Structural basis of synthetic agonist activation of the nuclear receptor REV-ERB

The nuclear receptor REV-ERB plays an important role in a range of physiological processes. REV-ERB behaves as a ligand-dependent transcriptional repressor and heme has been identified as a physiological agonist. Our current understanding of how ligands bind to and regulate transcriptional repressio...

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Veröffentlicht in:Nature communications 2022-11, Vol.13 (1), p.7131-7131, Article 7131
Hauptverfasser: Murray, Meghan H., Valfort, Aurore Cecile, Koelblen, Thomas, Ronin, Céline, Ciesielski, Fabrice, Chatterjee, Arindam, Veerakanellore, Giri Babu, Elgendy, Bahaa, Walker, John K., Hegazy, Lamees, Burris, Thomas P.
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Sprache:eng
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Zusammenfassung:The nuclear receptor REV-ERB plays an important role in a range of physiological processes. REV-ERB behaves as a ligand-dependent transcriptional repressor and heme has been identified as a physiological agonist. Our current understanding of how ligands bind to and regulate transcriptional repression by REV-ERB is based on the structure of heme bound to REV-ERB. However, porphyrin (heme) analogues have been avoided as a source of synthetic agonists due to the wide range of heme binding proteins and potential pleotropic effects. How non-porphyrin synthetic agonists bind to and regulate REV-ERB has not yet been defined. Here, we characterize a high affinity synthetic REV-ERB agonist, STL1267, and describe its mechanism of binding to REV-ERB as well as the method by which it recruits transcriptional corepressor both of which are unique and distinct from that of heme-bound REV-ERB. The nuclear receptor REV-ERBα is a receptor for heme and plays a role in a range of physiological processes. Here, the authors provide the first structure of REV-ERB bound to a synthetic nonporphyrin ligand defining key mechanistic differences to how heme binds.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-022-34892-4