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欧洲椋鸟性二态性发声控制核团X区及基底神经节中D1多巴胺受体的特征与定位

Characterization and localization of D1 dopamine receptors in the sexually dimorphic vocal control nucleus, area X, and the basal ganglia of European starlings.

作者信息

Casto J M, Ball G F

机构信息

Department of Psychology, Johns Hopkins University, Baltimore, Maryland 21218.

出版信息

J Neurobiol. 1994 Jul;25(7):767-80. doi: 10.1002/neu.480250703.

Abstract

D1 dopamine receptors were pharmacologically characterized and localized by quantitative autoradiography in the basal ganglia of male and female European starlings (Sturnus vulgaris). The D1 selective antagonist SCH 23390 was used to label this receptor subtype. Starlings are songbirds and possess a neural circuit implicated in the learning and production of song. This circuit includes a sexually dimorphic nucleus, area X, that is a subregion of the parolfactory lobe of the basal ganglia and is known from work on zebra finches to receive dopaminergic input from the area ventralis of Tsai. We focused our investigation on the D1-like receptor subtype because they are abundant in the basal ganglia. Competition studies indicate that a variety of dopaminergic ligands compete with [3H] SCH 23390 for the binding site in an order of potency characteristic of a D1-like receptor. Autoradiographic studies of the basal ganglia revealed high D1 receptor densities in the avian homologues of the caudate-putamen and relatively low-receptor densities were observed in the avian homologue of the globus pallidus. In male starlings, area X could be reliably discerned on the autoradiograms by the higher density of D1 receptors compared to the surrounding parolfactory lobe (LPO). This was also true for females, though not as reliably as in males. When we compared the mean D1 receptor density in area X for males and females we did not find a significant sex difference. However, we also analyzed the data by comparing sex differences in the degree to which area X has a higher receptor density in comparison with the surrounding LPO. When we normalized D1 receptor density in area X relative to the LPO, we did find a significant sex difference. This sex difference in relative receptor density represents another neural sex difference in the song circuit that may mediate sex differences in the learning and production of song in starlings and other songbirds.

摘要

通过定量放射自显影技术,对雄性和雌性欧洲椋鸟(Sturnus vulgaris)基底神经节中的D1多巴胺受体进行了药理学特性鉴定和定位。使用D1选择性拮抗剂SCH 23390标记该受体亚型。椋鸟是鸣禽,拥有一个与歌曲学习和产生有关的神经回路。这个回路包括一个性二态核,即X区,它是基底神经节副嗅叶的一个亚区域,从斑胸草雀的研究中可知,它接受来自蔡氏腹侧区的多巴胺能输入。我们将研究重点放在D1样受体亚型上,因为它们在基底神经节中含量丰富。竞争研究表明,多种多巴胺能配体与[3H] SCH 23390竞争结合位点,其效力顺序具有D1样受体的特征。基底神经节的放射自显影研究显示,在鸟类尾状核-壳核的同源物中D1受体密度较高,而在鸟类苍白球的同源物中观察到受体密度相对较低。在雄性椋鸟中,与周围的副嗅叶(LPO)相比,X区在放射自显影图上可通过较高的D1受体密度可靠地辨别出来。雌性也是如此,不过不如雄性那样可靠。当我们比较雄性和雌性X区的平均D1受体密度时,未发现显著的性别差异。然而,我们也通过比较X区与周围LPO相比受体密度较高的程度上的性别差异来分析数据。当我们将X区的D1受体密度相对于LPO进行归一化时,确实发现了显著的性别差异。相对受体密度的这种性别差异代表了鸣唱回路中的另一种神经性别差异,可能介导椋鸟和其他鸣禽在歌曲学习和产生方面的性别差异。

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