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Published on: May 1, 2020
Competitive cofactor recruitment by orphan receptor hepatocyte nuclear factor 4alpha1: modulation by the F domain
Michael D Ruse1, Martin L Privalsky, Frances M Sladek
1Biochemistry and Molecular Biology Graduate Program, University of California-Riverside, Riverside, CA 92521, USA.
Abstract:
For most ligand-dependent nuclear receptors, the status of endogenous ligand modulates the relative affinities for corepressor and coactivator complexes. It is less clear what parameters modulate the switch between corepressor and coactivator for the orphan receptors. Our previous work demonstrated that hepatocyte nuclear factor 4alpha1 (HNF4alpha1, NR2A1) interacts with the p160 coactivator GRIP1 and the cointegrators CBP and p300 in the absence of exogenously added ligand and that removal of the F domain enhances these interactions. Here, we utilized transient-transfection analysis to demonstrate repression of HNF4alpha1 activity by the corepressor silencing mediator of retinoid and thyroid receptors (SMRT) in several cell lines and on several HNF4alpha-responsive promoter elements. Glutathione S-transferase pulldown assays confirmed a direct interaction between HNF4alpha1 and receptor interaction domain 2 of SMRT. Loss of the F domain resulted in marked reduction of the ability of SMRT to interact with HNF4alpha1 in vitro and repress HNF4alpha1 activity in vivo, although the isolated F domain itself failed to interact with SMRT. Surprisingly, loss of both the A/B and F domains restored full repression by SMRT, suggesting involvement of both domains in the SMRT interaction. Finally, we show that when coexpressed along with HNF4alpha1 and GRIP1, CBP, or p300, SMRT can titer out HNF4alpha1-mediated transactivation in a dose-dependent manner and that this competition derives from mutually exclusive binding. Collectively, these results suggest that HNF4alpha can functionally interact with both a coactivator and a corepressor without altering the status of any putative ligand and that the presence of the F domain may play a role in discriminating between the different coregulators.
Insights
Hepatocyte nuclear factor 4alpha1 (HNF4alpha1) interacts with both coactivators and corepressors like silencing mediator of retinoid and thyroid receptors (SMRT) without a ligand. Domain analysis reveals complex interactions influencing coregulator binding and repression.
Area of Science:
- Molecular Endocrinology
- Nuclear Receptor Signaling
- Gene Regulation
Background:
- Ligand status modulates nuclear receptor affinities for coregulator complexes.
- Mechanisms governing corepressor/coactivator switching in orphan receptors remain unclear.
- Hepatocyte nuclear factor 4alpha1 (HNF4alpha1) previously shown to interact with coactivators (GRIP1, CBP, p300) ligand-independently.
Purpose of the Study:
- Investigate the interaction of HNF4alpha1 with the corepressor silencing mediator of retinoid and thyroid receptors (SMRT).
- Determine the role of HNF4alpha1 domains, particularly the F domain, in SMRT interaction and repression.
- Elucidate the mechanism of SMRT-mediated repression in the context of HNF4alpha1 coactivator binding.
Main Methods:
- Transient-transfection assays to assess HNF4alpha1 activity and repression by SMRT.
- Glutathione S-transferase (GST) pulldown assays to confirm direct protein interactions.
- Analysis of HNF4alpha1 mutants lacking specific domains (F domain, A/B domains) to study their functional impact.
Main Results:
- SMRT represses HNF4alpha1 activity across various cell lines and promoters.
- Direct interaction confirmed between HNF4alpha1 and SMRT (receptor interaction domain 2).
- Loss of the F domain reduces SMRT interaction and repression; loss of both A/B and F domains restores repression.
- SMRT competitively inhibits HNF4alpha1 transactivation mediated by coactivators (GRIP1, CBP, p300) through mutually exclusive binding.
Conclusions:
- HNF4alpha1 can interact with both coactivators and corepressors independently of ligand status.
- The F domain of HNF4alpha1 influences SMRT interaction and repression, but other domains (A/B) are also involved.
- SMRT competes with coactivators for binding to HNF4alpha1, modulating its transcriptional activity.
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