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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Roles of estrogen receptors alpha and beta in differentiation of mouse sexual behavior.
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Roles of estrogen receptors alpha and beta in differentiation of mouse sexual behavior.

机译:雌激素受体α和β在小鼠性行为分化中的作用。

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摘要

Sex differences in brain and behavior are ubiquitous in sexually reproducing species. Developmental differences in circulating concentrations of gonadal steroids underlie many sexual dimorphisms. During the late embryonic and early perinatal periods, the testes produce androgens, thus, male brains are exposed to testosterone, and in situ testosterone is aromatized to estradiol. In contrast, females are not exposed to high concentrations of testosterone or estradiol until puberty. In many species, neural sex differences and sexually dimorphic behaviors in adults are initiated primarily by estradiol exposure during early development. In brain, estradiol activates two independent processes: masculinization of neural circuits and networks that are essential for expression of male-typical adult behaviors, and defeminization, the loss of the ability to display adult female-typical behaviors. Here, data for the roles of each of the known estrogen receptors (estrogen receptor alpha and estrogen receptor beta) in these two processes are reviewed. Based on work done primarily in knockout mouse models, separate roles for the two estrogen receptors are suggested. Estrogen receptor alpha is primarily involved in masculinization, while estrogen receptor beta has a major role in defeminization of sexual behaviors. In sum, estradiol can have selective effects on distinct behavioral processes via selective interactions with its two receptors, estrogen receptor alpha and estrogen receptor beta.
机译:在有性繁殖的物种中,大脑和行为的性别差异无处不在。性腺类固醇循环浓度的发育差异是许多性二态性的基础。在胚胎后期和围产期早期,睾丸产生雄激素,因此,男性大脑会暴露于睾丸激素,而原位睾丸激素会被芳香化为雌二醇。相反,女性在青春期之前不接触高浓度的睾丸激素或雌二醇。在许多物种中,成年后的神经性别差异和性二态性行为主要是由早期发育期间的雌二醇暴露引起的。在大脑中,雌二醇激活两个独立的过程:对表达男性典型成人行为必不可少的神经回路和网络进行男性化,以及女性化,丧失显示女性成人典型行为的能力。在此,回顾了每种已知雌激素受体(雌激素受体α和雌激素受体β)在这两个过程中的作用数据。基于主要在敲除小鼠模型中完成的工作,建议两种雌激素受体分别发挥作用。雌激素受体α主要参与男性化,而雌激素受体β在性行为女性化中起主要作用。总之,雌二醇可以通过与其两种受体(雌激素受体α和雌激素受体β)的选择性相互作用而对不同的行为过程产生选择性作用。

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