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.

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.