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Published on: May 19, 2016
Independent effects of Src kinase and podoplanin on anchorage independent cell growth and migration
Edward P Retzbach1, Stephanie A Sheehan1, Harini Krishnan2
1Department of Molecular Biology, and Graduate School of Biomedical Sciences, School of Osteopathic Medicine, Rowan University, Stratford, New Jersey, USA.
Abstract:
The Src tyrosine kinase is a strong tumor promotor. Over a century of research has elucidated fundamental mechanisms that drive its oncogenic potential. Src phosphorylates effector proteins to promote hallmarks of tumor progression. For example, Src associates with the Cas focal adhesion adaptor protein to promote anchorage independent cell growth. In addition, Src phosphorylates Cas to induce Pdpn expression to promote cell migration. Pdpn is a transmembrane receptor that can independently increase cell migration in the absence of oncogenic Src kinase activity. However, to our knowledge, effects of Src kinase activity on anchorage independent cell growth and migration have not been examined in the absence of Pdpn expression. Here, we analyzed the effects of an inducible Src kinase construct in knockout cells with and without exogenous Pdpn expression on cell morphology migration and anchorage independent growth. We report that Src promoted anchorage independent cell growth in the absence of Pdpn expression. In contrast, Src was not able to promote cell migration in the absence of Pdpn expression. In addition, continued Src kinase activity was required for cells to assume a transformed morphology since cells reverted to a nontransformed morphology upon cessation of Src kinase activity. We also used phosphoproteomic analysis to identify 28 proteins that are phosphorylated in Src transformed cells in a Pdpn dependent manner. Taken together, these data indicate that Src utilizes Pdpn to promote transformed cell growth and motility in complementary, but parallel, as opposed to serial, pathways.
Insights
Src tyrosine kinase promotes tumor growth independently of Pdpn, but requires Pdpn for cell migration. This study reveals Src and Pdpn act in parallel pathways to drive cancer progression.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The Src tyrosine kinase is a known tumor promoter, driving cancer progression through protein phosphorylation.
- Src influences cell growth and migration, often through interactions with proteins like Cas and Pdpn.
Purpose of the Study:
- To investigate the roles of Src kinase activity and Pdpn expression in anchorage-independent cell growth and migration.
- To determine if Src-driven oncogenesis is dependent on Pdpn.
Main Methods:
- Utilized inducible Src kinase constructs in Pdpn knockout cells with and without exogenous Pdpn.
- Assessed cell morphology, migration, and anchorage-independent growth.
- Performed phosphoproteomic analysis to identify Src- and Pdpn-dependent phosphorylation events.
Main Results:
- Src promoted anchorage-independent cell growth even without Pdpn expression.
- Src failed to promote cell migration in the absence of Pdpn.
- Src kinase activity was essential for maintaining a transformed cell morphology.
- Identified 28 proteins phosphorylated in a Pdpn-dependent manner in Src-transformed cells.
Conclusions:
- Src utilizes Pdpn to promote transformed cell growth and motility.
- Src and Pdpn function in parallel pathways to drive cancer progression.
- Pdpn is critical for Src-mediated cell migration but not for anchorage-independent growth.
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