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.

Biomedicines
|September 28, 2021
PubMed

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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