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Differential effects of protein kinase A on Ras effector pathways
M J Miller1, L Rioux, G V Prendergast
1Department of Pharmacology, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104-6084, USA.
Abstract:
Ras mutants with the ability to interact with different effectors have played a critical role in the identification of Ras-dependent signaling pathways. We used two mutants, RasS35 and RasG37, which differ in their ability to bind Raf-1, to examine Ras-dependent signaling in thyroid epithelial cells. Wistar rat thyroid cells are dependent upon thyrotropin (TSH) for growth. Although TSH-stimulated mitogenesis requires Ras, TSH activates protein kinase A (PKA) and downregulates signaling through Raf and the mitogen-activated protein kinase (MAPK) cascade. Cells expressing RasS35, a mutant which binds Raf, or RasG37, a mutant which binds RalGDS, exhibited TSH-independent proliferation. RasS35 stimulated morphological transformation and anchorage-independent growth. RasG37 stimulated proliferation but not transformation as measured by these indices. TSH exerted markedly different effects on the Ras mutants and transiently repressed MAPK phosphorylation in RasS35-expressing cells. In contrast, TSH stimulated MAPK phosphorylation and growth in cells expressing RasG37. The Ras mutants, in turn, exerted differential effects on TSH signaling. RasS35 abolished TSH-stimulated changes in cell morphology and thyroglobulin expression, while RasG37 had no effect on these activities. Together, the data indicate that cross talk between Ras and PKA discriminates between distinct Ras effector pathways.
Insights
Ras mutants RasS35 and RasG37 promote thyroid cell proliferation independently of TSH. Cross-talk between Ras and protein kinase A (PKA) distinguishes between distinct Ras effector pathways, impacting cell growth and differentiation.
Area of Science:
- Cellular signaling pathways
- Endocrinology
- Molecular biology
Background:
- Ras proteins are key regulators of cellular signaling pathways.
- Thyroid epithelial cells rely on thyrotropin (TSH) for growth.
- TSH signaling involves protein kinase A (PKA) and the Ras-MAPK cascade.
Purpose of the Study:
- To investigate Ras-dependent signaling in thyroid epithelial cells using specific Ras mutants.
- To elucidate the distinct roles of Ras effector pathways in TSH-mediated cell growth and differentiation.
Main Methods:
- Utilized RasS35 (binds Raf-1) and RasG37 (binds RalGDS) mutants in Wistar rat thyroid cells.
- Assessed TSH-independent proliferation, morphological transformation, and anchorage-independent growth.
- Analyzed mitogen-activated protein kinase (MAPK) phosphorylation and TSH-stimulated gene expression.
Main Results:
- Both RasS35 and RasG37 induced TSH-independent proliferation.
- RasS35 promoted transformation, while RasG37 did not.
- TSH differentially affected MAPK phosphorylation and gene expression in cells expressing RasS35 versus RasG37.
- RasS35 abolished TSH-stimulated thyroglobulin expression and morphological changes.
Conclusions:
- Ras effector pathways are differentially regulated by the cross-talk with PKA.
- Distinct Ras effector pathways mediate specific cellular responses to TSH.
- This study identifies key mechanisms discriminating Ras signaling outcomes in thyroid cells.