Negri-Cesi Paola, Colciago Alessandra, Pravettoni Antonia, Casati Lavinia, Conti Luciano, Celotti Fabio
Department of Endocrinology, University of Milano, via Balzaretti 9, 20133 Milano, Italy.
J Steroid Biochem Mol Biol. 2008 Apr;109(3-5):294-9. doi: 10.1016/j.jsbmb.2008.03.003. Epub 2008 Mar 6.
Brain sexual differentiation is a complex developmental phenomenon influenced by the genetic background, sex hormone secretions and environmental inputs, including pollution. The main hormonal drive to masculinize and defeminize the rodent brain is testosterone secreted by the testis. The hormone does not influence sex brain differentiation only in its native configuration, but it mostly needs local conversion into active metabolites (estradiol and DHT) through the action of specific enzymatic systems: the aromatase and 5alpha-reductase (5alpha-R), respectively. This allows the hormone to control target cell gene expression either through the estrogen (ER) or the androgen (AR) receptors. The developmental profile of testosterone metabolizing enzymes, different in the two sexes, is therefore of the utmost importance in affecting the bioavailability of the steroids active in brain differentiation. Widely diffused pollutants, like polychlorinated biphenyls (PCBs) are able to affect the production and/or action of testosterone metabolites, exerting detrimental influences on reproduction and sex behavior. The main studies performed in our and other laboratories concerning the pattern of expression and the control of the enzymatic systems involved in brain androgen action and metabolism are shortly reviewed. Some recent data on the influence exerted by PCBs on these metabolic systems are also reported.
脑性分化是一种复杂的发育现象,受遗传背景、性激素分泌以及包括污染在内的环境因素影响。使啮齿动物脑男性化和去女性化的主要激素驱动因素是睾丸分泌的睾酮。该激素并非仅以其天然形式影响脑性分化,而是大多需要通过特定酶系统(分别为芳香化酶和5α-还原酶(5α-R))的作用,在局部转化为活性代谢产物(雌二醇和双氢睾酮)。这使得该激素能够通过雌激素(ER)或雄激素(AR)受体来控制靶细胞基因表达。因此,睾酮代谢酶在两性中的不同发育模式对于影响在脑分化中起作用的类固醇的生物利用度至关重要。广泛传播的污染物,如多氯联苯(PCBs),能够影响睾酮代谢产物的产生和/或作用,对生殖和性行为产生有害影响。本文简要综述了我们实验室和其他实验室关于参与脑雄激素作用和代谢的酶系统的表达模式及调控的主要研究。还报告了一些关于多氯联苯对这些代谢系统影响的最新数据。