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Updated: Jul 1, 2026

Isolation and Characterization Of Chimeric Human Fc-expressing Proteins Using Protein A Membrane Adsorbers And A Streamlined Workflow
Published on: January 8, 2014
Engineering and Structural Elucidation of a Sac7d-Derived IgG Fc-Specific Affitin and Its Application for the
Felix Veitl1, Andreas Eichinger1, Peter Mayrhofer1
1Chair of Biological Chemistry, School of Life Sciences, Technical University of Munich, 85354, Freising, Germany.
While protein A affinity chromatography is widely established for antibody purification, the acidic elution conditions often lead to protein aggregation and deamidation. Here, an alternative approach is described for the purification of antibodies utilizing an engineered binding protein based on the archaebacterial Sac7d scaffold in combination with light-controlled α-CD affinity chromatography (Excitography). Starting from a published affitin molecule, a monomeric protein version (C3A24) was engineered by substituting the unpaired thiol side chain Cys24 within the binding site by Ala, and, unexpectedly, its binding activity towards the human IgG1 Fc region was even improved (KD = 76 nM). X-ray analysis of the cocrystallized C3A24 with a recombinant human Fc fragment revealed a 2:1 stoichiometry, with a binding site at the junction between the CH2 and CH3 domains. Interestingly, this binding site coincides with the ones of protein A, protein G, and the neonatal Fc receptor (FcRn). The affitin/Fc interaction is dominated by a network of hydrogen bonds, whereas, unpredicted by the initial affitin design, the two C-terminal Lys residues are also involved via a salt bridge and another hydrogen bond. Using the Azo-tagged C3A24, we purified clinically relevant antibodies from cell culture medium in a single step under physiological buffer conditions.
While protein A affinity chromatography is widely established for antibody purification, the acidic elution conditions often lead to protein aggregation and deamidation. Here, an alternative approach is described for the purification of antibodies utilizing an engineered binding protein based on the archaebacterial Sac7d scaffold in combination with light-controlled α-CD affinity chromatography (Excitography). Starting from a published affitin molecule, a monomeric protein version (C3A24) was engineered by substituting the unpaired thiol side chain Cys24 within the binding site by Ala, and, unexpectedly, its binding activity towards the human IgG1 Fc region was even improved (KD = 76 nM). X-ray analysis of the cocrystallized C3A24 with a recombinant human Fc fragment revealed a 2:1 stoichiometry, with a binding site at the junction between the CH2 and CH3 domains. Interestingly, this binding site coincides with the ones of protein A, protein G, and the neonatal Fc receptor (FcRn). The affitin/Fc interaction is dominated by a network of hydrogen bonds, whereas, unpredicted by the initial affitin design, the two C-terminal Lys residues are also involved via a salt bridge and another hydrogen bond. Using the Azo-tagged C3A24, we purified clinically relevant antibodies from cell culture medium in a single step under physiological buffer conditions.
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Antibody Structure
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Antibodies, also known as immunoglobulins (Ig), are essential players of the adaptive immune system. These antigen-binding proteins are produced by B cells and make up 20 percent of the total blood plasma by weight. In mammals, antibodies fall into five different classes, which each elicits a different biological response upon antigen binding.
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