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Updated: Jul 9, 2026

Induction of Mesenchymal-Epithelial Transitions in Sarcoma Cells
Published on: April 7, 2017
Evidence that sprouty 2 is necessary for sarcoma formation by H-Ras oncogene-transformed human fibroblasts
Piro Lito1, Bryan D Mets, Susanne Kleff
1Carcinogenesis Laboratory, Department of Microbiology & Molecular Genetics, Michigan State University, East Lansing, Michigan 48824-1302, USA.
Abstract:
Sprouty 2 (Spry2) acts as an inhibitor of receptor tyrosine kinase signaling in various cellular contexts. Interestingly, Spry2 also prevents the c-Cbl-induced degradation of epidermal growth factor receptor (EGFR). We compared human fibroblasts malignantly transformed by overexpression of H-Ras(V12) oncogene to their nontransformed parental cells and found that the malignant cells express a high level of Spry2. These cells also exhibited an increase in the level of EGFR compared with their precursor cells. We found that intact EGFR was required if H-Ras-transformed cells were to grow in the absence of exogenous growth factors or form large colonies in agarose. When we decreased expression of Spry2, using a Spry2-specific shRNA, the H-Ras(V12)-transformed fibroblasts could no longer form large colonies in agarose, grow in reduced levels of serum, or form tumors in athymic mice. The level of active H-Ras in these cells remained unaltered. A similar, but less pronounced, effect in tumor formation was observed when Spry2 was down-regulated in human patient-derived fibrosarcoma cell lines. In H-Ras-transformed cells Spry2 sustained the level and the downstream signaling activity of EGFR. In the parental, non-H-Ras-transformed fibroblasts, expression of Spry2 resulted in the inhibition of H-Ras and ERK activation, suggesting that the positive effect of Spry2 in tumor formation is specific to H-Ras transformation. Co-immunoprecipitation studies with H-Ras-transformed cells revealed that Spry2 and H-Ras interact and that H-Ras interacts with Spry2-binding partners, c-Cbl and CIN85, in a Spry2-dependent manner. These data show that Spry2 plays a critical role in the ability of H-Ras-transformed cells to form tumors in athymic mice.
Insights
Sprouty 2 (Spry2) promotes tumor formation in H-Ras-transformed cells by stabilizing epidermal growth factor receptor (EGFR). Downregulating Spry2 inhibits tumor growth, highlighting its critical role in H-Ras-driven cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Sprouty 2 (Spry2) typically inhibits receptor tyrosine kinase signaling.
- Spry2 also prevents c-Cbl-mediated degradation of epidermal growth factor receptor (EGFR).
- H-Ras oncogene transformation leads to increased Spry2 and EGFR levels in human fibroblasts.
Purpose of the Study:
- To investigate the role of Spry2 in H-Ras-transformed cells and tumor formation.
- To determine how Spry2 influences EGFR levels and signaling in malignant transformation.
- To elucidate the interaction between Spry2, H-Ras, and downstream signaling pathways.
Main Methods:
- Comparison of H-Ras(V12)-transformed fibroblasts with parental cells.
- Spry2 downregulation using Spry2-specific shRNA.
- Assessment of cell growth, colony formation in agarose, and tumor formation in athymic mice.
- Co-immunoprecipitation studies to analyze protein interactions.
Main Results:
- H-Ras-transformed cells exhibit high Spry2 and EGFR levels, crucial for growth and anchorage-independent colony formation.
- Spry2 downregulation abrogated tumor formation in mice and impaired growth in reduced serum.
- Spry2 sustains EGFR levels and downstream signaling in H-Ras-transformed cells.
- Spry2 interacts with H-Ras, facilitating H-Ras interaction with c-Cbl and CIN85.
Conclusions:
- Spry2 plays a critical role in H-Ras-driven tumor formation by stabilizing EGFR and promoting its signaling.
- The pro-tumorigenic function of Spry2 is specific to H-Ras transformation.
- Spry2 represents a potential therapeutic target in H-Ras-associated cancers.
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