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Published on: August 23, 2019
Increased expression of phosphorylated p70S6 kinase and Akt in papillary thyroid cancer tissues
Megumi Miyakawa1, Toshio Tsushima, Hitomi Murakami
1Department of Internal Medicine, Miyakawa Hospital, 2-13-13, Kawasaki, 210-0802, Kanagawa, Japan.
Abstract:
Although a number of abnormalities in oncogenes have been reported in thyroid neoplasms, little information is available on the signal transduction pathway involved in neoplastic thyroid cell growth. Both p70S6 kinase (p70S6K) and Akt are kinases downstream of phosphatidylinositol 3 kinase (PI3K). These kinases are phosphorylated and activated by growth factors including IGF-1, EGF/TGF-alpha, and HGF in thyroid cells. Since the receptors for these growth factors are reportedly overexpressed in human thyroid cancer, we hypothesized that the PI3K-mediated signalings are overactivated in thyroid cancers. Tumorous and adjacent normal tissues of 20 patients with papillary thyroid cancer were obtained at surgery, and expression of p70S6K and Akt were measured by Western blot. Expression of the protein levels of p70S6K was increased in tumor tissues (T) compared to normal thyroid tissues (N), and expression of phosphorylated p70S6K was also significantly increased in tumor than in surrounding normal tissues. Overexpression of p70S6K in tumor tissues was further confirmed by immunohistochemistry. Strong immunoreactivity in the cytoplasm of thyroid cancer cells was seen in the majority of cases, whereas little immunoreactivity was found in the surrounding normal portion. Expression of phosphorylated Akt (pAkt) was also significantly higher in tumor tissues. Phosphorylation of Bad (pBad), a substrate of Akt, was also increased in the tumor tissues in association with activation of Akt, and the T/N ratio for pAkt positively correlated to the T/N ratio for pBad. The data presented here demonstrate that both p70S6K and Akt are activated in the majority of human papillary cancer cells. Activation of these signalings may be involved in the progression of papillary carcinoma by stimulating cell proliferation and/or preventing apoptosis.
Insights
Signal transduction pathways involving p70S6 kinase (p70S6K) and Akt are activated in papillary thyroid cancer. This activation may drive tumor progression by increasing cell proliferation and preventing apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Thyroid neoplasms exhibit oncogene abnormalities, but signal transduction pathways in neoplastic growth are poorly understood.
- Phosphatidylinositol 3 kinase (PI3K)-downstream kinases, p70S6 kinase (p70S6K) and Akt, are activated by growth factors like IGF-1, EGF/TGF-alpha, and HGF.
- Growth factor receptor overexpression in thyroid cancer suggests potential overactivation of PI3K-mediated signaling.
Purpose of the Study:
- To investigate the activation status of p70S6 kinase (p70S6K) and Akt signaling pathways in human papillary thyroid cancer.
- To determine if PI3K-mediated signaling is overactivated in thyroid cancer tissues compared to normal adjacent tissues.
Main Methods:
- Western blot analysis was used to measure protein levels and phosphorylation of p70S6K and Akt in tumorous and adjacent normal thyroid tissues from 20 papillary thyroid cancer patients.
- Immunohistochemistry was employed to confirm p70S6K overexpression in tumor tissues.
- Correlation between phosphorylated Akt (pAkt) and phosphorylated Bad (pBad) levels was assessed.
Main Results:
- Protein levels and phosphorylation of p70S6K were significantly increased in papillary thyroid cancer tissues compared to normal tissues.
- Immunohistochemistry confirmed strong cytoplasmic p70S6K immunoreactivity in the majority of cancer cells, with minimal staining in normal tissue.
- Expression of pAkt and its substrate pBad was significantly higher in tumor tissues, showing a positive correlation between pAkt and pBad levels.
Conclusions:
- Both p70S6K and Akt signaling pathways are activated in the majority of human papillary thyroid cancer cells.
- Activation of these PI3K-mediated signal transduction pathways likely contributes to papillary carcinoma progression by promoting cell proliferation and/or inhibiting apoptosis.
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