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Inhibition of androgen receptor (AR) function by the reproductive orphan nuclear receptor DAX-1
Elin Holter1, Noora Kotaja, Sari Mäkela
1Department of Biosciences at Novum, Karolinska Institute, S-14157 Huddinge, Sweden.
Abstract:
DAX-1 (NROB1) is an atypical member of the nuclear receptor family that is predominantly expressed in mammalian reproductive tissues. While a receptor function of DAX-1 remains enigmatic, previous work has indicated that DAX-1 inhibits the activity of the orphan receptor steroidogenic factor 1 and the estrogen receptors (ERs), presumably via direct occupation of the coactivator-binding surface and subsequent recruitment of additional corepressors. In vivo evidence points at a particular role of DAX-1 for the development and maintenance of male reproductive functions. In this study, we have identified the androgen receptor (AR) NR3C4 as a novel target for DAX-1. We show that DAX-1 potently inhibits ligand-dependent transcriptional activation as well as the interaction between the N- and C-terminal activation domains of AR. We provide evidence for direct interactions of the two receptors that involve the N-terminal repeat domain of DAX-1 and the C-terminal ligand-binding and activation domain of AR. Moreover, DAX-1, known to shuttle between the cytoplasm and the nucleus, is capable of relocalizing AR in both cellular compartments, suggesting that intracellular tethering is associated with DAX-1 inhibition. These results implicate novel inhibitory mechanisms of DAX-1 action with particular relevance for the modulation of androgen-dependent gene transcription in the male reproductive system.
Insights
DAX-1 (NROB1) inhibits the androgen receptor (AR) by directly interacting with it. This novel mechanism impacts androgen-dependent gene transcription, crucial for male reproductive functions.
Area of Science:
- Endocrinology
- Molecular Biology
- Reproductive Biology
Background:
- DAX-1 (NROB1) is an atypical nuclear receptor in reproductive tissues.
- DAX-1 is known to inhibit steroidogenic factor 1 and estrogen receptors.
- DAX-1 plays a role in male reproductive development and maintenance.
Purpose of the Study:
- To identify novel targets of DAX-1.
- To investigate the interaction between DAX-1 and the androgen receptor (AR).
- To elucidate the inhibitory mechanisms of DAX-1 on AR activity.
Main Methods:
- Investigated DAX-1's effect on AR transcriptional activity.
- Assessed the interaction between DAX-1 and AR domains.
- Examined the subcellular localization of AR in the presence of DAX-1.
Main Results:
- DAX-1 potently inhibits ligand-dependent AR transcriptional activation.
- DAX-1 inhibits the interaction between AR's N- and C-terminal activation domains.
- Direct interaction occurs between DAX-1's N-terminal repeat domain and AR's C-terminal domain.
- DAX-1 influences AR localization in both cytoplasm and nucleus, suggesting intracellular tethering.
Conclusions:
- Identified AR as a novel target of DAX-1.
- DAX-1 employs novel inhibitory mechanisms against AR.
- DAX-1's action is relevant for modulating androgen-dependent gene transcription in the male reproductive system.