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类固醇代谢酶在脑性别测定中的作用

Steroid metabolising enzymes in the determination of brain gender.

作者信息

Hutchison J B, Wozniak A, Beyer C, Karolczak M, Hutchison R E

机构信息

MRC Neuroendocrine Development and Behaviour Group, The Babraham Institute, Cambridge, UK.

出版信息

J Steroid Biochem Mol Biol. 1999 Apr-Jun;69(1-6):85-96. doi: 10.1016/s0960-0760(99)00057-6.

Abstract

The neurotrophic effects of oestrogen formed in the brain are important in brain sexual differentiation of the central nervous system and behaviour. Aromatase, converting testosterone to oestradiol-17beta, is a key enzyme involved in brain development. In primary cell cultures of foetal hypothalamus, we have found that male neurones consistently have higher aromatase activity than in the female. Using a specific antibody to the mouse aromatase, immunoreactivity was localized in the neural soma and neurites in hypothalamic cultures. Additionally more male foetal hypothalamus neurones express aromatase than in the female. Testosterone increases aromatase activity in parallel with a greater number of aromatase-immunoreactive neurones. Testosterone also increases soma size, neurite length, and branching of cultured hypothalamic neurones. The neuronal aromatase activity appears to be sensitive to the inductive effects of androgen only during the later stages of foetal development. Endogenous inhibitors of the aromatase are also likely to have a regulatory role. This work suggests that regulation of a network of aromatase neurones, sensitive to the hormonal environment of the hypothalamus, may determine when oestrogens are available for neurotrophic effects underlying brain differentiation.

摘要

大脑中生成的雌激素的神经营养作用在中枢神经系统的脑性分化及行为方面至关重要。芳香化酶可将睾酮转化为雌二醇 - 17β,是参与脑发育的关键酶。在胎儿下丘脑的原代细胞培养中,我们发现雄性神经元的芳香化酶活性始终高于雌性。使用针对小鼠芳香化酶的特异性抗体,免疫反应性定位于下丘脑培养物中的神经体细胞和神经突。此外,雄性胎儿下丘脑神经元表达芳香化酶的数量多于雌性。睾酮与更多芳香化酶免疫反应性神经元同时增加芳香化酶活性。睾酮还增加培养的下丘脑神经元的细胞体大小、神经突长度和分支。神经元芳香化酶活性似乎仅在胎儿发育后期对雄激素的诱导作用敏感。芳香化酶的内源性抑制剂也可能具有调节作用。这项工作表明,对下丘脑激素环境敏感的芳香化酶神经元网络的调节,可能决定雌激素何时可用于脑分化潜在的神经营养作用。

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