To the Understanding of Catalysis by D-Amino Acid Transaminases: A Case Study of the Enzyme from Aminobacterium colombiense

Molecules. 2023 Feb 23;28(5):2109. doi: 10.3390/molecules28052109.

Abstract

Pyridoxal-5'-phosphate (PLP)-dependent transaminases are highly efficient biocatalysts for stereoselective amination. D-amino acid transaminases can catalyze stereoselective transamination producing optically pure D-amino acids. The knowledge of substrate binding mode and substrate differentiation mechanism in D-amino acid transaminases comes down to the analysis of the transaminase from Bacillus subtilis. However, at least two groups of D-amino acid transaminases differing in the active site organization are known today. Here, we present a detailed study of D-amino acid transaminase from the gram-negative bacterium Aminobacterium colombiense with a substrate binding mode different from that for the transaminase from B. subtilis. We study the enzyme using kinetic analysis, molecular modeling, and structural analysis of holoenzyme and its complex with D-glutamate. We compare the multipoint binding of D-glutamate with the binding of other substrates, D-aspartate and D-ornithine. QM/MM MD simulation reveals that the substrate can act as a base and its proton can be transferred from the amino group to the α-carboxylate group. This process occurs simultaneously with the nucleophilic attack of the PLP carbon atom by the nitrogen atom of the substrate forming gem-diamine at the transimination step. This explains the absence of the catalytic activity toward (R)-amines that lack an α-carboxylate group. The obtained results clarify another substrate binding mode in D-amino acid transaminases and underpinned the substrate activation mechanism.

Keywords: D-amino acids; X-ray analysis; enzymes; structure; substrate-assisted catalysis; transaminase.

MeSH terms

  • Amino Acids*
  • Bacillus subtilis / metabolism
  • Catalysis
  • Glutamic Acid
  • Kinetics
  • Pyridoxal Phosphate / metabolism
  • Substrate Specificity
  • Transaminases* / metabolism

Substances

  • Amino Acids
  • Transaminases
  • Glutamic Acid
  • Pyridoxal Phosphate

Supplementary concepts

  • Aminobacterium colombiense