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Updated: Aug 11, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Expression of Aurora kinases in human thyroid carcinoma cell lines and tissues
Salvatore Ulisse1, Jean-Guy Delcros, Enke Baldini
1Department of Experimental Medicine and Pathology, University of Rome La Sapienza, Rome, Italy.
Abstract:
The Aurora kinases are involved in the regulation of cell cycle progression, and alterations in their expression have been shown to associate with cell malignant transformation. In the present study, we demonstrated that human thyrocytes express all 3 Aurora kinases (A, B and C) at both protein and mRNA level and this expression is cell cycle-regulated. An increase in the protein level of the 3 kinases was found, with respect to normal human thyrocytes (HTU5), in the human cell lines derived from follicular (FTC-133), papillary (B-CPAP) and anaplastic (8305C) thyroid carcinomas, but not in cells derived from a follicular adenoma (HTU42). These observations were mirrored in RT-PCR experiments for Aurora-A and B. In contrast, Aurora-C mRNA levels were not significantly different among the different cell types analyzed, suggesting that posttranscriptional mechanism(s) modulate its expression. The expression at the protein level of all 3 Aurora kinases was significantly higher in 3 thyroid papillary carcinomas with respect to normal matched tissues obtained from the same patients. Similar modifications, at the mRNA level, could be observed in 7 papillary carcinoma tissues for Aurora-A and B, but not for Aurora-C. In conclusion, we demonstrated that normal human thyrocytes express all 3 members of the Aurora kinase family, and their expression is amplified in malignant thyroid cell lines and tissues. These results suggest that the Aurora kinases may play a relevant role in malignant thyroid cancers, and may represent a putative therapeutic target for thyroid neoplasms.
Insights
Aurora kinases (A, B, and C) are expressed in normal human thyrocytes and their levels increase in thyroid cancer cell lines and tissues. This suggests Aurora kinases are potential therapeutic targets for thyroid neoplasms.
Area of Science:
- Molecular Biology
- Oncology
- Cell Biology
Background:
- Aurora kinases regulate cell cycle progression.
- Altered Aurora kinase expression is linked to malignant transformation.
- Thyroid cancer involves complex genetic and molecular alterations.
Purpose of the Study:
- To investigate the expression of Aurora kinases (A, B, and C) in normal human thyrocytes and thyroid cancer.
- To determine if Aurora kinase expression is cell cycle-regulated.
- To assess the potential of Aurora kinases as therapeutic targets in thyroid neoplasms.
Main Methods:
- Analysis of Aurora kinase (A, B, C) protein and mRNA levels in normal thyrocytes and thyroid cancer cell lines (follicular, papillary, anaplastic).
- RT-PCR experiments to quantify Aurora kinase mRNA.
- Comparison of Aurora kinase expression in tumor tissues versus matched normal tissues from thyroid cancer patients.
Main Results:
- All 3 Aurora kinases are expressed at protein and mRNA levels in normal human thyrocytes and are cell cycle-regulated.
- Increased protein levels of Aurora kinases A, B, and C were observed in thyroid carcinoma cell lines compared to normal thyrocytes.
- Aurora kinase A and B mRNA levels were elevated in papillary thyroid carcinoma tissues, while Aurora-C mRNA showed no significant difference, suggesting post-transcriptional regulation.
Conclusions:
- Normal human thyrocytes express Aurora kinases A, B, and C.
- Aurora kinase expression is amplified in malignant thyroid cell lines and tissues.
- Aurora kinases represent a potential therapeutic target for thyroid cancers.
