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Production of Replication-Defective Retrovirus by Transient Transfection of 293T cells
Published on: December 4, 2007
An amphotropic retroviral vector expressing a mutant gsp oncogene: effects on human thyroid cells in vitro
1Clinical Research Center, Thyroid Tumor Biology Research Group, University of Wales College of Medicine, Cardiff, United Kingdom.
Abstract:
Point mutations of the gsp protooncogene (encoding the alpha-subunit of the Gs protein) that constitutively activate the cAMP signaling pathway are a common feature of and a plausible causative mechanism for thyroid hyperfunctioning adenomas (hot nodules). To investigate the extent to which mutant gsp acting alone can induce proliferation of thyroid follicular cells, we generated an amphotropic retroviral vector (based on the pBABE-neo plasmid and psi-CRIP packaging line) to permit stable introduction of a hemagglutinin-tagged Gln227-->Leu mutant gsp gene into normal human thyrocytes in vitro. The biological activity of the vector was confirmed by detection of HA-tagged Gsp protein expression and induction of cAMP synthesis in selected target cells. Normal human thyroid follicular cells in primary monolayer culture were infected with the gsp retroviral vector or with corresponding vectors expressing mutant H-ras or neo only as positive and negative controls, respectively. Although, as before, mutant ras generated 10-20 well differentiated epithelial colonies/dish of 10(5) infected cells, with an average lifespan of 15-20 population doublings, only small groups of no more than 15-50 differentiated thyrocytes were observed with the gsp vector. In addition to standard conditions (10% FCS), infections were performed in reduced serum (1% FCS, TSH, and insulin), in the presence of isobutylylmethylxanthine, or in the presence of agents capable of closing gap junctions, with no significant difference in outcome. Although little or no proliferative response was observed regardless of the conditions, there was clear evidence of morphological response (rearrangement of the actin cytoskeleton and increased cell size). The results suggest that gsp mutation may not be a sufficient proliferogenic stimulus by itself to account for hot nodule formation.
Insights
Point mutations in the gsp protooncogene activate the cAMP pathway, but this study found mutant gsp alone does not significantly proliferate thyroid cells. These findings suggest gsp mutations may not be the sole cause of thyroid hot nodules.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Activating mutations in the gsp protooncogene are linked to thyroid hyperfunctioning adenomas (hot nodules).
- These mutations constitutively activate the cAMP signaling pathway, a key cellular process.
Purpose of the Study:
- To determine if mutant gsp alone can induce proliferation of normal human thyroid follicular cells.
- To investigate the role of gsp mutations in the development of thyroid hot nodules.
Main Methods:
- Generated a retroviral vector for stable introduction of a hemagglutinin-tagged mutant gsp gene into human thyrocytes.
- Infected normal human thyroid follicular cells in vitro with the gsp vector, alongside H-ras and neo controls.
- Assessed cell proliferation, protein expression, cAMP synthesis, and morphological changes under various culture conditions.
Main Results:
- The gsp retroviral vector successfully expressed HA-tagged Gsp protein and increased cAMP synthesis.
- Mutant H-ras induced significant epithelial colony formation, while the gsp vector resulted in only small groups of thyrocytes.
- No significant proliferative response was observed with the gsp vector, even under altered culture conditions, though morphological changes occurred.
Conclusions:
- Mutant gsp, by itself, appears insufficient to induce significant proliferation of thyroid follicular cells.
- The findings suggest that other factors likely contribute to the formation of thyroid hyperfunctioning adenomas beyond gsp mutations alone.

