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Published on: March 27, 2020
Ezrin is key regulator of Src-induced malignant phenotype in three-dimensional environment
1Department of Pathology, University of Helsinki, Finland.
Abstract:
The oncogenic tyrosine kinase Src has a role in cancer development, especially by promoting invasive and metastatic behavior. It is, however, unclear which of the Src-regulated signaling cascades induce malignant phenotype in three-dimensional environment. One of Src substrates is ezrin, a cytoskeletal organiser and regulator of signal transduction. Ezrin expression correlates with poor outcome of diverse cancers and is essential in experimental metastatic osteosarcoma. We reconstituted genetically ezrin-deficient cells with wild-type (WT) or phosphorylation-deficient Y477F ezrin together with constitutively active Src. In two-dimensional cultures, Src induced malignant features regardless of the presence or absence of ezrin. In contrast, only WT ezrin-expressing cells grew efficiently in soft agar or in suspension. In Matrigel, only WT ezrin significantly promoted growth and invasion, and was targeted to specific regions on the plasma membrane. WT and Y477F ezrin-expressing cells showed marked differences only when growing or scattering in three-dimensional matrix. Additional experiments showed that Y477-phosphorylated ezrin is also needed for the growth of Src-transformed epithelial cells in three-dimensional matrix. Cells lacking functional ezrin had reduced cyclin D levels and fewer cells in G2+S phase, possibly as a consequence of abnormal mTOR signaling, as ezrin Y477F cells showed lower expression of phosphorylated intermediates downstream of mTOR than WT cells. We conclude that the pathways activated by Src depend on the type of environment and that ezrin is a crucial element of Src-induced malignant features in cells growing inside three-dimensional environment.
Insights
The oncogenic tyrosine kinase Src promotes cancer invasion. Ezrin, a key Src substrate, is essential for Src-induced malignant growth and invasion in three-dimensional environments, particularly when phosphorylated.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- The oncogenic tyrosine kinase Src drives cancer development, promoting invasion and metastasis.
- Src-regulated signaling pathways are critical for malignant phenotypes, especially in 3D environments.
- Ezrin, a Src substrate, is a cytoskeletal organizer linked to poor cancer prognosis.
Purpose of the Study:
- To investigate the role of ezrin phosphorylation in Src-induced malignant phenotypes within 3D environments.
- To elucidate the specific signaling pathways regulated by ezrin in 3D cancer progression.
- To determine the environmental dependency of Src-activated pathways.
Main Methods:
- Genetic reconstitution of ezrin-deficient cells with wild-type (WT) or Y477F ezrin.
- Co-expression with constitutively active Src.
- Culture in 2D, soft agar, suspension, and 3D Matrigel.
- Analysis of cell growth, invasion, membrane targeting, and cell cycle progression.
- Assessment of mTOR signaling pathway intermediates.
Main Results:
- In 3D cultures, WT ezrin, but not Y477F ezrin, significantly promoted cell growth and invasion.
- Y477-phosphorylated ezrin is crucial for Src-transformed epithelial cell growth in 3D matrices.
- Ezrin deficiency reduced cyclin D levels and G2+S phase cells, linked to altered mTOR signaling.
- Src-induced malignant features in 2D cultures were independent of ezrin, but 3D growth was ezrin-dependent.
Conclusions:
- Src-activated signaling pathways are context-dependent, varying with the cellular environment.
- Ezrin phosphorylation at Y477 is a critical mediator of Src-induced malignant characteristics in 3D.
- Ezrin acts as a crucial link between Src signaling and 3D cancer progression, influencing cell cycle and survival pathways.
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