Thyroid hormone receptors mutated in liver cancer function as distorted antimorphs
Open Access
- 23 January 2006
- journal article
- research article
- Published by Springer Nature in Oncogene
- Vol. 25 (25) , 3576-3588
- https://doi.org/10.1038/sj.onc.1209389
Abstract
Aberrant thyroid hormone receptors (TRs) are found in over 70% of the human hepatocellular carcinomas (HCCs) analysed. To better understand the role(s) of these TR mutants in this neoplasia, we analysed a panel of HCC mutant receptors for their molecular properties. Virtually all HCC-associated TR mutants tested retained the ability to repress target genes in the absence of T3, yet were impaired in T3-driven gene activation and functioned as dominant-negative inhibitors of wild-type TR activity. Intriguingly, the HCC TRα1 mutants exerted dominant-negative interference at all T3 concentrations tested, whereas the HCC TRβ1 mutants were dominant-negatives only at low and intermediate T3 concentrations, reverting to transcriptional activators at higher hormone levels. The relative affinity for the SMRT versus N-CoR corepressors was detectably altered for several of the HCC mutant TRs, suggesting changes in corepressor preference and recruitment compared to wild type. Several of the TRα HCC mutations also altered the DNA recognition properties of the encoded receptors, indicating that these HCC TR mutants may regulate a distinct set of target genes from those regulated by wild-type TRs. Finally, whereas wild-type TRs interfere with c-Jun/AP-1 function in a T3-dependent fashion and suppress anchorage-independent growth when ectopically expressed in HepG2 cells, at least certain of the HCC mutants did not exert these inhibitory properties. These alterations in transcriptional regulation and DNA recognition appear likely to contribute to oncogenesis by reprogramming the differentiation and proliferative properties of the hepatocytes in which the mutant TRs are expressed.Keywords
This publication has 82 references indexed in Scilit:
- Alternative mRNA Splicing of SMRT Creates Functional Diversity by Generating Corepressor Isoforms with Different Affinities for Different Nuclear ReceptorsJournal of Biological Chemistry, 2005
- Thyroid hormone receptors/THR genes in human cancerCancer Letters, 2003
- Role of Coactivators and Corepressors in the Induction of the RAR.BETA. Gene in Human Colon Cancer Cells.Biological & Pharmaceutical Bulletin, 2002
- Requirement of Corepressor Binding of Thyroid Hormone Receptor Mutants for Dominant Negative InhibitionBiochemical and Biophysical Research Communications, 1998
- Resistance to Thyroid HormoneHormone Research, 1997
- DNA Recognition by Normal and Oncogenic Thyroid Hormone ReceptorsJournal of Biological Chemistry, 1996
- Loss of heterozygosity of the thyroid hormone receptor B in posterior uveal melanomaMelanoma Research, 1993
- Nuclear receptor/AP-1 interactionEndocrine Reviews, 1993
- The Thyroid Hormone Receptor Interferes with Transcriptional Activation via the AP-1 ComplexBiochemical and Biophysical Research Communications, 1993
- Thyroid hormone receptors: multiple forms, multiple possibilitiesEndocrine Reviews, 1993