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Published on: March 30, 2019
Snail1 expression in endothelial cells controls growth, angiogenesis and differentiation of breast tumors
David Cabrerizo-Granados1,2, Raúl Peña1, Laura Palacios1
1Programa de Recerca en Càncer, Institut Hospital del Mar d'Investigacions Mèdiques (IMIM), Unidad Asociada al CSIC, Barcelona, Spain.
Abstract:
Snail1 is a transcriptional factor required for epithelial to mesenchymal transition and activation of cancer-associated fibroblasts (CAF). Apart from that, tumor endothelial cells also express Snail1. Here, we have unraveled the role of Snail1 in this tissue in a tumorigenic context. Methods: We generated transgenic mice with an endothelial-specific and inducible Snail1 depletion. This murine line was crossed with MMTV-PyMT mice that develop mammary gland tumors and the consequence of Snail1 depletion in the endothelium were investigated. We also interfere Snail1 expression in cultured endothelial cells. Results: Specific Snail1 depletion in the endothelium of adult mice does not promote an overt phenotype; however, it delays the formation of mammary gland tumors in MMTV-PyMT mice. These effects are associated to the inability of Snail1-deficient endothelial cells to undergo angiogenesis and to enhance CAF activation in a paracrine manner. Moreover, tumors generated in mice with endothelium-specific Snail1 depletion are less advanced and show a papillary phenotype. Similar changes on onset and tumor morphology are observed by pretreatment of MMTV-PyMT mice with the angiogenic inhibitor Bevacizumab. Human breast papillary carcinomas exhibit a lower angiogenesis and present lower staining of Snail1, both in endothelial and stromal cells, compared with other breast neoplasms. Furthermore, human breast tumors datasets show a strong correlation between Snail1 expression and high angiogenesis. Conclusion: These findings show a novel role for Snail1 in endothelial cell activation and demonstrate that these cells impact not only on angiogenesis, but also on tumor onset and phenotype.
Insights
Snail1 in tumor endothelial cells is crucial for angiogenesis and cancer-associated fibroblast activation. Depleting Snail1 in these cells delays mammary tumor formation and alters tumor characteristics.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Snail1 is a transcription factor involved in epithelial-mesenchymal transition and cancer-associated fibroblast activation.
- Tumor endothelial cells express Snail1, suggesting a role in the tumor microenvironment.
Purpose of the Study:
- To investigate the role of Snail1 in endothelial cells within a tumorigenic context.
- To determine the impact of endothelial Snail1 depletion on mammary gland tumor development.
Main Methods:
- Generated transgenic mice with inducible, endothelial-specific Snail1 depletion.
- Crossed these mice with MMTV-PyMT mice for mammary tumor studies.
- Investigated Snail1's role in cultured endothelial cells.
Main Results:
- Endothelial Snail1 depletion delayed mammary tumor formation in MMTV-PyMT mice.
- Snail1 deficiency in endothelial cells impaired angiogenesis and paracrine activation of cancer-associated fibroblasts.
- Tumors in depleted mice were less advanced and exhibited a papillary phenotype, similar to bevacizumab treatment.
- Human papillary breast carcinomas showed reduced angiogenesis and Snail1 staining compared to other breast neoplasms.
Conclusions:
- Snail1 plays a novel role in endothelial cell activation.
- Endothelial Snail1 influences angiogenesis, tumor onset, and tumor phenotype.
- These findings highlight endothelial Snail1 as a potential therapeutic target.
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