4.6 Article

The structure of a human type III Fcγ receptor in complex with Fc

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 276, Issue 19, Pages 16469-16477

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M100350200

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Fc gamma receptors mediate antibody-dependent inflammatory responses and cytotoxicity as well as certain autoimmune dysfunctions. Here we report the crystal structure of a human Fc receptor (Fc gamma RIIIB) in complex with an Fc fragment of human IgG1 determined from orthorhombic and hexagonal crystal forms at 3.0- and 3.5-Angstrom resolution, respectively. The refined structures from the two crystal forms are nearly identical with no significant discrepancies between the coordinates. Regions of the C-terminal domain of Fc gamma RIII, including the BC, C'E, FG loops, and the C' beta -strand, bind asymmetrically to the lower hinge region, residues Leu(234)-Pro(238), Of both Fe chains creating a 1:1 receptor-ligand stoichiometry. Minor conformational changes are observed in both the receptor and Fc upon complex formation. Hydrophobic residues, hydrogen bonds, and salt bridges are distributed throughout the receptor le interface. Sequence comparisons of the receptor-ligand interface residues suggest a conserved binding mode common to all members of immunoglobulin-like Fc receptors, Structural comparison between Fc gamma RIII.Fc and Fc epsilon RI.Fc complexes highlights the differences in ligand recognition between the high and low affinity receptors, Although not in direct contact with the receptor, the carbohydrate attached to the conserved glycosylation residue Asn(297) On Fc may stabilize the conformation of the receptor-binding epitope on Fc. An antibody-Fc gamma RIII model suggests two possible ligand-induced receptor aggregations.

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