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Updated: May 5, 2026

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Construction and characterization of functional anti-epiregulin humanized monoclonal antibodies
Young-Hun Lee1, Mariko Iijima, Yuji Kado
1Laboratory for Systems Biology and Medicine, Research Center for Advanced Science and Technology, The University of Tokyo, 4-6-1 Komaba, Meguro-ku, Tokyo 153-8904, Japan; Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo 153-8902, Japan.
Abstract:
Growth factors are implicated in several processes essential for cancer progression. Specifically, epidermal growth factor (EGF) family members, including epiregulin (EREG), are important prognostic factors in many epithelial cancers, and treatments targeting these molecules have recently become available. Here, we constructed and expressed humanized anti-EREG antibodies by variable domain resurfacing based on the three-dimensional (3D) structure of the Fv fragment. However, the initial humanized antibody (HM0) had significantly decreased antigen-binding affinity. Molecular modeling results suggested that framework region (FR) residues latently important to antigen binding included residue 49 of the light chain variable region (VL). Back mutation of the VL49 residue (tyrosine to histidine) generated the humanized version HM1, which completely restored the binding affinity of its murine counterpart. Importantly, only one mutation in the framework may be necessary to recover the binding capability of a humanized antibody. Our data support that HM1 exerts potent antibody-dependent cellular cytotoxicity (ADCC). Hence, this antibody may have potential for further development as a candidate therapeutic agent and research tool.
Insights
Researchers developed a humanized antibody targeting epiregulin (EREG) for cancer therapy. A single mutation restored antibody binding affinity, enabling potent anti-cancer activity via antibody-dependent cellular cytotoxicity (ADCC).
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Growth factors, including epiregulin (EREG), are crucial in epithelial cancer progression.
- Targeting EREG offers a therapeutic strategy for various epithelial cancers.
Purpose of the Study:
- To develop humanized anti-EREG antibodies for potential cancer therapeutics.
- To investigate methods for restoring antigen-binding affinity in humanized antibodies.
Main Methods:
- Humanized anti-EREG antibodies were constructed using variable domain resurfacing.
- Molecular modeling identified key framework residues affecting antigen binding.
- Site-directed mutagenesis was employed to optimize antibody affinity.
Main Results:
- The initial humanized antibody (HM0) exhibited reduced antigen-binding affinity.
- Back mutation of a specific light chain variable region residue (VL49) restored binding affinity.
- The optimized antibody (HM1) demonstrated potent antibody-dependent cellular cytotoxicity (ADCC).
Conclusions:
- A single framework mutation can effectively restore humanized antibody binding affinity.
- The developed HM1 antibody shows promise as a therapeutic agent and research tool for EREG-targeted cancer therapy.
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