REV-ERB alpha influences the stability and nuclear localization of the glucocorticoid receptor
JOURNAL OF CELL SCIENCE
Authors: Okabe, Takashi; Chavan, Rohit; Costa, Sara S. Fonseca; Brenna, Andrea; Ripperger, Juergen A.; Albrecht, Urs
Abstract
REV-ERB alpha (encoded by Nr1d1) is a nuclear receptor that is part of the circadian clock mechanism and regulates metabolism and inflammatory processes. The glucocorticoid receptor (GR, encoded by Nr3c1) influences similar processes, but is not part of the circadian clock, although glucocorticoid signaling affects resetting of the circadian clock in peripheral tissues. Because of their similar impact on physiological processes, we studied the interplay between these two nuclear receptors. We found that REV-ERB alpha binds to the C-terminal portion and GR to the N-terminal portion of HSP90 alpha and HSP90 beta, a chaperone responsible for the activation of proteins to ensure survival of a cell. The presence of REV-ERB alpha influences the stability and nuclear localization of GR by an unknown mechanism, thereby affecting expression of GR target genes, such as I.Ba (Nfkbia) and alcohol dehydrogenase 1 (Adh1). Our findings highlight an important interplay between two nuclear receptors that influence the transcriptional potential of each other. This indicates that the transcriptional landscape is strongly dependent on dynamic processes at the protein level.
Natural Mating Differentially Triggers Expression of Glucocorticoid Receptor (NR3C1)-Related Genes in the Preovulatory Porcine Female Reproductive Tract
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
Authors: Ruiz-Conca, Mateo; Gardela, Jaume; Martinez, Cristina Alicia; Wright, Dominic; Lopez-Bejar, Manel; Rodriguez-Martinez, Heriberto; Alvarez-Rodriguez, Manuel
Abstract
Mating initiates dynamic modifications of gene transcription in the female reproductive tract, preparing the female for fertilization and pregnancy. Glucocorticoid signaling is essential for the homeostasis of mammalian physiological functions. This complex glucocorticoid regulation is mediated through the glucocorticoid receptor, also known as nuclear receptor subfamily 3 group C member 1 (NR3C1/GR) and related genes, like 11 beta-hydroxysteroid dehydrogenases (HSD11Bs) and the FK506-binding immunophilins, FKBP5 and FKBP4. This study tested the transcriptome changes in NR3C1/GR regulation in response to natural mating and/or cervical deposition of the sperm-peak ejaculate fraction collected using the gloved-hand method (semen or only its seminal plasma), in the preovulatory pig reproductive tract (cervix to infundibulum, 24 h after mating/insemination/infusion treatments). Porcine cDNA microarrays revealed 22NR3C1-related transcripts, and changes in gene expression were triggered by all treatments, with natural mating showing the largest differences, includingNR3C1,FKBP5, FKBP4,hydroxysteroid 11-beta dehydrogenase 1 and 2 (HSD11B1, HSD11B2),and the signal transducer and activator of transcription 5A (STAT5A). Our data suggest that natural mating induces expression changes that might promote a reduction of the cortisol action in the oviductal sperm reservoir. Together with the STAT-mediated downregulation of cytokine immune actions, this reduction may prevent harmful effects by promoting tolerance towards the spermatozoa stored in the oviduct and perhaps elicit spermatozoa activation and detachment after ovulation.