4.6 Article

Characterization of the binding site on the formyl peptide receptor using three receptor mutants and analogs of Met-Leu-Phe and Met-Met-Trp-Leu-Leu

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 275, Issue 50, Pages 39012-39017

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M003081200

Keywords

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Funding

  1. PHS HHS [2RO1A40108-4] Funding Source: Medline
  2. SAMHSA HHS [2ROAI22735-14] Funding Source: Medline

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The formyl peptide receptor (FPR) is a chemotactic G protein-coupled receptor found on the surface of phagocytes. We have previously shown that the formyl peptide binding site maps to the membrane-spanning region (Miettinen, H. R., Mills, J. S., Gripentrog, J. M., Dratz, E. A., Granger, E. L., and Jesaitis, A. J. (1997) J. Immunol, 159, 4045-4054). Recent reports have indicated that nonformylated peptides, such as MMWLL can also activate this receptor (Chen, J., Bernstein, H. S., Chen, M.,Wang, L., Ishi, M., Turck, C. W., and Coughlin, S. R. (1995) J, Biol. Chem. 270, 23398-23401.) Here we show that the selectivity for the binding of different NH2-terminal analogs of MMWLL or MLF can be markedly altered by mutating Asp-106 to asparagine or Arg-201 to alanine. Both D106N and R201A produced a similar change in ligand specificity, including an enhanced ability to bind the HIV-I peptide DP178. In contrast, the mutation R205A exhibited altered specificity at the COOH terminus of fMLF, with R205A binding fMLF-O-butyl > fMLF-O-methyl > fiMLF, whereas wt FPR bound fMLF > fMLF-O-methyl similar to fMLF-O-butyl. These data, taken together with our previous finding that the leucine side chain of fMLF is probably bound to FPR near FPR (VRK95)-V-93 (Mills, J. S., Miettinen, H. M., Barnidge, D., Vlases, M. J., Wimer-Mackin, S., Dratz, E. A., and Jesaitis, A. J. (1998) J. Biol. Chem. 273, 10428-10435.), indicate that the most Likely positioning of fMLF in the binding pocket of EPR is approximately parallel to the fifth transmembrane helix with the formamide group of fMLF hydrogen-bonded to both Asp-106 and Arg-201, the leucine side chain pointing toward the second transmembrane region, and the COOH-terminal carboxyl group of fMLF ion-paired with Arg-205.

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