Epidermal Growth Factor Receptor Dimerization and Activation Require Ligand-Induced Conformational Changes in the Dimer Interface
- 1 September 2005
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 25 (17), 7734-42
- https://doi.org/10.1128/mcb.25.17.7734-7742.2005
Abstract
Structural studies have shown that ligand-induced epidermal growth factor receptor (EGFR) dimerization involves major domain rearrangements that expose a critical dimerization arm. However, simply exposing this arm is not sufficient for receptor dimerization, suggesting that additional ligand-induced dimer contacts are required. To map these contributions to the dimer interface, we individually mutated each contact suggested by crystallographic studies and analyzed the effects on receptor dimerization, activation, and ligand binding. We find that domain II contributes >90% of the driving energy for dimerization of the extracellular region, with domain IV adding little. Within domain II, the dimerization arm forms much of the dimer interface, as expected. However, a loop from the sixth disulfide-bonded module (immediately C-terminal to the dimerization arm) also makes a critical contribution. Specific ligand-induced conformational changes in domain II are required for this loop to contribute to receptor dimerization, and we identify a set of ligand-induced intramolecular interactions that appear to be important in driving these changes, effectively "buttressing" the dimer interface. Our data also suggest that similar conformational changes may determine the specificity of ErbB receptor homo- versus heterodimerization.Keywords
This publication has 31 references indexed in Scilit:
- ErbB3/HER3 does not homodimerize upon neuregulin binding at the cell surfaceFEBS Letters, 2004
- Extracellular domains drive homo- but not hetero-dimerization of erbB receptorsThe EMBO Journal, 2000
- Ligand-Binding Enhances the Affinity of Dimerization of the Extracellular Domain of the Epidermal Growth Factor ReceptorThe Journal of Biochemistry, 1997
- Two EGF molecules contribute additively to stabilization of the EGFR dimerThe EMBO Journal, 1997
- Epidermal Growth Factor-related Peptides Activate Distinct Subsets of ErbB Receptors and Differ in Their Biological ActivitiesJournal of Biological Chemistry, 1996
- Epidermal growth factor-related peptides and their receptors in human malignanciesCritical Reviews in Oncology/Hematology, 1995
- Expression of EGF, TGF-alpha and EGFR in squamous cell lung carcinomas.1992
- Signal transduction by receptors with tyrosine kinase activityCell, 1990
- Human Breast Cancer: Correlation of Relapse and Survival with Amplification of the HER-2/ neu OncogeneScience, 1987
- EXPRESSION OF EPIDERMAL GROWTH-FACTOR RECEPTORS IN HUMAN-BRAIN TUMORS1984