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Novel insight into mechanisms of ROS1 catalytic activation via loss of the extracellular domain
Kristen Jones1, Clare Keddy1, Chelsea Jenkins1
1Department of Pediatrics, School of Medicine, Papé Pediatric Research Institute, OHSU, Portland, OR, 97239, USA.
Abstract:
The ROS1 receptor tyrosine kinase (RTK) possesses the largest extracellular amino-terminal domain (ECD) among the human RTK family, yet the mechanisms regulating its activation are not fully understood. While chimeric ROS1 fusion proteins, resulting from chromosomal rearrangements, are well-known oncogenic drivers, their activation mechanisms also remain underexplored. To elucidate the role of the ROS1 ECD in catalytic regulation, we engineered a series of amino-terminal deletion mutants. Our functional studies compared the full-length ROS1 receptor, the CD74-ROS1 oncogenic fusion, and ECD-deleted ROS1 constructs, identifying the ECD regions that inhibit ROS1 tyrosine kinase activity. Notably, we found that deletion of the ROS1 ECD alone significantly increases constitutive catalytic activation and neoplastic transformation in the absence of an amino-terminal fusion partner, challenging the presumed necessity for a dimerization domain in the activation mechanism of kinase fusions in cancer. Our data suggest that inter-genic deletions resulting in the loss of the ECD may be underappreciated oncogenic drivers in cancer. Furthermore, our studies demonstrate that RNASE7 is not a ligand for the ROS1 receptor as previously reported, confirming that ROS1 remains an orphan receptor. Thus, the discovery of a ROS1 ligand remains an important future priority. These findings highlight the potential for disease-associated somatic aberrations or splice variants that modify the ROS1 ECD to promote constitutive receptor activation, warranting further investigation.
Insights
The ROS1 receptor tyrosine kinase's (RTK) large extracellular domain (ECD) normally inhibits its activity. Removing this ECD alone activates ROS1, suggesting ECD loss is an underappreciated cancer driver.
Area of Science:
- Molecular Biology
- Cancer Research
- Signal Transduction
Background:
- The ROS1 receptor tyrosine kinase (RTK) has the largest extracellular domain (ECD) among human RTKs, but its activation mechanisms are unclear.
- Oncogenic ROS1 fusions are known drivers of cancer, yet their activation pathways are poorly understood.
Purpose of the Study:
- To investigate the role of the ROS1 ECD in regulating its catalytic activity.
- To determine if ROS1 ECD deletion alone can lead to constitutive activation and oncogenesis.
Main Methods:
- Engineered amino-terminal deletion mutants of the ROS1 receptor.
- Compared functional activity of full-length ROS1, CD74-ROS1 fusion, and ECD-deleted ROS1 constructs.
- Assessed constitutive catalytic activation and neoplastic transformation.
Main Results:
- Deletion of the ROS1 ECD significantly increases constitutive catalytic activation and neoplastic transformation.
- This activation occurs independently of an amino-terminal fusion partner, challenging existing models.
- RNASE7 is confirmed not to be a ligand for ROS1, which remains an orphan receptor.
Conclusions:
- Loss of the ROS1 ECD, through intergenic deletions, may represent an underappreciated oncogenic driver in cancer.
- Somatic aberrations or splice variants affecting the ROS1 ECD could promote constitutive receptor activation.
- Identifying a ROS1 ligand remains a critical future research priority.
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