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Anti-inflammatory functions of the glucocorticoid receptor require DNA binding.


ABSTRACT: The glucocorticoid receptor is an important immunosuppressive drug target and metabolic regulator that acts as a ligand-gated transcription factor. Generally, GR's anti-inflammatory effects are attributed to the silencing of inflammatory genes, while its adverse effects are ascribed to the upregulation of metabolic targets. GR binding directly to DNA is proposed to activate, whereas GR tethering to pro-inflammatory transcription factors is thought to repress transcription. Using mice with a point mutation in GR's zinc finger, that still tether via protein-protein interactions while being unable to recognize DNA, we demonstrate that DNA binding is essential for both transcriptional activation and repression. Performing ChIP-Seq, RNA-Seq and proteomics under inflammatory conditions, we show that DNA recognition is required for the assembly of a functional co-regulator complex to mediate glucocorticoid responses. Our findings may contribute to the development of safer immunomodulators with fewer side effects.

SUBMITTER: Escoter-Torres L 

PROVIDER: S-EPMC7470971 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Anti-inflammatory functions of the glucocorticoid receptor require DNA binding.

Escoter-Torres Laura L   Greulich Franziska F   Quagliarini Fabiana F   Wierer Michael M   Uhlenhaut Nina Henriette NH  

Nucleic acids research 20200901 15


The glucocorticoid receptor is an important immunosuppressive drug target and metabolic regulator that acts as a ligand-gated transcription factor. Generally, GR's anti-inflammatory effects are attributed to the silencing of inflammatory genes, while its adverse effects are ascribed to the upregulation of metabolic targets. GR binding directly to DNA is proposed to activate, whereas GR tethering to pro-inflammatory transcription factors is thought to repress transcription. Using mice with a poin  ...[more]

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