Structural characterization of the enzymes composing the arginine deiminase pathway in Mycoplasma penetrans

Pablo Gallego1, Raquel Planell, Jordi Benach

  • 1Institut de Biotecnologia i de Biomedicina and Departament de Bioquímica i de Biologia Molecular, Universitat Autònoma de Barcelona, Barcelona, Spain.

Plos One
|October 20, 2012
PubMed

Insights

The arginine deiminase pathway in Mycoplasma penetrans provides energy and aids virulence. Structural analysis of its key enzymes (ADI, OTC, CK) reveals insights into their function and potential as drug targets against this human parasite.

Area of Science:

  • Biochemistry
  • Structural Biology
  • Microbiology

Background:

  • The arginine deiminase pathway is crucial for ATP synthesis and virulence in microorganisms like Mycoplasma penetrans, particularly under anaerobic or acidic conditions.
  • Mycoplasma penetrans is a significant human pathogen, making its metabolic pathways potential targets for therapeutic intervention.

Purpose of the Study:

  • To determine the crystal structures of the three key enzymes in the arginine deiminase pathway from Mycoplasma penetrans: arginine deiminase (ADI), ornithine carbamoyltransferase (OTC), and carbamate kinase (CK).
  • To elucidate the structural basis of enzyme function and identify potential targets for drug development against Mycoplasma penetrans infections.

Main Methods:

  • X-ray crystallography was employed to determine the three-dimensional structures of ADI, OTC, and CK.
  • Structural analysis focused on active site conformations, quaternary structures, and ligand-binding sites.

Main Results:

  • The apo-form of ADI (2.3 Å resolution) revealed an open active site conformation, suggesting significant conformational changes upon substrate binding.
  • OTC was characterized by a unique dodecameric structure (2.5 Å and 2.6 Å resolution) with a novel inter-trimer interface, representing a high level of organization.
  • CK (2.5 Å resolution) displayed two sulfate ions in its active site, occupying carbamoyl phosphate and ADP binding pockets, with variations in catalytic regulatory elements.

Conclusions:

  • The determined structures provide detailed insights into the catalytic mechanisms and structural organization of the arginine deiminase pathway enzymes in M. penetrans.
  • These enzymes represent promising targets for the rational design of specific inhibitors to combat infections caused by Mycoplasma penetrans.

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