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1.
Cell Death Differ ; 23(10): 1579-91, 2016 10.
Article in English | MEDLINE | ID: mdl-27177020

ABSTRACT

FK506-binding protein 51 (FKBP51) regulates the activity of the glucocorticoid receptor (GR), and is therefore a key mediator of the biological actions of glucocorticoids. However, the understanding of the molecular mechanisms that govern its activity remains limited. Here, we uncover a novel regulatory switch for GR activity by the post-translational modification of FKBP51 with small ubiquitin-like modifier (SUMO). The major SUMO-attachment site, lysine 422, is required for FKBP51-mediated inhibition of GR activity in hippocampal neuronal cells. Importantly, impairment of SUMO conjugation to FKBP51 impacts on GR-dependent neuronal signaling and differentiation. We demonstrate that SUMO conjugation to FKBP51 is enhanced by the E3 ligase PIAS4 and by environmental stresses such as heat shock, which impact on GR-dependent transcription. SUMO conjugation to FKBP51 regulates GR hormone-binding affinity and nuclear translocation by promoting FKBP51 interaction within the GR complex. SUMOylation-deficient FKBP51 fails to interact with Hsp90 and GR thus facilitating the recruitment of the closely related protein, FKBP52, which enhances GR transcriptional activity. Moreover, we show that the modification of FKBP51 with SUMO modulates its binding to Hsp90. Our data establish SUMO conjugation as a novel regulatory mechanism in the Hsp90 cochaperone activity of FKBP51 with a functional impact on GR signaling in a neuronal context.


Subject(s)
Receptors, Glucocorticoid/metabolism , Sumoylation , Tacrolimus Binding Proteins/metabolism , Animals , HEK293 Cells , HSP90 Heat-Shock Proteins/metabolism , Heat-Shock Response , Humans , Lysine/metabolism , Mice, Inbred BALB C , Models, Biological , Poly-ADP-Ribose Binding Proteins/metabolism , Protein Inhibitors of Activated STAT/metabolism , Transcription, Genetic
2.
Life Sci ; 66(4): 301-5, 2000.
Article in English | MEDLINE | ID: mdl-10665981

ABSTRACT

The present study was undertaken to investigate the role of inducible nitric oxide synthase in a rat model of persistent pain. The effects of L-N6 (1-iminoethyl) lysine (L-NIL), a relatively potent and relatively selective inhibitor of inducible nitric oxide synthase, were investigated in carrageenan induced hyperalgesia L-NIL (0.1 microMole) injected intraplantar or intrathecal markedly enhanced carrageenan induced hyperalgesia. These effects were reversed during the third hour by co-administration of L-arginine (900 mg/kg i.p.) but not D-arginine. Methylene blue (MB), a soluble guanylate cyclase inhibitor, administered intrathecally (0.1 microg) had no effect on L-NIL potentiation of carrageenan hyperalgesia but abolished antinociception induced by L-arginine. Obtained results suggest that nitric oxide derived from inducible nitric oxide synthase play an inhibitory role in carrageenan produced hyperalgesia in rat.


Subject(s)
Enzyme Inhibitors/pharmacology , Lysine/analogs & derivatives , Nitric Oxide Synthase/antagonists & inhibitors , Pain/etiology , Animals , Arginine/pharmacology , Carrageenan/pharmacology , Chronic Disease , Lysine/pharmacology , Male , Methylene Blue/pharmacology , Nitric Oxide Synthase Type II , Pain/enzymology , Rats , Rats, Wistar
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