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Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Targeting ErbB3 Receptor in Cancer with Inhibitory Antibodies from Llama
Igor E Eliseev1,2,3, Valeria M Ukrainskaya3, Anna N Yudenko4
1Laboratory of Renewable Energy Sources, Alferov University, St. Petersburg 194021, Russia.
Abstract:
The human ErbB3 receptor confers resistance to the pharmacological inhibition of EGFR and HER2 receptor tyrosine kinases in cancer, which makes it an important therapeutic target. Several anti-ErbB3 monoclonal antibodies that are currently being developed are all classical immunoglobulins. We took a different approach and discovered a group of novel heavy-chain antibodies targeting the extracellular domain of ErbB3 via a phage display of an antibody library from immunized llamas. We first produced three selected single-domain antibodies, named BCD090-P1, BCD090-M2, and BCD090-M456, in E. coli, as SUMO fusions that yielded up to 180 mg of recombinant protein per liter of culture. Then, we studied folding, aggregation, and disulfide bond formation, and showed their ultimate stability with half-denaturation of the strongest candidate, BCD090-P1, occurring in 8 M of urea. In surface plasmon resonance experiments, two most potent antibodies, BCD090-P1 and BCD090-M2, bound the extracellular domain of ErbB3 with 1.6 nM and 15 nM affinities for the monovalent interaction, respectively. The receptor binding was demonstrated by immunofluorescent confocal microscopy on four different ErbB3+ cancer cell lines. We observed that BCD090-P1 and BCD090-M2 bind noncompetitively to two distinct epitopes on the receptor. Both antibodies inhibited the ErbB3-driven proliferation of MCF-7 breast adenocarcinoma cells and HER2-overexpressing SK-BR-3 cells, with the EC50 in the range of 0.1-25 μg/mL. BCD090-M2 directly blocks ligand binding, whereas BCD090-P1 does not compete with the ligand and presumably acts through a distinct allosteric mechanism. We anticipate that these llama antibodies can be used to engineer new biparatopic anti-ErbB3 or bispecific anti-ErbB2/3 antibodies.
Insights
Researchers developed novel llama heavy-chain antibodies targeting the ErbB3 receptor, a key target for cancer resistance. These stable, high-affinity antibodies inhibit cancer cell proliferation and offer potential for new bispecific cancer therapies.
Area of Science:
- Immunology and Cancer Therapeutics
- Recombinant Antibody Engineering
Background:
- The ErbB3 receptor is a critical target in cancer due to its role in conferring resistance to EGFR and HER2 inhibition.
- Existing anti-ErbB3 therapies primarily utilize classical immunoglobulin formats.
Purpose of the Study:
- To discover and characterize novel heavy-chain antibodies targeting the extracellular domain of ErbB3.
- To evaluate the therapeutic potential of these antibodies in inhibiting cancer cell proliferation.
Main Methods:
- Phage display utilizing an antibody library from immunized llamas to identify ErbB3-specific single-domain antibodies.
- Recombinant expression in E. coli, protein characterization (folding, stability), surface plasmon resonance for binding affinity, and immunofluorescent microscopy for receptor binding.
- Functional assays to assess inhibition of cancer cell proliferation and epitope mapping.
Main Results:
- Three single-domain antibodies (BCD090-P1, BCD090-M2, BCD090-M456) were produced with high yields and demonstrated excellent stability.
- BCD090-P1 and BCD090-M2 exhibited high affinity (1.6 nM and 15 nM, respectively) for ErbB3 and bound distinct epitopes.
- Both antibodies effectively inhibited ErbB3-driven proliferation in multiple cancer cell lines, with BCD090-M2 blocking ligand binding and BCD090-P1 acting via an allosteric mechanism.
Conclusions:
- Novel llama heavy-chain antibodies targeting ErbB3 have been successfully developed and characterized.
- These antibodies demonstrate potent anti-proliferative activity and distinct mechanisms of action.
- The findings suggest potential for engineering advanced biparatopic or bispecific antibodies for cancer therapy.
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