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Updated: Mar 31, 2026

Induction and Analysis of Epithelial to Mesenchymal Transition
Published on: August 27, 2013
Somatostatin activates Ras and ERK1/2 via a G protein βγ-subunit-initiated pathway in thyroid cells
Francisco J Rodríguez-Álvarez1, Eva Jiménez-Mora1, María Caballero1
1Departamento de Biología de Sistemas, Unidad Bioquímica y Biología Molecular. Facultad de Medicina, Universidad de Alcalá, Ctra. Madrid-Barcelona Km.33,6, 28871, Alcalá de Henares, Madrid, Spain.
Abstract:
Somatostatin (SST) is one of the main regulators of thyroid function. It acts by binding to its receptors, which lead to the dissociation of G proteins into Gαi and Gβγ subunits. However, much less is known about the function of Gβγ in thyroid cells. Here, we studied the role of SST and Gβγ dimers released upon SST stimulation on the Ras-ERK1/2 pathway in FTRL-5 thyroid cells. We demonstrate that SST activates Ras through Gi proteins, since SST-induced Ras activation is inhibited by pertussis toxin. Moreover, the specific sequestration of Gβγ dimers decreases Ras-GTP and phosphorylated ERK1/2 levels, and overexpression of Gβγ increases ERK1/2 phosphorylation induced by SST, indicating that Gβγ dimers released after SST treatment mediate activation of Ras and ERK1/2. On the other hand, SST treatment does not modify the expression of the thyroid differentiation marker sodium/iodide symporter (NIS) through ERK1/2 activation. However, SST increases AKT activation and the inhibition of the Src/PI3K/AKT pathway increases NIS levels in SST-treated cells. Thus, we conclude that, in thyroid cells, signalling from SST receptors to ERK1/2 involves a Gβγ-mediated signal acting on a Ras-dependent pathway. Moreover, we demonstrate that SST might regulates NIS expression through a Src/PI3K/AKT-dependent mechanism, but not through ERK1/2 signalling, showing the main role of this hormone in thyroid function.
Insights
Somatostatin (SST) regulates thyroid function by activating Ras-ERK1/2 pathways via Gβγ dimers. SST also influences sodium/iodide symporter (NIS) expression through Src/PI3K/AKT signaling, not ERK1/2.
Area of Science:
- Endocrinology
- Molecular Cell Biology
Background:
- Somatostatin (SST) is a key regulator of thyroid hormone production.
- The role of G protein Gβγ subunits in SST signaling within thyroid cells remains largely uncharacterized.
Purpose of the Study:
- To investigate the involvement of SST and Gβγ dimers in the Ras-ERK1/2 pathway in FTRL-5 thyroid cells.
- To elucidate the signaling mechanisms by which SST regulates thyroid differentiation markers like sodium/iodide symporter (NIS).
Main Methods:
- Utilized pertussis toxin to inhibit Gi proteins.
- Employed Gβγ dimer sequestration and overexpression techniques.
- Assessed Ras-GTP levels and ERK1/2 phosphorylation.
- Investigated the impact of SST on AKT activation and the Src/PI3K/AKT pathway.
Main Results:
- SST activates Ras via Gi proteins, demonstrated by pertussis toxin inhibition.
- Gβγ dimers mediate SST-induced Ras-ERK1/2 pathway activation.
- SST increases AKT activation, and inhibiting the Src/PI3K/AKT pathway enhances NIS levels.
- SST does not affect NIS expression through ERK1/2 activation.
Conclusions:
- In thyroid cells, SST receptor signaling to ERK1/2 involves Gβγ dimers and a Ras-dependent pathway.
- SST regulates NIS expression via a Src/PI3K/AKT-dependent mechanism, independent of ERK1/2 signaling.
- These findings highlight distinct signaling pathways for SST's diverse roles in thyroid function.
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