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Updated: Jan 13, 2026

Reverse Yeast Two-hybrid System to Identify Mammalian Nuclear Receptor Residues that Interact with Ligands and/or Antagonists
Published on: November 15, 2013
Genomic Crosstalk Between Nuclear Receptors in Hormone-dependent Cancers
Moray J Campbell1,2,3
1Board of Governors Innovation Center, Cedars-Sinai Medical Center, Los Angeles, CA 90048, USA.
Abstract:
Nuclear receptors (NRs) orchestrate transcriptional programs that regulate cell fate decisions, and when these processes are disrupted, they can drive hormone-dependent cancers. This review summarizes mechanisms by which NRs function collectively, or crosstalk, to bring about the complex transcriptional control of cell fate decisions and indicate where these processes can act as cancer drivers. These crosstalk mechanisms include the exchange of coregulators between NRs and as well as genomic convergence of NRs. Evidence is also discussed for how NRs potentially pass through a continuum of interactions as part of a biological ratchet mechanism to regulate gene transcription. In this continuum, pioneer factors drive chromatin competence for NRs and, along with mammalian SWI/SNF complexes, facilitate transient assisted loading between NRs, as well as more stable crosstalk in the form of mitotic bookmarking, which allows inheritance of transcriptional control. NR crosstalk is also sustained through the function of larger and perhaps more stable interactions, such as through the megatrans complex. Also considered to explain NR crosstalk is the established and emerging understanding of the grammar of motif selection, and this is placed in the context of NR network approaches, for example in breast cancer. Finally, a systems-level framework, called NuRome, is discussed that combines high-dimensional data at the cistrome, transcriptome, and proteome levels to provide a predictive understanding of NR crosstalk and transcription in cancer.
Insights
Nuclear receptors (NRs) coordinate cell fate. Disruptions in NR crosstalk, involving coregulator exchange and genomic convergence, can drive hormone-dependent cancers, highlighting critical regulatory mechanisms.
Area of Science:
- Molecular Biology
- Genomics
- Cancer Biology
Background:
- Nuclear receptors (NRs) control cell fate through transcriptional programs.
- Dysregulation of these processes can lead to hormone-dependent cancers.
- Understanding NR function is crucial for cancer research.
Purpose of the Study:
- To review mechanisms of NR crosstalk in transcriptional control.
- To identify how NR crosstalk contributes to cancer development.
- To explore systems-level approaches for studying NR networks.
Main Methods:
- Literature review of NR crosstalk mechanisms.
- Analysis of genomic convergence and coregulator exchange.
- Discussion of systems-level frameworks like NuRome.
Main Results:
- NRs crosstalk via coregulator exchange and genomic convergence.
- A continuum of interactions, including pioneer factors and SWI/SNF, regulates transcription.
- Mitotic bookmarking and complexes like M E G A T R A N S sustain NR crosstalk.
- Motif selection grammar and network approaches provide insights into NR function in cancer.
Conclusions:
- NR crosstalk is a complex regulatory mechanism essential for cell fate.
- Understanding NR crosstalk provides insights into cancer drivers.
- Systems-level frameworks offer predictive power for NR transcription in cancer.
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