RET modulates cell adhesion via its cleavage by caspase in sympathetic neurons
Jorge R Cabrera1, Jimena Bouzas-Rodriguez, Servane Tauszig-Delamasure
1Apoptosis, Cancer, and Development Laboratory, Equipe labellisée La Ligue, Centre de Cancérologie de Lyon, INSERM U1052, CNRS UMR586, Université de Lyon, 69008 Lyon, France.
Abstract:
RET is a tyrosine kinase receptor involved in numerous cellular mechanisms including proliferation, neuronal navigation, migration, and differentiation upon binding with glial cell derived neurotrophic factor family ligands. RET is an atypical tyrosine kinase receptor containing four cadherin domains in its extracellular part. Furthermore, it has been shown to act as a dependence receptor. Such a receptor is active in the absence of ligand, triggering apoptosis through a mechanism that requires receptor intracellular caspase cleavage. However, different data suggest that RET is not always associated with the cell death/survival balance but rather provides positional information. We demonstrate here that caspase cleavage of RET is involved in the regulation of adhesion in sympathetic neurons. The cleavage of RET generates an N-terminal truncated fragment that functions as a cadherin accessory protein, modifying cadherin environment and potentiating cadherin-mediated cell aggregation. Thus, the caspase cleavage of RET generates two RET fragments: one intracellular domain that can trigger cell death in apoptotic permissive settings, and one membrane-anchored ectodomain with cadherin accessory activity. We propose that this latter function may notably be important for the adequate development of the superior cervical ganglion.
Insights
Caspase cleavage of the RET receptor tyrosine kinase generates fragments that regulate cell adhesion in neurons. One fragment acts as a cadherin accessory protein, promoting cell aggregation crucial for nervous system development.
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- The RET receptor tyrosine kinase (RTK) is crucial for cellular functions like proliferation and neuronal development.
- RET acts as a dependence receptor, triggering apoptosis via caspase cleavage in the absence of its ligand.
- Emerging evidence suggests RET's role extends beyond cell survival to providing positional information.
Purpose of the Study:
- To investigate the role of RET caspase cleavage in neuronal adhesion.
- To elucidate the function of RET fragments generated by caspase cleavage.
Main Methods:
- Analysis of RET cleavage products in sympathetic neurons.
- Characterization of the functional activity of RET fragments.
Main Results:
- Caspase cleavage of RET in sympathetic neurons regulates cell adhesion.
- Cleavage yields an N-terminal truncated fragment with cadherin accessory protein activity.
- This fragment modifies the cellular environment, enhancing cadherin-mediated cell aggregation.
Conclusions:
- Caspase cleavage of RET produces two functional fragments: one involved in apoptosis and another with cadherin accessory activity.
- The membrane-anchored ectodomain fragment plays a significant role in regulating cell adhesion.
- This cadherin accessory function is vital for the proper development of the superior cervical ganglion.
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