Estren (4-estren-3α, 17β-diol) is a prohormone that regulates both androgenic and estrogenic transcriptional effects through the androgen receptor

M Centrella, TL McCarthy, WZ Chang… - Molecular …, 2004 - academic.oup.com
M Centrella, TL McCarthy, WZ Chang, DC Labaree, RB Hochberg
Molecular endocrinology, 2004academic.oup.com
Alternative mechanisms of steroid action, through both traditional nuclear receptors and
indirect pathways of gene activation, are emerging. Recent studies suggest that the synthetic
steroid, 4-estrene-3α, 17β-diol (estren), has nongenotropic as well as sex-nonspecific
osteogenic effects in ovariectomized and orchidectomized mice. We found limited estrogen
receptor-dependent effects by estren on gene expression in primary osteoblast cultures and
showed that it binds poorly to estrogen and androgen receptors in vitro. However, estren …
Abstract
Alternative mechanisms of steroid action, through both traditional nuclear receptors and indirect pathways of gene activation, are emerging. Recent studies suggest that the synthetic steroid, 4-estrene-3α,17β-diol (estren), has nongenotropic as well as sex-nonspecific osteogenic effects in ovariectomized and orchidectomized mice. We found limited estrogen receptor-dependent effects by estren on gene expression in primary osteoblast cultures and showed that it binds poorly to estrogen and androgen receptors in vitro. However, estren potently regulated direct and indirect androgen receptor-dependent effects on gene expression by osteoblasts. Consistent with this, osteoblasts produced the potent androgen 19-nortestosterone from estren by way of a 3α-hydroxysteroid dehydrogenase-like activity. Moreover, recombinant 3α-hydroxysteroid dehydrogenase (AKR1C9) and osteoblast-derived cell lysate each effectively converted estren to 19-nortestosterone in vitro, and mRNA encoding this enzyme occurs in osteoblasts. In addition to its androgenic activity, estren potently stimulated androgen receptor-dependent effects on gene expression through conventional estrogen-sensitive transcriptional elements in osteoblasts. Therefore, through local metabolism, estren indirectly activates the androgen receptor to regulate both androgen- and estrogen-like transcriptional responses by bone-forming cells.
Oxford University Press