SEMA6C: a novel adhesion-independent FAK and YAP activator, required for cancer cell viability and growth
Damon Fard1, Erika Testa1, Valentina Panzeri2
1Department of Life Sciences and Public Health, Università Cattolica del Sacro Cuore, Rome, Italy.
Abstract:
Transmembrane semaphorins are signaling molecules, controlling axonal wiring and embryo development, which are increasingly implicated in human diseases. Semaphorin 6C (Sema6C) is a poorly understood family member and its functional role is still unclear. Upon targeting Sema6C expression in a range of cancer cells, we observed dramatic growth suppression, decreased ERK phosphorylation, upregulation of cell cycle inhibitor proteins p21, p27 and p53, and the onset of cell senescence, associated with activation of autophagy. These data are consistent with a fundamental requirement for Sema6C to support viability and growth in cancer cells. Mechanistically, we unveiled a novel signaling pathway elicited by Sema6C, and dependent on its intracellular domain, mediated by tyrosine kinases c-Abl and Focal Adhesion Kinase (FAK). Sema6C was found in complex with c-Abl, and induced its phosphorylation, which in turn led to FAK activation, independent of cell-matrix adhesion. Sema6C-induced FAK activity was furthermore responsible for increased nuclear localization of YAP transcriptional regulator. Moreover, Sema6C conferred YAP signaling-dependent long-term cancer cell survival upon nutrient deprivation. In conclusion, our findings demonstrate that Sema6C elicits a cancer promoting-signaling pathway sustaining cell viability and self-renewal, independent of growth factors and nutrients availability.
Insights
Semaphorin 6C (Sema6C) supports cancer cell growth and survival. Inhibiting Sema6C triggers senescence and autophagy, revealing a novel cancer-promoting pathway essential for tumor viability.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Transmembrane semaphorins are crucial signaling molecules in development and disease.
- Semaphorin 6C (Sema6C) function and role in cancer remain largely undefined.
Purpose of the Study:
- To investigate the role of Semaphorin 6C (Sema6C) in cancer cell viability and signaling.
- To elucidate the molecular mechanisms underlying Sema6C-mediated cancer cell support.
Main Methods:
- Targeting Sema6C expression in various cancer cell lines.
- Assessing cell growth, proliferation, cell cycle, senescence, and autophagy markers.
- Investigating signaling pathways involving tyrosine kinases (c-Abl, FAK) and YAP.
Main Results:
- Sema6C expression is essential for cancer cell viability and growth.
- Sema6C targeting induced growth suppression, senescence, and autophagy.
- A novel pathway involving Sema6C, c-Abl, FAK, and YAP sustains cancer cell survival, independent of external nutrients.
Conclusions:
- Semaphorin 6C (Sema6C) acts as a crucial promoter of cancer cell viability and self-renewal.
- The Sema6C-c-Abl-FAK-YAP signaling axis represents a potential therapeutic target for cancer treatment.
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