The Transcriptional Regulation of FOXO Genes in Thyrocytes

F Franz1, C Weidinger1, K Krause1

  • 1Clinic of Endocrinology and Nephrology, Department of Internal Medicine, Neurology and Dermatology, University of Leipzig, Leipzig, Germany.

Hormone and Metabolic Research = Hormon- Und Stoffwechselforschung = Hormones Et Metabolisme
|June 4, 2016
PubMed

Insights

This study reveals that PI3K signaling influences FOXO transcription in thyroid cells, with altered FOXO mRNA levels observed in thyroid cancers. These findings suggest targeting the PI3K pathway may be beneficial for advanced thyroid cancers.

Area of Science:

  • Molecular Biology
  • Endocrinology
  • Cancer Research

Background:

  • FOXO transcription factors regulate critical cellular processes including DNA repair, proliferation, and apoptosis in thyrocytes.
  • Impaired FOXO function is a characteristic of thyroid malignancies.
  • Understanding FOXO isoform transcriptional regulation is crucial for thyroid cancer research.

Purpose of the Study:

  • To investigate the transcriptional regulation of FOXO isoforms (FOXO1, FOXO3, FOXO4) in thyroid epithelial cells.
  • To examine the impact of PI3K/AKT signaling on FOXO transcription.
  • To determine FOXO isoform mRNA expression in human thyroid tumors.

Main Methods:

  • mRNA expression analysis of FOXO isoforms in FRTL-5 cells under various stimuli (growth factors, H2O2, TSH).
  • Investigation of PI3K/AKT signaling effects using PI3K p110α mutant FRTL-5 cells.
  • Study of FOXO transcriptional dependence in FRTL-5 cells with hFOXO3 overexpression.
  • Analysis of FOXO isoform mRNA levels in human thyroid tumors (papillary and follicular).

Main Results:

  • Growth factor deprivation upregulated FOXO1, 3, and 4; insulin decreased FOXO1 and FOXO4 transcription.
  • PI3K/AKT pathway inhibition amplified FOXO1 and FOXO4 expression.
  • H2O2 and TSH did not affect FOXO transcription; PI3K p110α overexpression differentially affected FOXO3 and FOXO4.
  • FOXO1 and FOXO3 were downregulated in papillary thyroid carcinoma, while FOXO4 was upregulated in follicular thyroid carcinoma.

Conclusions:

  • PI3K signaling significantly influences FOXO transcription in thyrocytes.
  • Thyroid cancers exhibit distinct alterations in FOXO transcription, beyond post-translational modifications.
  • Targeting the PI3K pathway presents a potential therapeutic strategy for advanced thyroid cancers.

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