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鹌鹑雄性性行为调控中芳香化酶(雌激素合成酶)与多巴胺之间的相互作用。

Interactions between aromatase (estrogen synthase) and dopamine in the control of male sexual behavior in quail.

作者信息

Balthazart Jacques, Baillien Michelle, Ball Gregory F

机构信息

University of Liège, Center for Cellular and Molecular Neurobiology, Research Group in Behavioral Neuroendocrinology, 17 place Delcour (Bat. L1), B-4020 Liège, Belgium.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2002 May;132(1):37-55. doi: 10.1016/s1096-4959(01)00531-0.

Abstract

In male quail, like in other vertebrates including rodents, testosterone acting especially through its estrogenic metabolites is necessary for the activation of male sexual behavior. Also, the administration of dopamine agonists and antagonists profoundly influences male sexual behavior. How the steroid-sensitive neural network and dopamine interact physiologically, remains largely unknown. It is often implicitly assumed that testosterone or its metabolite estradiol, stimulates male sexual behavior via the modification of dopaminergic transmission. We have now identified in quail two possible ways in which dopamine could potentially affect sexual behavior by modulating the aromatization of testosterone into an estrogen. One is a long-acting mechanism that presumably involves the modification of dopaminergic transmission followed by the alteration of the genomic expression of aromatase. The other is a more rapid mechanism that does not appear to be dopamine receptor-mediated and may involve a direct interaction of dopamine with aromatase (possibly via substrate competition). We review here the experimental data supporting the existence of these controls of aromatase activity by dopamine and discuss the possible contribution of these controls to the activation of male sexual behavior.

摘要

在雄性鹌鹑中,与包括啮齿动物在内的其他脊椎动物一样,睾酮,尤其是通过其雌激素代谢产物发挥作用,对于激活雄性性行为是必要的。此外,多巴胺激动剂和拮抗剂的给药会深刻影响雄性性行为。类固醇敏感神经网络与多巴胺在生理上如何相互作用,在很大程度上仍然未知。人们常常隐含地认为,睾酮或其代谢产物雌二醇通过改变多巴胺能传递来刺激雄性性行为。我们现在已经在鹌鹑中确定了多巴胺可能通过调节睾酮向雌激素的芳香化作用来潜在影响性行为的两种可能方式。一种是长效机制,大概涉及多巴胺能传递的改变,随后是芳香化酶基因组表达的改变。另一种是更快的机制,似乎不是由多巴胺受体介导的,可能涉及多巴胺与芳香化酶的直接相互作用(可能通过底物竞争)。我们在此回顾支持多巴胺对芳香化酶活性进行这些调控存在的实验数据,并讨论这些调控对激活雄性性行为的可能贡献。

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