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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.
Abstract:
Gp15/400 is a surface-proximal antigen of the filarial nematode Brugia malayi, produced as a large polyprotein precursor comprising an array of polypeptide units of approx. 14.5 kDa. Here we describe a biochemical function for gp15/400. A single 14.5-kDa unit of gp15/400 has been expressed in Escherichia coli, and found to dimerise spontaneously. This protein (designated P-RUNG) has high-affinity fatty acid and retinoid binding activity, suggesting that the parent polypeptide itself has these properties. Fluorescent fatty acid probes show significant enhancement of fluorescence intensity and shifts in emission wavelength in the presence of P-RUNG, which can be reversed by competing non-fluorescent fatty acids (oleic, palmitic, steric, arachidonic), retinoids (retinol and retinoic acid) and oleoyl Coenzyme A, but not by tryptophan, cholesterol, caproic acid, squalene, tocopherol, tocopherol acetate, succinyl CoA, 2-methylbutyric acid and 2-methylvaleric acid. Changes in intrinsic fluorescence of retinol or retinoic acid confirmed the retinoid binding function. The results of fluorescence titration experiments are consistent with stoichiometric binding to a single protein site per monomer unit with affinities (Kd) in the range 2 x 10(-6) M (for the fluorescent probe 11-((5-dansyl)amino)undecanoic acid) and 2 x 10(-7) M (for oleic acid). The extreme blue shift of the fluorescent fatty acid-protein complex suggests an unusually low polarity for the protein binding site. The intrinsic fluorescence of the single tryptophan residue of P-RUNG indicates that it also is deeply buried in a non-polar environment, but is probably not involved in ligand binding. Gp15/400, therefore, represents a new class of lipid binding protein which is possibly restricted to nematodes.
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.