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Mechanistic Impact of Different Ligand Scaffolds on FXR Modulation Suggests Avenues to Selective Modulators

Authors :
Jan Heering
Nathalie Jores
Whitney Kilu
Espen Schallmayer
Evelyn Peelen
Andreas Muehler
Hella Kohlhof
Daniel Vitt
Verena Linhard
Santosh L. Gande
Apirat Chaikuad
Sridhar Sreeramulu
Harald Schwalbe
Daniel Merk
Publica
Source :
ACS chemical biology. 17(11)
Publication Year :
2022

Abstract

The bile-acid sensing nuclear farnesoid X receptor (FXR) is an attractive target for the treatment of hepatic and metabolic diseases, but application of this chemotherapeutic concept remains limited due to adverse effects of FXR activation observed in clinical trials. To elucidate the mechanistic basis of FXR activation at the molecular level, we have systematically studied FXR co-regulator interactions and dimerization in response to seven chemically diverse FXR ligands. Different molecular effects on FXR activation mediated by different scaffolds were evident and aligned with characteristic structural changes within the ligand binding domain of FXR. A partial FXR agonist acted mainly through co-repressor displacement from FXR and caused an FXR-regulated gene expression pattern markedly differing from FXR agonist effects. These results suggest selective modulation of FXR dimerization and co-regulator interactions for different ligands, offering a potential avenue for the design of gene- or tissue-selective FXR modulators.

Details

ISSN :
15548937
Volume :
17
Issue :
11
Database :
OpenAIRE
Journal :
ACS chemical biology
Accession number :
edsair.doi.dedup.....5fddd3f5477a108177100650f9f19fdd