Characterization of an aminotransferase from Acanthamoeba polyphaga Mimivirus

Chase A Seltzner1, Justin D Ferek1, James B Thoden1

  • 1Department of Biochemistry, University of Wisconsin, Madison, Wisconsin, USA.

Insights

Mimivirus L136 enzyme, crucial for synthesizing a unique sugar, shows broad substrate efficiency. This pyridoxal 5'-phosphate-dependent enzyme

Area of Science:

  • Virology
  • Structural Biology
  • Biochemistry

Background:

  • Acanthamoeba polyphaga Mimivirus encodes enzymes for synthesizing the unusual sugar d-viosamine.
  • The L136 gene product is a pyridoxal 5 omino-phosphate-dependent enzyme responsible for amino group installation.
  • Understanding viral enzyme mechanisms provides insights into host-pathogen interactions and novel biochemical pathways.

Purpose of the Study:

  • To perform a structural and functional analysis of the Mimivirus L136 enzyme.
  • To elucidate the catalytic mechanism and substrate specificity of L136.
  • To compare L136 with its bacterial homolog, DesI, and understand evolutionary divergence.

Main Methods:

  • High-resolution X-ray crystallography of wildtype and mutant L136 enzyme complexes.
  • Determination of kinetic parameters for L136 with different nucleotide-sugar substrates.
  • Comparative structural analysis between L136 and DesI.

Main Results:

  • Three high-resolution X-ray structures of L136 were determined, including wildtype and K185A mutant variants.
  • L136 efficiently utilizes both UDP-d-glucose and dTDP-d-glucose as substrates.
  • Structural differences, including a missing hydrophobic patch in L136 compared to DesI, explain substrate preference variations.

Conclusions:

  • The study provides the first 3D structure of a virally encoded PLP-dependent enzyme.
  • L136 exhibits distinct substrate utilization compared to the related bacterial enzyme DesI.
  • This work advances the understanding of viral sugar biosynthesis and PLP-dependent enzymes.

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