Ligand-induced EGF receptor oligomerization is kinase-dependent and enhances internalization

Publication date

2010

Authors

Hofman, E.G.ISNI 0000000393693098
Bader, A.N.ISNI 0000000393672852
Voortman, J.ISNI 0000000387521150
Van Den Heuvel, Dave J.ISNI 0000000419512946
Sigismund, S.
Verkleij, AISNI 0000000395149440
Gerritsen, H.C.ISNI 0000000114831882
van Bergen En Henegouwen, Paul M PORCID 0000-0001-6050-9042ISNI 0000000387765753

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Abstract

The current activation model of the EGF receptor (EGFR) predicts that binding of EGF results in dimerization and oligomerization of the EGFR, leading to the allosteric activation of the intracellular tyrosine kinase. Little is known about the regulatory mechanism of receptor oligomerization. In this study, we have employed FRET between identical fluorophores (homo-FRET) to monitor the dimerization and oligomerization state of the EGFR before and after receptor activation. Our data show that, in the absence of ligand, ∼40% of the EGFR molecules were present as inactive dimers or predimers. The monomer/predimer ratio was not affected by deletion of the intracellular domain. Ligand binding induced the formation of receptor oligomers, which were found in both the plasma membrane and intracellular structures. Ligand-induced oligomerization required tyrosine kinase activity and nine different tyrosine kinase substrate residues. This indicates that the binding of signaling molecules to activated EGFRs results in EGFR oligomerization. Induction of EGFR predimers or pre-oligomers using the EGFR fused to the FK506-binding protein did not affect signaling but was found to enhance EGF-induced receptor internalization. Our data show that EGFR oligomerization is the result of EGFR signaling and enhances EGFR internalization

Keywords

Fluorescence Resonance Energy Transfer (FRET), Protein Assembly, Protein Phosphorylation, Receptor Endocytosis, Signal Transduction, EGF, EGF Receptor

Citation

Hofman, E G, Bader, A N, Voortman, J, van den Heuvel, D J, Sigismund, S, Verkleij, A J, Gerritsen, H C & van Bergen en Henegouwen, P M P 2010, 'Ligand-induced EGF receptor oligomerization is kinase-dependent and enhances internalization', Journal of Biological Chemistry, vol. 285, no. 50, pp. 39481-39489. https://doi.org/0.1074/jbc.M110.164731