Waszczak B L, Martin L P, Greif G J, Freedman J E
Department of Pharmaceutical Sciences, Northeastern University, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 1998 Sep 15;95(19):11440-4. doi: 10.1073/pnas.95.19.11440.
One view of the efferent circuitry of the basal ganglia holds that dopamine D1 and D2 receptors are segregated to striatonigral and striatopallidal neurons, respectively. The present studies investigated whether functional D2-like receptors are, in fact, restricted to striatopallidal neurons. Single, freshly dissociated cells from rat striatum were identified as either striatonigral or striatopallidal projection neurons by fluorescence retrograde labeling. By using cell-attached patch-clamp recordings, neurons of each efferent group were evaluated for the presence of a D2-like receptor-activated 85-pS K+ channel as a measure of receptor function. We now report the presence of this D2 receptor-mediated response on both striatal efferent populations, but we observed an approximately 2-fold higher likelihood of encountering the channel on pallidal- versus nigral-projecting neurons. The channel's conductance properties appeared identical in both groups of neurons, but there was a significantly greater open probability for channels detected on striatopallidal neurons. These results indicate that functional D2 receptors are not segregated to striatopallidal neurons, but may be expressed in a higher proportion of, or at a higher density and/or efficiency of coupling on, pallidal- versus nigral-projecting striatal efferents.
关于基底神经节传出神经回路的一种观点认为,多巴胺D1和D2受体分别定位于纹状体黑质神经元和纹状体苍白球神经元。本研究调查了功能性D2样受体是否实际上仅局限于纹状体苍白球神经元。通过荧光逆行标记,将来自大鼠纹状体的单个新鲜解离细胞鉴定为纹状体黑质或纹状体苍白球投射神经元。使用细胞贴附式膜片钳记录,评估每个传出神经组的神经元是否存在D2样受体激活的85-pS钾通道,以此作为受体功能的指标。我们现在报告在两种纹状体传出神经群体上均存在这种D2受体介导的反应,但我们观察到在投射到苍白球的神经元上遇到该通道的可能性比投射到黑质的神经元高约2倍。两组神经元中该通道的电导特性似乎相同,但在纹状体苍白球神经元上检测到的通道开放概率明显更高。这些结果表明,功能性D2受体并非仅局限于纹状体苍白球神经元,而是可能在投射到苍白球的纹状体传出神经上以更高的比例表达,或以更高的密度和/或耦合效率表达。