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Arch Biochem Biophys ; 731: 109429, 2022 11 30.
Article in English | MEDLINE | ID: mdl-36265649

ABSTRACT

Tyrosine-430 of d-ornithine/d-lysine decarboxylase (DOKDC) is located in the active site, and was suggested to be responsible for the D-stereospecificity of the enzyme. We have prepared the Y430F mutant form of Salmonella enterica serovar typhimurium DOKDC and evaluated its catalytic activity with D- and l-lysine and ornithine. The kinetic results show that the Y430F mutant has measurable decarboxylase activity with both D- and l-lysine and ornithine, which wild type DOKDC does not. Spectroscopic experiments show that these amino acids bind to form external aldimine complexes with the pyridoxal-5'-phosphate with λmax = 425 nm. In addition, we have obtained crystal structures of Y430F DOKDC bound to HEPES, putrescine, d-ornithine, d-lysine, and d-arginine. The d-amino acids bind in the crystals to form equilibrium mixtures of gem-diamine and external aldimine complexes. Furthermore, the crystal structures reveal an unexpected allosteric product activator site for putrescine located on the 2-fold axis between the two active sites. Putrescine binds by donating hydrogen bonds from the ammonium groups to Asp-361 and Gln-358 in the specificity helix of both chains. Addition of 0.1-1 mM putrescine eliminates the lag in steady state kinetics and abolishes the sigmoid kinetics. The catalytic loop was modeled with AlphaFold2, and the model shows that Glu-181 can form additional hydrogen bonds with the bound putrescine, likely stabilizing the catalytic closed conformation.


Subject(s)
Carboxy-Lyases , Ornithine , Ornithine/chemistry , Ornithine/metabolism , Putrescine/chemistry , Ornithine Decarboxylase/genetics , Ornithine Decarboxylase/metabolism , Lysine/metabolism , Allosteric Regulation , Mutagenesis, Site-Directed , Carboxy-Lyases/genetics , Carboxy-Lyases/metabolism , Pyridoxal Phosphate/chemistry , Pyridoxal Phosphate/metabolism , Kinetics , Salmonella/metabolism
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