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All ErbB receptors other than the epidermal growth factor receptor are endocytosis impaired
J Baulida1, M H Kraus, M Alimandi
1Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146, USA.
Abstract:
Four transmembrane tyrosine kinases constitute the ErbB receptor family: the epidermal growth factor (EGF) receptor, ErbB-2, ErbB-3, and ErbB-4. We have measured the endocytic capacities of all four members of the EGF receptor family, including ErbB-3 and ErbB-4, which have not been described previously. EGF-responsive chimeric receptors containing the EGF receptor extracellular domain and different ErbB cytoplasmic domains (EGFR/ErbB) have been employed. The capacity of these growth factor-receptor complexes to mediate 125I-EGF internalization, receptor down-regulation, receptor degradation, and receptor co-immunoprecipitation with AP-2 was assayed. In contrast to the EGF receptor, all EGFR/ErbB receptors show impaired ligand-induced rapid internalization, down-regulation, degradation, and AP-2 association. Also, we have analyzed the heregulin-responsive wild-type ErbB-4 receptor, which does not mediate the rapid internalization of 125I-heregulin, demonstrates no heregulin-regulated receptor degradation, and fails to form association complexes with AP-2. Despite the substantial differences in ligand-induced receptor trafficking between the EGF and ErbB-4 receptors, EGF and heregulin have equivalent capacities to stimulate DNA synthesis in quiescent cells. These results show that the ligand-dependent down-regulation mechanism of the EGF receptor, surprisingly, is not a property of any other known ErbB receptor family member. Since endocytosis is thought to be an attenuation mechanism for growth factor-receptor complexes, these data imply that substantial differences in attenuation mechanisms exist within one family of structurally related receptors.
Insights
The epidermal growth factor (EGF) receptor family members exhibit distinct endocytic capacities. Unlike the EGF receptor, other ErbB family receptors show impaired internalization and down-regulation, suggesting varied attenuation mechanisms.
Area of Science:
- Cellular Biology
- Molecular Biology
- Signal Transduction
Background:
- The ErbB receptor family, including the epidermal growth factor (EGF) receptor, plays crucial roles in cell growth and survival.
- Understanding the endocytic trafficking of these receptors is vital for comprehending their signaling dynamics and regulation.
Purpose of the Study:
- To investigate and compare the endocytic capacities of all four ErbB receptor family members.
- To determine if ligand-induced internalization, down-regulation, and degradation are conserved mechanisms across the ErbB family.
Main Methods:
- Utilized EGF-responsive chimeric receptors (EGFR/ErbB) with varying ErbB cytoplasmic domains.
- Assayed 125I-EGF internalization, receptor down-regulation, degradation, and association with AP-2.
- Analyzed wild-type ErbB-4 receptor responses to heregulin.
Main Results:
- All EGFR/ErbB chimeric receptors displayed impaired ligand-induced internalization, down-regulation, degradation, and AP-2 association compared to the EGF receptor.
- Wild-type ErbB-4 receptor showed no rapid internalization or degradation of heregulin and failed to associate with AP-2.
- Despite trafficking differences, EGF and heregulin equivalently stimulated DNA synthesis.
Conclusions:
- The ligand-dependent down-regulation mechanism of the EGF receptor is not a shared property among ErbB family members.
- Significant variations in receptor attenuation mechanisms exist within the ErbB receptor family, despite structural similarities.