4.6 Article

Analysis of binding sites in human C-reactive protein for FcγRI, FcγRIIA, and C1q by site-directed mutagenesis

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JOURNAL OF BIOLOGICAL CHEMISTRY
卷 280, 期 26, 页码 25095-25102

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AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M504782200

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  1. NIAID NIH HHS [AI 28358] Funding Source: Medline

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Human C-reactive protein (CRP) is a classical, acute phase serum protein synthesized by the liver in response to infection, inflammation, or trauma. CRP binds to microbial antigens and damaged cells, opsonizes particles for phagocytosis and regulates the inflammatory response by the induction of cytokine synthesis. These activities of CRP depend on its ability to activate complement and to bind to Fc gamma receptors (Fc gamma R). The goal of this study was to elucidate amino acid residues important for the interaction of CRP with human Fc gamma RI (CD64) and Fc gamma RIIa (CD32). Several mutations of the CRP structure were studied based on the published crystal structure of CRP. Mutant and wild-type recombinant CRP molecules were expressed in the baculovirus system and their interactions with Fc gamma R and C1q were determined. A previous study by our laboratory identified an amino acid position, Leu(176), critical for CRP binding to Fc gamma RI and work by others (Agrawal, A., Shrive, A. K., Greenhough, T. J., and Volanakis, J. E. (2001) J. Immunol. 166, 3998-4004) determined several residues important for C1q binding. The amino acid residues important to CRP binding to Fc gamma RIIa were previously unknown. This study newly identifies residues Thr(173) and Asn(186) as important for the binding of CRP to Fc gamma RIIa and Fc gamma RI. Lys(114), like Leu(176), was implicated in binding to Fc gamma RI, but not Fc gamma RIIa. Single mutations at amino acid positions Lys(114), Asp(169), Thr(173), Tyr(175), and Leu(176) affected C1q binding to CRP. These results further identify amino acids involved in the binding sites on CRP for Fc gamma RI, Fc gamma RIIa, and C1q and indicate that these sites are overlapping.

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