Literature DB >> 24422633

Bifunctional ligands allow deliberate extrinsic reprogramming of the glucocorticoid receptor.

Jonas W Højfeldt1, Osvaldo Cruz-Rodríguez, Yasuhiro Imaeda, Aaron R Van Dyke, James P Carolan, Anna K Mapp, Jorge A Iñiguez-Lluhí.   

Abstract

Therapies based on conventional nuclear receptor ligands are extremely powerful, yet their broad and long-term use is often hindered by undesired side effects that are often part of the receptor's biological function. Selective control of nuclear receptors such as the glucocorticoid receptor (GR) using conventional ligands has proven particularly challenging. Because they act solely in an allosteric manner, conventional ligands are constrained to act via cofactors that can intrinsically partner with the receptor. Furthermore, effective means to rationally encode a bias for specific coregulators are generally lacking. Using the (GR) as a framework, we demonstrate here a versatile approach, based on bifunctional ligands, that extends the regulatory repertoire of GR in a deliberate and controlled manner. By linking the macrolide FK506 to a conventional agonist (dexamethasone) or antagonist (RU-486), we demonstrate that it is possible to bridge the intact receptor to either positively or negatively acting coregulatory proteins bearing an FK506 binding protein domain. Using this strategy, we show that extrinsic recruitment of a strong activation function can enhance the efficacy of the full agonist dexamethasone and reverse the antagonist character of RU-486 at an endogenous locus. Notably, the extrinsic recruitment of histone deacetylase-1 reduces the ability of GR to activate transcription from a canonical GR response element while preserving ligand-mediated repression of nuclear factor-κB. By providing novel ways for the receptor to engage specific coregulators, this unique ligand design approach has the potential to yield both novel tools for GR study and more selective therapeutics.

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Year:  2014        PMID: 24422633      PMCID: PMC3896636          DOI: 10.1210/me.2013-1343

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  57 in total

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2.  A common motif within the negative regulatory regions of multiple factors inhibits their transcriptional synergy.

Authors:  J A Iñiguez-Lluhí; D Pearce
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Review 4.  Nuclear receptor structure: implications for function.

Authors:  David L Bain; Aaron F Heneghan; Keith D Connaghan-Jones; Michael T Miura
Journal:  Annu Rev Physiol       Date:  2007       Impact factor: 19.318

5.  Class I lysine deacetylases facilitate glucocorticoid-induced transcription.

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6.  The glucocorticoid receptor inhibits NFkappaB by interfering with serine-2 phosphorylation of the RNA polymerase II carboxy-terminal domain.

Authors:  R M Nissen; K R Yamamoto
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7.  A naturally occurring insertion of a single amino acid rewires transcriptional regulation by glucocorticoid receptor isoforms.

Authors:  Morgane Thomas-Chollier; Lisa C Watson; Samantha B Cooper; Miles A Pufall; Jennifer S Liu; Katja Borzym; Martin Vingron; Keith R Yamamoto; Sebastiaan H Meijsing
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Review 10.  Exploring the molecular mechanisms of glucocorticoid receptor action from sensitivity to resistance.

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  2 in total

1.  Isoform switching of steroid receptor co-activator-1 attenuates glucocorticoid-induced anxiogenic amygdala CRH expression.

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2.  Targeted Gene Repression Using Novel Bifunctional Molecules to Harness Endogenous Histone Deacetylation Activity.

Authors:  Kyle V Butler; Anna M Chiarella; Jian Jin; Nathaniel A Hathaway
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  2 in total

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