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Engineering Aglycosylated IgG Variants with Wild-Type or Improved Binding Affinity to Human Fc Gamma RIIA and Fc Gamma RIIIAs.

J. Mol. Biol.. 2017; 
Chen Tiffany F,Sazinsky Stephen L,Houde Damian,DiLillo David J,Bird Julie,Li Kevin K,Cheng George T,Qiu Huawei,Engen John R,Ravetch Jeffrey V,Wittrup K
Products/Services Used Details Operation
Proteins, Expression, Isolation and Analysis filter one week after transfection. All antibodies were purified using Protein A resin (Genscript) per Get A Quote

摘要

The binding of human IgG1 to human Fc gamma receptors (hFcγRs) is highly sensitive to the presence of a single N-linked glycosylation site at asparagine 297 of the Fc, with deglycosylation resulting in a complete loss of hFcγR binding. Previously, we demonstrated that aglycosylated human IgG1 Fc variants can engage the human FcγRII class of the low-affinity hFcγRs, demonstrating that N-linked glycosylation of the Fc is not a strict requirement for hFcγR engagement. In the present study, we demonstrate that aglycosylated IgG variants can be engineered to productively engage with FcγRIIIA, as well as the human Fc gamma RII subset. We also assess the biophysical properties and serum half-life of th... More

关键词

Fc-gamma receptor,antibody engineering,directed evolution,yeast dis