catalytically essential metal cofactor. To identify ACMSD's metal ligands and assess their functions in catalysis, a site-directed mutagenesis analysis was conducted. Alteration of His-9, His-177, and Asp-294 resulted in a dramatic loss of enzyme activity, substantial reduction of the metal-binding ability, and an altered metallocenter electronic structure. Thus, these residues are confirmed to be the endogenous metal ligands. His-11 is implicated in metal binding because of the strictly conserved HxH motif with His-9. Mutations at the 228 site yielded nearly inactive enzyme variants H228A and H228E. The two His-228 mutant proteins, however, exhibited full metal-binding ability and a metal center similar to that of the wild-type enzyme as shown by EPR spectroscopy. Kinetic analysis on the mutants indicates that His-228 is a critical catalytic residue along with the metal cofactor. Since the identified metal ligands and His-228 are present in all known ACMSD sequences, it is likely that ACMSD proteins from other organisms contain the same cofactor and share similar catalytic mechanisms. ACMSD is therefore the first characterized member in the amidohydrolase superfamily that represents a C-C breaking activity.Keywords
This publication has 31 references indexed in Scilit:
- Catalytic Versatility, Stability, and Evolution of the (βα)8-Barrel Enzyme FoldChemical Reviews, 2005
- Kinetic and Spectroscopic Characterization of ACMSD fromPseudomonas fluorescensReveals a Pentacoordinate Mononuclear MetallocofactorJournal of the American Chemical Society, 2005
- Genes of the thymidine salvage pathway: Thymine-7-hydroxylase from a Rhodotorula glutinis cDNA library and iso-orotate decarboxylase from Neurospora crassaBiochimica et Biophysica Acta (BBA) - General Subjects, 2005
- Mechanism of the Dihydroorotase ReactionBiochemistry, 2004
- Evolution of Enzymes for the Metabolism of New Chemical Inputs into the EnvironmentJournal of Biological Chemistry, 2004
- High-Resolution X-Ray Structure of Isoaspartyl Dipeptidase from Escherichia coli,Biochemistry, 2003
- Prokaryotic Homologs of the Eukaryotic 3-Hydroxyanthranilate 3,4-Dioxygenase and 2-Amino-3-Carboxymuconate-6-Semialdehyde Decarboxylase in the 2-Nitrobenzoate Degradation Pathway ofPseudomonas fluorescensStrain KU-7Applied and Environmental Microbiology, 2003
- Crystal Structure of Human Renal Dipeptidase Involved in β-Lactam HydrolysisJournal of Molecular Biology, 2002
- The structure of Escherichia coli cytosine deaminase 1 1Edited by I. A. WilsonJournal of Molecular Biology, 2002
- Molecular Structure of Dihydroorotase: A Paradigm for Catalysis through the Use of a Binuclear Metal Center,Biochemistry, 2001