K. George, S. Ko, S. Irani, G. Delidakis, C.-H. Lee, P. Menon, J. E. Kim, B. M. Herpers, E. Rocha, G. Soto, A. Majmudar, N. Varadarajan, Y. Zhang, G. Georgiou
IgG1 immune complexes bind to all the Fc{gamma} receptors (Fc{gamma}R) expressed on myeloid cells, making it challenging to determine the precise role of each Fc{gamma}R on Fc effector phenotypes. Here we report the engineering of Fc2KG, an aglycosylated human IgG1 Fc domain that binds with near physiological affinity to Fc{gamma}RIIa/b with no detectable binding to any other Fc{gamma}Rs. Crystallographic analysis elucidated the structural basis of how mutations in the Fc domain compensate for the absence of the N297 glycan and enable selective binding. Using single-cell phagocytosis assays, we show that particles opsonized with Fc-engineered antibodies formatted with Fc2KG or with an Fc domain that binds only Fc{gamma}RI (Fc5), are ingested by THP-1 cells with near identical kinetics. We find that with CD16+ primary human monocytes, selective Fc{gamma}RII engagement is a major contributor to the ADCP mediated by wild-type IgG1. Additionally, we showed that Fc2KG formatted antibodies induce high levels of GM-CSF. With M1-like monocyte-derived human macrophages, trastuzumab formatted with wild-type IgG1 Fc, with Fc2KG or Fc5 were all equally proficient in the trogocytotic killing of opsonized SK-BR-3 HER2+ cells but only Fc{gamma}RI engagement led to secretion of proinflammatory cytokines. Collectively, our results highlight how precisely tuned, Fc-engineered antibodies can be deployed to answer long-standing questions regarding the precise effector functions mediated by human Fc{gamma}Rs, information which is key for the optimization of therapeutic antibodies.