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Protein Disulfide Isomerase Modulates the Activation of Thyroid Hormone Receptors
Jessica L O Campos1,2, Tabata R Doratioto1,2, Natalia B Videira1,2
1Brazilian Biosciences National Laboratory (LNBio), Brazilian Center for Research Energy and Materials (CNPEM), São Paulo, Brazil.
Abstract:
Thyroid hormone receptors (TRs) are responsible for mediating thyroid hormone (T3 and T4) actions at a cellular level. They belong to the nuclear receptor (NR) superfamily and execute their main functions inside the cell nuclei as hormone-regulated transcription factors. These receptors also exhibit so-called "non-classic" actions, for which other cellular proteins, apart from coregulators inside nuclei, regulate their activity. Aiming to find alternative pathways of TR modulation, we searched for interacting proteins and found that PDIA1 interacts with TRβ in a yeast two-hybrid screening assay. The functional implications of PDIA1-TR interactions are still unclear; however, our co-immunoprecipitation (co-IP) and fluorescence assay results showed that PDI was able to bind both TR isoforms in vitro. Moreover, T3 appears to have no important role in these interactions in cellular assays, where PDIA1 was able to regulate transcription of TRα and TRβ-mediated genes in different ways depending on the promoter region and on the TR isoform involved. Although PDIA1 appears to act as a coregulator, it binds to a TR surface that does not interfere with coactivator binding. However, the TR:PDIA1 complex affinity and activation are different depending on the TR isoform. Such differences may reflect the structural organization of the PDIA1:TR complex, as shown by models depicting an interaction interface with exposed cysteines from both proteins, suggesting that PDIA1 might modulate TR by its thiol reductase/isomerase activity.
Insights
Protein Disulfide Isomerase A1 (PDIA1) interacts with thyroid hormone receptors (TRs), modulating gene transcription. This interaction, independent of thyroid hormone, suggests PDIA1 as a novel TR regulator.
Area of Science:
- Molecular Biology
- Endocrinology
- Cell Biology
Background:
- Thyroid hormone receptors (TRs) mediate thyroid hormone actions as nuclear transcription factors.
- TRs also perform non-classic functions regulated by extranuclear proteins.
- Investigating novel TR modulation pathways is crucial for understanding thyroid hormone signaling.
Purpose of the Study:
- To identify novel proteins interacting with TRs.
- To investigate the functional implications of PDIA1-TR interactions.
- To explore PDIA1 as a potential regulator of TR activity.
Main Methods:
- Yeast two-hybrid screening to identify interacting proteins.
- Co-immunoprecipitation (co-IP) and fluorescence assays for in vitro binding confirmation.
- Cellular assays to assess PDIA1's effect on TR-mediated gene transcription.
Main Results:
- PDIA1 was identified as a TRβ-interacting protein.
- PDIA1 binds to both TRα and TRβ isoforms in vitro, independent of T3.
- PDIA1 differentially regulates TRα and TRβ-mediated gene transcription.
- PDIA1 binds a TR surface distinct from coactivator binding sites.
Conclusions:
- PDIA1 interacts with TRs and modulates their transcriptional activity.
- PDIA1 may regulate TRs through its thiol reductase/isomerase activity.
- PDIA1 represents a novel target for modulating thyroid hormone receptor function.
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