4.5 Article

Role of Androgen and Estrogen Receptors for the Action of Dehydroepiandrosterone (DHEA)

期刊

ENDOCRINOLOGY
卷 155, 期 3, 页码 889-896

出版社

ENDOCRINE SOC
DOI: 10.1210/en.2013-1561

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资金

  1. Region Vastra Gotaland
  2. Ragnar Soderberg Foundation
  3. Goteborg Medical Society
  4. Health and Medical Care Executive Board of the Region Vastra Gotaland
  5. Margareta Rheuma Research Foundation
  6. COMBINE
  7. Swedish Research Council
  8. King Gustav Foundation
  9. Goteborg's Association Against Rheumatism
  10. Swedish Association for Medical Research
  11. Ake Wiberg Foundation
  12. Rune and Ulla Almlovis Foundation for Rheumatology Research
  13. Tore Nilson Foundation
  14. Magnus Bergvall Foundation
  15. Novo Nordisk Fonden [NNF14OC0010513, NNF13OC0005785] Funding Source: researchfish

向作者/读者索取更多资源

Dehydroepiandrosterone (DHEA) is an abundant steroid hormone, and its mechanism of action is yet to be determined. The aim of this study was to elucidate the importance of androgen receptors (ARs) and estrogen receptors (ERs) for DHEA function. Orchidectomized C57BL/6 mice were treated with DHEA, DHT, 17 beta-estradiol-3-benzoate (E2), or vehicle. Orchidectomized AR-deficient (ARKO) mice and wild-type (WT) littermates were treated with DHEA or vehicle for 2.5 weeks. At termination, bone mineral density (BMD) was evaluated, thymus and seminal vesicles were weighted, and submandibular glands (SMGs) were histologically examined. To evaluate the in vivo ER activation of the classical estrogen signaling pathway, estrogen response element reporter mice were treated with DHEA, DHT, E2, or vehicle, and a reporter gene was investigated in different sex steroid-sensitive organs after 24 hours. DHEA treatment increased trabecular BMD and thymic atrophy in both WT and ARKO mice. In WT mice, DHEA induced enlargement of glands in the SMGs, whereas this effect was absent in ARKO mice. Furthermore, DHEA was able to induce activation of classical estrogen signaling in bone, thymus, and seminal vesicles but not in the SMGs. In summary, the DHEA effects on trabecular BMD and thymus do not require signaling via AR and DHEA can activate the classical estrogen signaling in these organs. In contrast, DHEA induction of gland size in the SMGs is dependent on AR and does not involve classical estrogen signaling. Thus, both ERs and ARs are involved in mediating the effects of DHEA in an organ-dependent manner.

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