Related Experiment Videos
Multiple binding sites in the growth factor receptor Xmrk mediate binding to p59fyn, GRB2 and Shc
1Department of Physiological Chemistry I, University of Würzburg, Germany. wellbrock@biozentrum.uni.wuerzburg.de
Abstract:
Melanoma formation in Xiphoporus is initiated by overexpression of the EGFR-related receptor tyrosine kinase Xmrk (Xiphoporus melanoma receptor kinase). This receptor is activated in fish melanoma as well as in a melanoma-derived cell line (PSM) resulting in constitutive Xmrk-mediated mitogenic signaling. In order to define the underlying signaling pathway(s), triggered by the activated Xmrk receptor, we attempted to identify its physiological substrates. Examination of the Xmrk carboxyterminus for putative tyrosine autophosphorylation sites revealed the presence of potential binding motifs for GRB2 as well as for Shc. Binding of these adaptor proteins to the Xmrk receptor was detected in vitro and in cells expressing the mrk kinase. The GRB2 and Shc interactions with the receptor could be disrupted individually by phosphotyrosine peptides containing putative Xmrk autophosphorylation sites, indicating direct binding of both proteins. Recruitment of GRB2 by the constitutively activated Xmrk receptor led to strong MAP kinase activation in Xiphoporus melanoma cells. We also identified a high-affinity binding site for src-kinases (pYEDL) in the Xmrk carboxyterminus. Competition experiments with phosphopeptides comprising this site confirmed that it is used for high-affinity binding of Xiphoporus fyn (Xfyn) to Xmrk in melanoma cells. Thus, Xmrk can initiate different signaling pathways by using multiple substrate-binding sites to trigger proliferation of pigment cells.
Insights
The Xiphoporus melanoma receptor kinase (Xmrk) initiates melanoma by activating signaling pathways. Xmrk binds GRB2, Shc, and Xfyn, leading to pigment cell proliferation.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Melanoma in Xiphoporus fish is driven by the receptor tyrosine kinase Xmrk.
- Activated Xmrk leads to continuous mitogenic signaling in melanoma cells.
Purpose of the Study:
- To identify the signaling pathways downstream of the activated Xmrk receptor.
- To define the physiological substrates of Xmrk in melanoma formation.
Main Methods:
- In vitro and cellular binding assays to detect protein interactions.
- Phosphotyrosine peptide competition assays to confirm direct binding.
- Analysis of Xmrk carboxyterminus for binding motifs.
Main Results:
- Xmrk directly binds adaptor proteins GRB2 and Shc via its carboxyterminus.
- GRB2 recruitment by Xmrk activates MAP kinase signaling.
- Xmrk binds Xiphoporus fyn (Xfyn) through a specific src-kinase binding site.
Conclusions:
- Xmrk utilizes multiple substrate-binding sites to initiate distinct signaling pathways.
- These pathways contribute to the proliferation of pigment cells in Xiphoporus melanoma.