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The gp15/400 polyprotein antigen of Brugia malayi binds fatty acids and retinoids

M W Kennedy1, J E Allen, A S Wright

  • 1Wellcome Laboratories for Experimental Parasitology, University of Glasgow, Bearsden, UK.

Insights

The Brugia malayi gp15/400 antigen

Area of Science:

  • Biochemistry
  • Parasitology
  • Molecular Biology

Background:

  • Filarial nematodes like Brugia malayi possess surface antigens, including gp15/400.
  • Gp15/400 is synthesized as a large polyprotein precursor containing multiple polypeptide units.

Purpose of the Study:

  • To elucidate the biochemical function of the gp15/400 antigen.
  • To characterize the ligand-binding properties of a single polypeptide unit of gp15/400.

Main Methods:

  • Expression of a 14.5-kDa unit of gp15/400 in E. coli, designated P-RUNG.
  • Fluorescence spectroscopy using fatty acid and retinoid probes to assess binding.
  • Competition assays with various ligands to determine binding specificity.
  • Analysis of intrinsic fluorescence of P-RUNG and bound ligands.

Main Results:

  • The expressed P-RUNG protein spontaneously dimerizes.
  • P-RUNG exhibits high-affinity binding for fatty acids and retinoids.
  • Binding specificity was demonstrated for oleic acid, retinol, and retinoic acid, with dissociation constants in the micromolar to nanomolar range.
  • The binding site appears to be a non-polar environment, indicated by fluorescence shifts.

Conclusions:

  • Gp15/400 represents a novel class of lipid-binding proteins.
  • This protein family may be specific to nematodes.
  • The characterized ligand-binding properties suggest potential roles in nematode biology or host-parasite interactions.

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