Effects of 3-beta-diol, an androgen metabolite with intrinsic estrogen-like effects, in modulating the aquaporin-9 expression in the rat efferent ductules |
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Authors: | Patrícia Picciarelli-Lima André G Oliveira Adelina M Reis Evanguedes Kalapothakis Germán AB Mahecha Rex A Hess Cleida A Oliveira |
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Affiliation: | (1) Department of Morphology, Federal University of Minas Gerais, Cx. Postal 486, CEP 31.270-901 Belo Horizonte, Minas Gerais, Brazil;(2) Department of Physiology and Biophysics, Federal University of Minas Gerais, Cx. Postal 486, CEP 31.270-901 Belo Horizonte, Minas Gerais, Brazil;(3) Department of General Biology, Federal University of Minas Gerais, Cx. Postal 486, CEP 31.270-901 Belo Horizonte, Minas Gerais, Brazil;(4) Department of Veterinary Biosciences, University of Illinois, 2001 S. Lincoln, 61802 Urbana, IL, USA |
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Abstract: | Background Fluid homeostasis is critical for normal function of the male reproductive tract and aquaporins (AQP) play an important role in maintenance of this water and ion balance. Several AQPs have been identified in the male, but their regulation is not fully comprehended. Hormonal regulation of AQPs appears to be dependent on the steroid in the reproductive tract region. AQP9 displays unique hormonal regulation in the efferent ductules and epididymis, as it is regulated by both estrogen and dihydrotestosterone (DHT) in the efferent ductules, but only by DHT in the initial segment epididymis. Recent data have shown that a metabolite of DHT, 5-alpha-androstane-3-beta-17-beta-diol (3-beta-diol), once considered inactive, is also present in high concentrations in the male and indeed has biological activity. 3-beta-diol does not bind to the androgen receptor, but rather to estrogen receptors ER-alpha and ER-beta, with higher affinity for ER-beta. The existence of this estrogenic DHT metabolite has raised the possibility that estradiol may not be the only estrogen to play a major role in the male reproductive system. Considering that both ER-alpha and ER-beta are highly expressed in efferent ductules, we hypothesized that the DHT regulation of AQP9 could be due to the 3-beta-diol metabolite. |
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