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Updated: Apr 18, 2026

Studying the Stoichiometry of Epidermal Growth Factor Receptor in Intact Cells using Correlative Microscopy
Published on: September 11, 2015
Conformational nanobodies reveal tethered epidermal growth factor receptor involved in EGFR/ErbB2 predimers
Damien Nevoltris1, Benjamin Lombard, Elodie Dupuis
1Institut National de la Santé et de la Recherche Médicale , U1068, Centre de Recherche en Cancérologie de Marseille, Marseille F-13009, France.
Abstract:
The epidermal growth factor receptor (EGFR) is a cell-surface receptor with a single transmembrane domain and tyrosine kinase activity carried by the intracellular domain. This receptor is one of the four members of the ErbB family including ErbB2, ErbB3, and ErbB4. Ligand binding, like EGF binding, induces a conformational rearrangement of the receptor and induces a homo/hetero dimerization essentially with ErbB family receptors that leads to the phosphorylation of the kinase domain, triggering a signaling cascade. EGFR can also form inactive dimers in a ligand-independent way through interactions between cytoplasmic domains. To date, the conformation of EGFR extracellular domain engaged in these inactive dimers remains unclear. In this study, we describe the successful selection and characterization of llama anti-EGFR nanobodies and their use as innovative conformational sensors. We isolated three different specific anti-EGFR clones binding to three distinct epitopes. Interestingly, the binding of all three nanobodies was found highly sensitive to ligand stimulation. Two nanobodies, D10 and E10, can only bind the ligand-free EGFR conformation characterized by an intramolecular tether between domains II and IV, whereas nanobody G10 binds both ligand-free and ligand activated EGFR, with an 8-fold higher affinity for the extended conformation in the presence of ligand. Here we took advantage of these conformational probes to reveal the existence of tethered EGFR in EGFR/ErbB2 predimers. These biosensors represent important tools allowing the determination of EGFR conformations and should help the design of relevant inhibitors.
Insights
Researchers developed llama nanobodies to sense epidermal growth factor receptor (EGFR) conformations. These nanobodies revealed previously unknown EGFR structures in predimers, aiding inhibitor design.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Signaling
Background:
- Epidermal growth factor receptor (EGFR) is a key cell-surface receptor involved in signaling pathways.
- EGFR belongs to the ErbB family and dimerizes upon ligand binding, initiating downstream cascades.
- The extracellular domain conformation of inactive EGFR dimers is not well understood.
Purpose of the Study:
- To develop novel conformational sensors for EGFR.
- To characterize the distinct epitopes and ligand-binding sensitivities of anti-EGFR nanobodies.
- To investigate EGFR conformations in predimeric states.
Main Methods:
- Selection and characterization of llama anti-EGFR nanobodies.
- Epitope mapping and binding affinity studies.
- Utilizing nanobodies as biosensors to probe EGFR conformations.
Main Results:
- Three specific anti-EGFR nanobodies (D10, E10, G10) were isolated, binding distinct epitopes.
- Nanobodies D10 and E10 bind only ligand-free EGFR, indicating an intramolecular tether.
- Nanobody G10 binds both ligand-free and ligand-bound EGFR, with higher affinity for the extended conformation.
Conclusions:
- Llama anti-EGFR nanobodies serve as effective conformational sensors.
- These nanobodies revealed tethered EGFR within EGFR/ErbB2 predimers.
- The developed biosensors are valuable tools for studying EGFR conformations and designing inhibitors.
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