Complement is activated by IgG hexamers assembled at the cell surface

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Access status: Embargo until 2050-01-01 , diebolder_hexamers_2014.pdf (1.62 MB)

Publication date

2014

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Diebolder, C.A.ISNI 0000000387801478
Beurskens, Frank J.
de Jong, R.N.
Koning, Roman I.
Strumane, Kristin
Lindorfer, Margaret A.
Voorhorst, Marleen
Ugurlar, Deniz
Rosati, SaraISNI 000000044386241X
Heck, AlbertORCID 0000-0002-2405-4404ISNI 0000000393921118

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Abstract

Complement activation by antibodies bound to pathogens, tumors, and self antigens is a critical feature of natural immune defense, a number of disease processes, and immunotherapies. How antibodies activate the complement cascade, however, is poorly understood. We found that specific noncovalent interactions between Fc segments of immunoglobulin G (IgG) antibodies resulted in the formation of ordered antibody hexamers after antigen binding on cells. These hexamers recruited and activated C1, the first component of complement, thereby triggering the complement cascade. The interactions between neighboring Fc segments could be manipulated to block, reconstitute, and enhance complement activation and killing of target cells, using all four human IgG subclasses. We offer a general model for understanding antibody-mediated complement activation and the design of antibody therapeutics with enhanced efficacy.

Keywords

antibody, antigen, complement component C1, immunoglobulin Fc fragment, immunoglobulin G, immunoglobulin G1, immunoglobulin G2, immunoglobulin G3, immunoglobulin G4, article, cell killing, cell surface, complement activation, human, immunotherapy, innate immunity, nonhuman, priority journal, target cell, SDG 3 - Good Health and Well-being

Citation

Diebolder, C A, Beurskens, F J, De Jong, R N, Koning, R I, Strumane, K, Lindorfer, M A, Voorhorst, M, Ugurlar, D, Rosati, S, Heck, A J R, Van De Winkel, J G J, Wilson, I A, Koster, A J, Taylor, R P, Saphire, E O, Burton, D R, Schuurman, J, Gros, P & Parren, P W H I 2014, 'Complement is activated by IgG hexamers assembled at the cell surface', Science, vol. 343, no. 6176, pp. 1260-1263. https://doi.org/10.1126/science.1248943