Regulation of fibronectin by thyroid hormone receptors

Kwang-Huei Lin1, Chia-yu Chen, Shen-Liang Chen

  • 1Department of Biochemistry, Chang-Gung University, Taoyuan, Taiwan, Republic of China. khlin@mail.cgu.edu.tw

Insights

Triiodothyronine (T3) indirectly upregulates fibronectin (FN) gene expression in liver cancer cells. This regulation involves the MAPK/JNK/p38 and TGF-beta pathways at the transcriptional level.

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Cancer Research

Background:

  • Thyroid hormones, such as triiodothyronine (T3), are crucial regulators of cellular processes.
  • Thyroid hormone receptors (TRs) mediate the effects of T3 by interacting with specific pathways.
  • Dysregulation of T3 signaling is implicated in various diseases, including cancer.

Purpose of the Study:

  • To investigate the mechanism by which T3 modulates gene expression in human hepatocellular carcinoma (HCC) cells.
  • To characterize the T3-mediated upregulation of fibronectin (FN) in HCC.
  • To elucidate the signaling pathways involved in T3-induced FN expression.

Main Methods:

  • PCR-based cDNA subtraction to identify T3-modulated genes.
  • Western blotting and quantitative PCR to assess FN mRNA and protein levels.
  • Nuclear run-on assays and promoter activity analysis to determine transcriptional regulation.
  • Involvement of signaling pathways assessed using neutralizing antibodies and Smad protein overexpression.

Main Results:

  • T3 significantly upregulates FN mRNA and protein expression in HCC cells in a time- and dose-dependent manner.
  • T3-induced FN expression is indirect, requiring protein synthesis, and occurs at the transcriptional level.
  • TGF-beta signaling and the MAPK/JNK/p38 pathway are involved in T3-mediated FN upregulation.
  • Smad3/4 pathways are not essential for T3-induced FN activation.

Conclusions:

  • T3 indirectly regulates FN gene expression transcriptionally in HCC cells.
  • The MAPK/JNK/p38 and TGF-beta signaling pathways are key mediators of this T3 effect.
  • Understanding these pathways offers potential therapeutic targets for liver cancer.

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