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Hepatic glucocorticoid‐induced transcriptional regulation is androgen‐dependent after chronic but not acute glucocorticoid exposure

(2022) FASEB JOURNAL. 36(4).
Author
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Abstract
Glucocorticoids exert their pleiotropic effects by activating the glucocorticoid receptor (GR), which is expressed throughout the body. GR-mediated transcription is regulated by a multitude of tissue- and cell type-specific mechanisms, including interactions with other transcription factors such as the androgen receptor (AR). We previously showed that the transcription of canonical glucocorticoid-responsive genes is dependent on active androgen signaling, but the extent of this glucocorticoid-androgen crosstalk warrants further investigation. In this study, we investigated the overall glucocorticoid-androgen crosstalk in the hepatic transcriptome. Male mice were exposed to GR agonist corticosterone and AR antagonist enzalutamide in order to determine the extent of androgen-dependency after acute and chronic exposure. We found that a substantial proportion of the hepatic transcriptome is androgen-dependent after chronic exposure, while after acute exposure the transcriptomic effects of glucocorticoids are largely androgen-independent. We propose that prolonged glucocorticoid exposure triggers a gradual upregulation of AR expression, instating a situation of androgen dependence which is likely not driven by direct AR-GR interactions. This indirect mode of glucocorticoid-androgen interaction is in accordance with the absence of enriched AR DNA-binding near AR-dependent corticosterone-regulated genes after chronic exposure. In conclusion, we demonstrate that glucocorticoid effects and their interaction with androgen signaling are dependent on the duration of exposure and believe that our findings contribute to a better understanding of hepatic glucocorticoid biology in health and disease.
Keywords
Genetics, Molecular Biology, Biochemistry, Biotechnology, androgen receptor, androgens, glucocorticoid receptor, glucocorticoids, liver, HEPATOCELLULAR-CARCINOMA, TARGET GENES, FATTY LIVER, RECEPTOR, GR, INHIBITION, RESISTANCE, STEATOSIS, HEALTH, ALPHA

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Citation

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MLA
Buurstede, Jacobus C., et al. “Hepatic Glucocorticoid‐induced Transcriptional Regulation Is Androgen‐dependent after Chronic but Not Acute Glucocorticoid Exposure.” FASEB JOURNAL, vol. 36, no. 4, 2022, doi:10.1096/fj.202101313r.
APA
Buurstede, J. C., Paul, S. N., De Bosscher, K., Meijer, O. C., & Kroon, J. (2022). Hepatic glucocorticoid‐induced transcriptional regulation is androgen‐dependent after chronic but not acute glucocorticoid exposure. FASEB JOURNAL, 36(4). https://doi.org/10.1096/fj.202101313r
Chicago author-date
Buurstede, Jacobus C., Susana N. Paul, Karolien De Bosscher, Onno C. Meijer, and Jan Kroon. 2022. “Hepatic Glucocorticoid‐induced Transcriptional Regulation Is Androgen‐dependent after Chronic but Not Acute Glucocorticoid Exposure.” FASEB JOURNAL 36 (4). https://doi.org/10.1096/fj.202101313r.
Chicago author-date (all authors)
Buurstede, Jacobus C., Susana N. Paul, Karolien De Bosscher, Onno C. Meijer, and Jan Kroon. 2022. “Hepatic Glucocorticoid‐induced Transcriptional Regulation Is Androgen‐dependent after Chronic but Not Acute Glucocorticoid Exposure.” FASEB JOURNAL 36 (4). doi:10.1096/fj.202101313r.
Vancouver
1.
Buurstede JC, Paul SN, De Bosscher K, Meijer OC, Kroon J. Hepatic glucocorticoid‐induced transcriptional regulation is androgen‐dependent after chronic but not acute glucocorticoid exposure. FASEB JOURNAL. 2022;36(4).
IEEE
[1]
J. C. Buurstede, S. N. Paul, K. De Bosscher, O. C. Meijer, and J. Kroon, “Hepatic glucocorticoid‐induced transcriptional regulation is androgen‐dependent after chronic but not acute glucocorticoid exposure,” FASEB JOURNAL, vol. 36, no. 4, 2022.
@article{8747853,
  abstract     = {{Glucocorticoids exert their pleiotropic effects by activating the glucocorticoid receptor (GR), which is expressed throughout the body. GR-mediated transcription is regulated by a multitude of tissue- and cell type-specific mechanisms, including interactions with other transcription factors such as the androgen receptor (AR). We previously showed that the transcription of canonical glucocorticoid-responsive genes is dependent on active androgen signaling, but the extent of this glucocorticoid-androgen crosstalk warrants further investigation. In this study, we investigated the overall glucocorticoid-androgen crosstalk in the hepatic transcriptome. Male mice were exposed to GR agonist corticosterone and AR antagonist enzalutamide in order to determine the extent of androgen-dependency after acute and chronic exposure. We found that a substantial proportion of the hepatic transcriptome is androgen-dependent after chronic exposure, while after acute exposure the transcriptomic effects of glucocorticoids are largely androgen-independent. We propose that prolonged glucocorticoid exposure triggers a gradual upregulation of AR expression, instating a situation of androgen dependence which is likely not driven by direct AR-GR interactions. This indirect mode of glucocorticoid-androgen interaction is in accordance with the absence of enriched AR DNA-binding near AR-dependent corticosterone-regulated genes after chronic exposure. In conclusion, we demonstrate that glucocorticoid effects and their interaction with androgen signaling are dependent on the duration of exposure and believe that our findings contribute to a better understanding of hepatic glucocorticoid biology in health and disease.}},
  articleno    = {{e22251}},
  author       = {{Buurstede, Jacobus C. and Paul, Susana N. and De Bosscher, Karolien and Meijer, Onno C. and Kroon, Jan}},
  issn         = {{0892-6638}},
  journal      = {{FASEB JOURNAL}},
  keywords     = {{Genetics,Molecular Biology,Biochemistry,Biotechnology,androgen receptor,androgens,glucocorticoid receptor,glucocorticoids,liver,HEPATOCELLULAR-CARCINOMA,TARGET GENES,FATTY LIVER,RECEPTOR,GR,INHIBITION,RESISTANCE,STEATOSIS,HEALTH,ALPHA}},
  language     = {{eng}},
  number       = {{4}},
  pages        = {{16}},
  title        = {{Hepatic glucocorticoid‐induced transcriptional regulation is androgen‐dependent after chronic but not acute glucocorticoid exposure}},
  url          = {{http://doi.org/10.1096/fj.202101313r}},
  volume       = {{36}},
  year         = {{2022}},
}

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