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Updated: Oct 19, 2025

Prediction and Validation of Gene Regulatory Elements Activated During Retinoic Acid Induced Embryonic Stem Cell Differentiation
Published on: June 21, 2016
Conformational Changes of RORγ During Response Element Recognition and Coregulator Engagement
Timothy S Strutzenberg1, Yingmin Zhu2, Scott J Novick1
1Department of Molecular Medicine, The Scripps Research Institute, Jupiter, FL, USA.
Abstract:
The retinoic acid receptor-related orphan receptor γ (RORγ) is a ligand-dependent transcription factor of the nuclear receptor super family that underpins metabolic activity, immune function, and cancer progression. Despite being a valuable drug target in health and disease, our understanding of the ligand-dependent activities of RORγ is far from complete. Like most nuclear receptors, RORγ must recruit coregulatory protein to enact the RORγ target gene program. To date, a majority of structural studies have been focused exclusively on the RORγ ligand-binding domain and the ligand-dependent recruitment of small peptide segments of coregulators. Herein, we examine the ligand-dependent assembly of full length RORγ:coregulator complexes on cognate DNA response elements using structural proteomics and small angle x-ray scattering. The results from our studies suggest that RORγ becomes elongated upon DNA recognition, preventing long range interdomain crosstalk. We also determined that the DNA binding domain adopts a sequence-specific conformation, and that coregulatory protein may be able to 'sense' the ligand- and DNA-bound status of RORγ. We propose a model where ligand-dependent coregulator recruitment may be influenced by the sequence of the DNA to which RORγ is bound. Overall, the efforts described herein will illuminate important aspects of full length RORγ and monomeric orphan nuclear receptor target gene regulation through DNA-dependent conformational changes.
Insights
Retinoic acid receptor-related orphan receptor γ (RORγ) undergoes DNA-dependent conformational changes, influencing how it interacts with coregulators. This structural insight is key for understanding RORγ
Area of Science:
- Molecular Biology
- Structural Biology
- Biochemistry
Background:
- Retinoic acid receptor-related orphan receptor γ (RORγ) is a nuclear receptor crucial for metabolism, immunity, and cancer.
- RORγ's function relies on recruiting coregulatory proteins, but its full-length complex assembly is poorly understood.
- Current structural data primarily focuses on the RORγ ligand-binding domain and short coregulator peptides.
Purpose of the Study:
- To investigate the ligand-dependent assembly of full-length RORγ:coregulator complexes on DNA response elements.
- To elucidate the structural mechanisms governing RORγ target gene regulation.
- To explore how DNA binding influences RORγ conformation and coregulator interaction.
Main Methods:
- Structural proteomics
- Small-angle X-ray scattering (SAXS)
- Analysis of full-length RORγ:coregulator complexes
Main Results:
- RORγ elongates upon DNA recognition, limiting interdomain communication.
- The DNA-binding domain adopts a sequence-specific conformation.
- Coregulatory proteins may sense the ligand- and DNA-bound state of RORγ.
Conclusions:
- A model is proposed where DNA sequence influences ligand-dependent coregulator recruitment by RORγ.
- DNA-dependent conformational changes are critical for regulating full-length RORγ activity.
- Findings provide insights into orphan nuclear receptor gene regulation.
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