| Literature DB >> 29173039 |
Migyeong Jo1, Hyeong Sun Kwon2, Kwang-Hoon Lee3, Ji Chul Lee2, Sang Taek Jung1.
Abstract
FcγRIIIa, which is predominantly expressed on the surface of natural killer cells, plays a key role in antibody-dependent cell-mediated cytotoxicity (ADCC), a major effector function of therapeutic IgG antibodies that results in the death of aberrant cells. Despite the potential uses of aglycosylated IgG antibodies, which can be easily produced in bacteria and do not have complicated glycan heterogeneity issues, they show negligible binding to FcγRIIIa and abolish the activation of immune leukocytes for tumor cell clearance, in sharp contrast to most glycosylated IgG antibodies used in the clinical setting. For directed evolution of aglycosylated Fc variants that bind to FcγRIIIa and, in turn, exert potent ADCC effector function, we randomized the aglycosylated Fc region of full-length IgG expressed on the inner membrane of Escherichia coli. Multiple rounds of high-throughput screening using flow cytometry facilitated the isolation of aglycosylated IgG Fc variants that exhibited higher binding affinity to FcγRIIIa-158V and FcγRIIIa-158F compared with clinical-grade trastuzumab (Herceptin®). The resulting aglycosylated trastuzumab IgG antibody Fc variants could elicit strong peripheral blood mononuclear cell-mediated ADCC without glycosylation in the Fc region.Entities:
Keywords: Aglycosylated IgG; Antibody-dependent cell-mediated cytotoxicity; Effector functions; Fc engineering; FcγRIIIa
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Year: 2017 PMID: 29173039 PMCID: PMC5825196 DOI: 10.1080/19420862.2017.1402995
Source DB: PubMed Journal: MAbs ISSN: 1942-0862 Impact factor: 5.857