| Literature DB >> 27994063 |
Ling Liu1, Frederick W Jacobsen2, Nancy Everds3, Yao Zhuang4, Yan Bin Yu4, Nianyu Li3, Darcey Clark3, Mai Phuong Nguyen3, Madeline Fort3, Padma Narayanan3, Kei Kim3, Riki Stevenson5, Linda Narhi5, Kannan Gunasekaran2, Jeanine L Bussiere3.
Abstract
The stable effector functionLess (SEFL) antibody was designed as an IgG1 antibody with a constant region that lacks the ability to interact with Fcγ receptors. The engineering and stability and pharmacokinetic assessments of the SEFL scaffold is described in the accompanying article (Jacobsen, F. W., Stevenson, R., Li, C., Salimi-Moosavi, H., Liu, L., Wen, J., Luo, Q., Daris, K., Buck, L., Miller, S., Ho, S-Y., Wang, W., Chen, Q., Walker, K., Wypych, J., Narhi, L., and Gunasekaran, K. (2017) J. Biol. Chem 292). The biological properties of these SEFL antibodies were assessed in a variety of human and cynomolgus monkey in vitro assays. Binding of parent molecules and their SEFL variants to human and cynomolgus monkey FcγRs were evaluated using flow cytometry-based binding assays. The SEFL variants tested showed decreased binding affinity to human and cynomolgus FcγRs compared with the wild-type IgG1 antibody. In addition, SEFL variants demonstrated no antibody-dependent cell-mediated cytotoxicity in vitro against Daudi cells with cynomolgus monkey peripheral blood mononuclear cells, and had minimal complement-dependent cytotoxicity activity similar to that of the negative control IgG2 in a CD20+ human Raji lymphoma cell line. SEFL mutations eliminated off-target antibody-dependent monocyte phagocytosis of cynomolgus monkey platelets, and cynomolgus platelet activation in vitro These experiments demonstrate that the SEFL modifications successfully eliminated Fc-associated effector binding and functions.Entities:
Keywords: Fc receptor; antibody engineering; antibody-dependent cellular cytotoxicity; complement-dependent cytotoxicity; cynomolgus macaque; immunoglobulin G (IgG); phagocytosis; platelet; platelet depletion
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Year: 2016 PMID: 27994063 PMCID: PMC5290959 DOI: 10.1074/jbc.M116.748707
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157