IgG Fc domains that bind C1q but not effector Fc[gamma] receptors delineate the importance of complement-mediated effector functions

Engineered crystallizable fragment (Fc) regions of antibody domains, which assume a unique and unprecedented asymmetric structure within the homodimeric Fc polypeptide, enable completely selective binding to the complement component C1q and activation of complement via the classical pathway without...

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Veröffentlicht in:Nature immunology 2017-08, Vol.18 (8), p.889
Hauptverfasser: Lee, Chang-Han, Romain, Gabrielle, Yan, Wupeng, Watanabe, Makiko, Charab, Wissam, Todorova, Biliana, Lee, Jiwon, Triplett, Kendra, Donkor, Moses, Lungu, Oana I, Lux, Anja, Marshall, Nicholas, Lindorfer, Margaret A, Goff, Odile Richard-Le, Balbino, Bianca, Kang, Tae Hyun, Tanno, Hidetaka, Delidakis, George, Alford, Corrine, Taylor, Ronald P, Nimmerjahn, Falk, Varadarajan, Navin, Bruhns, Pierre, Zhang, Yan Jessie, Georgiou, George
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Sprache:eng
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Zusammenfassung:Engineered crystallizable fragment (Fc) regions of antibody domains, which assume a unique and unprecedented asymmetric structure within the homodimeric Fc polypeptide, enable completely selective binding to the complement component C1q and activation of complement via the classical pathway without any concomitant engagement of the Fc[gamma] receptor (Fc[gamma]R). We used the engineered Fc domains to demonstrate in vitro and in mouse models that for therapeutic antibodies, complement-dependent cell-mediated cytotoxicity (CDCC) and complement-dependent cell-mediated phagocytosis (CDCP) by immunological effector molecules mediated the clearance of target cells with kinetics and efficacy comparable to those of the Fc[gamma]R-dependent effector functions that are much better studied, while they circumvented certain adverse reactions associated with Fc[gamma]R engagement. Collectively, our data highlight the importance of CDCC and CDCP in monoclonal-antibody function and provide an experimental approach for delineating the effect of complement-dependent effector-cell engagement in various therapeutic settings.
ISSN:1529-2908
1529-2916
DOI:10.1038/ni.3770