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Published on: June 15, 2017
ErbB receptors and EGF-like ligands: cell lineage determination and oncogenesis through combinatorial signaling
R Pinkas-Kramarski1, I Alroy, Y Yarden
1Department of Molecular Cell Biology, The Weizmann Institute of Science, Rehovot, Israel.
Abstract:
The ErbB/HER family of transmembrane receptor tyrosine kinases includes four members that bind more than two dozens ligands sharing an epidermal growth factor- (EGF)3 like motif. This family plays a pivotal role in cell lineage determination in a variety of tissues, including mesenchyme-epithelial inductive processes and the interactions between neurons and muscle, glia and Schwann cells. Certain ligands and receptors of the family, especially the ErbB-2 receptor tyrosine kinase, contribute to a relatively virulent phenotype of some human tumors; most notable are carcinomas of secretory epithelia. This large variety of biological signals is generated through a combinatorial network of signal transduction in which different ErbB ligands are apparently capable of stabilizing discrete homo- and heterodimeric receptor complexes, each coupled to a specific set of cytoplasmic signaling proteins. Because each receptor is unique in terms of catalytic activity, cellular routing and transmodulation, the resulting network allows not only an enormous potential for signal diversification but also fine tuning and stringent control of cellular functions. ErbB-2 emerges as a master coordinator of the network, prolonging and amplifying signaling by decelerating the dissociation rates of its heterologous ligands. Thus, the tumorigenic action of ErbB-2 may be attributed to its ability to act as a shared signaling subunit, rather than by functioning as a bone fide receptor.
Insights
The ErbB/HER family, including ErbB-2, is crucial for cell signaling and development. ErbB-2 amplifies signals, potentially driving tumor growth by acting as a signaling hub, not a traditional receptor.
Area of Science:
- Molecular Biology
- Cell Signaling
- Cancer Biology
Background:
- The ErbB/HER family comprises four transmembrane receptor tyrosine kinases binding numerous ligands.
- This family is vital for cell development, tissue interactions, and implicated in aggressive human tumors, particularly carcinomas.
Purpose of the Study:
- To elucidate the signaling network of the ErbB/HER family, focusing on the role of ErbB-2.
- To understand how ErbB-2 contributes to tumorigenesis through its unique signaling properties.
Main Methods:
- Analysis of combinatorial signaling networks.
- Investigation of receptor tyrosine kinase function and interactions.
- Study of ligand-receptor dynamics and signal transduction pathways.
Main Results:
- ErbB/HER family members form diverse homo- and heterodimeric complexes, generating varied biological signals.
- ErbB-2 acts as a master coordinator, prolonging and amplifying signals by slowing ligand dissociation.
- Tumorigenic activity of ErbB-2 is linked to its role as a shared signaling subunit.
Conclusions:
- The ErbB/HER network allows extensive signal diversification and precise control of cellular functions.
- ErbB-2's function as a signaling amplifier, rather than a receptor, is key to its role in aggressive cancers.
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