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Ha-ras interference with thyroid cell differentiation is associated with a down-regulation of thyroid transcription
J A Velasco1, A Acebrón, M Zannini
1Instituto de Investigaciones Biomédicas, Consejo Superior de Investigaciones Cientificas, Madrid, Spain.
Abstract:
Mechanisms responsible for the lack of thyroid-specific differentiation markers in Ha-ras transformed FRTL-5 cells have been investigated. In vivo cell labeling and immunoprecipitation demonstrate that phosphorylation of the thyroid transcription factor-1 (TTF-1) is clearly reduced in thyroid cells transformed with the Ha-ras oncogene. Fingerprinting analysis of phosphotryptic peptides from FRTL-5 and Ha-ras-FRTL-5 cells also reveals a heterogeneous pattern of TTF-1 phosphorylation in the transformed cell line. This heterogeneity is localized in the amino terminal cluster of phosphoserines, as determined by transfection of HeLa cells with TTF-1 mutants in which serine residues have been replaced by alanines. Amplification and nucleotide sequence of the 5'-coding region of the TTF-1 gene in Ha-ras-FRTL-5 cells rule out the possibility that differences in phosphorylation were the consequence of any mutational event affecting residues within the N-terminal protein sequence. Hypophosphorylated TTF-1 is still able to bind its DNA consensus sequence within the thyroglobulin promoter, although a reporter construct whose expression is exclusively dependent on TTF-1 is not transactivated. Transfection of Ha-ras-FRTL-5 cells with an expression vector encoding the cAMP dependent protein kinase A (PKA) catalytic subunit partially reestablishes TTF-1 transcriptional activity. Taken together, these results indicate that the lack of specific thyroid gene expression in Ha-ras-FRTL-5 cells could be a direct consequence of the inability of TTF-1 to promote transcription.
Insights
Ha-ras oncogene transformation reduces thyroid transcription factor-1 (TTF-1) phosphorylation in FRTL-5 cells. This hypophosphorylation impairs TTF-1
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Thyroid-specific differentiation markers are lost in Ha-ras transformed FRTL-5 cells.
- The role of thyroid transcription factor-1 (TTF-1) phosphorylation in this process is unclear.
Purpose of the Study:
- Investigate mechanisms underlying the loss of thyroid differentiation markers in Ha-ras transformed FRTL-5 cells.
- Determine the effect of Ha-ras transformation on TTF-1 phosphorylation and function.
Main Methods:
- In vivo cell labeling and immunoprecipitation to assess TTF-1 phosphorylation.
- Fingerprinting analysis of phosphotryptic peptides.
- Transfection of HeLa cells with TTF-1 mutants.
- Gene amplification and sequencing of the TTF-1 gene.
- Reporter construct assays and cAMP-dependent protein kinase A (PKA) transfection.
Main Results:
- Ha-ras transformation significantly reduces TTF-1 phosphorylation in FRTL-5 cells.
- Phosphorylation heterogeneity in transformed cells is localized to the N-terminal phosphoserine cluster.
- Hypophosphorylated TTF-1 retains DNA binding but loses transactivation capability.
- PKA reestablishes partial TTF-1 transcriptional activity in transformed cells.
Conclusions:
- Reduced TTF-1 phosphorylation, not gene mutation, causes loss of thyroid-specific gene expression in Ha-ras transformed FRTL-5 cells.
- Impaired TTF-1 transcriptional activity due to hypophosphorylation is a key mechanism in oncogene-induced dedifferentiation.