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Updated: Aug 16, 2026

An Orthotopic Mouse Model of Anaplastic Thyroid Carcinoma
Published on: April 17, 2013
Focal adhesions and associated proteins in medullary thyroid carcinoma cells
Lawrence T Kim1, Jason B Fleming, Christie Lopez-Guzman
1Surgical Service, Central Arkansas Veterans Healthcare System and University of Arkansas for Medical Sciences, Little Rock, Arkansas 72205, USA.
Background:
In medullary thyroid carcinoma (MTC), mutations in the RET protooncogene lead to oncogenic transformation. RET activation in other cell types has been shown to cause phosphorylation of the focal adhesion-associated proteins focal adhesion kinase (FAK), paxillin, and p130(CAS). We hypothesized that adhesion-dependent signaling might be deranged in MTC cells.
Methods:
Indirect immunofluorescence was used to label beta(1) integrin, FAK, paxillin, and p130CAS. Rhodamine-labeled phalloidin was used to visualize actin microfilaments. Phosphorylated protein was detected by immunoprecipitation followed by Western blotting for phosphotyrosine. MTC cell invasiveness was quantified using a modified Boyden chamber assay.
Results:
Clustering of beta(1) integrin, FAK, paxillin, and p130(CAS) into focal adhesions were not detected in MTC cells under any conditions, although clustering was seen as expected in control HeLa cells. Despite this failure, FAK, paxillin and p130(CAS) were all found to be phosphorylated. Actin microfilaments were generally not seen although in a few cells, small, poorly formed microfilaments could be detected. MTC cells invaded poorly as compared with highly invasive cell lines. However a clear difference was noted between invasiveness on growth factor depleted Matrigel and regular Matrigel.
Conclusions:
In MTC cells, focal adhesions are not seen in response to interaction with extracellular matrix. Consistent with this failure, actin microfilaments are absent or poorly formed and invasion is weak. Despite the absence of focal adhesions, focal adhesion proteins remain phosphorylated, even though in normal cells their signaling activity is dependent on focal adhesion formation. Deranged adhesion-dependent signaling may contribute to MTC pathogenesis.
Insights
Medullary thyroid carcinoma cells lack focal adhesions, leading to weak invasion. Despite this, key adhesion proteins are phosphorylated, suggesting deranged signaling contributes to MTC.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Medullary thyroid carcinoma (MTC) involves RET protooncogene mutations.
- RET activation can phosphorylate focal adhesion proteins like FAK, paxillin, and p130CAS in other cell types.
- This study investigates potential defects in adhesion-dependent signaling in MTC cells.
Purpose of the Study:
- To investigate the formation and function of focal adhesions in medullary thyroid carcinoma cells.
- To examine the phosphorylation status of focal adhesion proteins in MTC cells.
- To assess the invasiveness of MTC cells in relation to adhesion signaling.
Main Methods:
- Indirect immunofluorescence for beta(1) integrin, FAK, paxillin, p130CAS, and actin.
- Immunoprecipitation and Western blotting for phosphotyrosine to detect phosphorylated proteins.
- Modified Boyden chamber assay to quantify MTC cell invasiveness.
Main Results:
- MTC cells failed to form focal adhesions with beta(1) integrin, FAK, paxillin, and p130CAS.
- Despite absent focal adhesions, FAK, paxillin, and p130CAS were phosphorylated.
- MTC cells exhibited poor invasion, with differences observed on depleted vs. regular Matrigel.
Conclusions:
- MTC cells do not form focal adhesions upon extracellular matrix interaction.
- Absence of focal adhesions correlates with poor actin formation and weak invasion.
- Phosphorylation of focal adhesion proteins occurs independently of focal adhesion formation in MTC, suggesting deranged signaling in MTC pathogenesis.
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