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Updated: Jun 15, 2026

Deciphering the Structural Effects of Activating EGFR Somatic Mutations with Molecular Dynamics Simulation
Published on: May 20, 2020
Effects of an EGFR-binding affibody molecule on intracellular signaling pathways
E Nordberg1, L Ekerljung, S H Sahlberg
1Biomedical Radiation Sciences, Department of Oncology, Radiology and Clinical Immunology, Rudbeck Laboratory, Uppsala University, SE-751 85 Uppsala, Sweden.
Abstract:
Effects on intracellular signaling were studied in cells treated with the affibody molecule (ZEGFR:955)2 that targets the epithelial growth factor receptor (EGFR). EGFR is overexpressed in many types of cancers and plays a fundamental role in cell signaling and it is of interest to find targeting agents capable of blocking the receptor. The clinically approved antibody cetuximab (Erbitux) and the natural ligand EGF were included as reference molecules. Two EGFR-rich cell lines, A-431 and U-343, were exposed to the three targeting agents and lysed. The cell lysates were immunoprecipitated with the receptors, or directly separated by SDS-Page. Autophosphorylation of the receptors and phosphorylation of the downstream signaling proteins Erk and Akt, were evaluated by Western blotting. Although the three different agents compete for the same binding site on EGFR, they influenced the signaling differently. The affibody molecule did not induce autophosphorylation of EGFR or any other receptor in the EGFR-family but, in spite of this, induced phosphorylation of Erk in both cell lines and Akt in the A-431 cells. Thus, the results suggest that the signaling pattern induced by (ZEGFR:955)2 is only partly similar to that induced by cetuximab. This makes the affibody molecule a potentially interesting alternative to cetuximab for EGFR-targeted therapy since it might give different therapy-related effects on tumor cells and different side effects on normal tissues.
Insights
A novel affibody molecule targeting the epithelial growth factor receptor (EGFR) showed distinct intracellular signaling effects compared to cetuximab. This suggests potential for different therapeutic outcomes and side effects in cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Epidermal Growth Factor Receptor (EGFR) is overexpressed in many cancers, driving cell signaling.
- Targeting agents that block EGFR are of significant interest for cancer therapy.
Purpose of the Study:
- To investigate the effects of an affibody molecule (ZEGFR:955)2 on intracellular signaling pathways mediated by EGFR.
- To compare the signaling profile of (ZEGFR:955)2 with the clinically approved antibody cetuximab and the natural ligand EGF.
Main Methods:
- Treatment of EGFR-rich cell lines (A-431, U-343) with (ZEGFR:955)2, cetuximab, and EGF.
- Analysis of receptor and downstream protein phosphorylation (Erk, Akt) using Western blotting after immunoprecipitation or SDS-PAGE.
Main Results:
- All three agents competed for the EGFR binding site but induced different signaling patterns.
- (ZEGFR:955)2 did not induce EGFR autophosphorylation but activated Erk and Akt signaling.
- Signaling induced by (ZEGFR:955)2 was only partly similar to that of cetuximab.
Conclusions:
- The affibody molecule (ZEGFR:955)2 modulates EGFR signaling distinctively.
- This unique signaling profile suggests (ZEGFR:955)2 as a potential alternative to cetuximab for EGFR-targeted therapy, possibly yielding different clinical effects and side effect profiles.
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