Langley K C, Bergson C, Greengard P, Ouimet C C
Program in Neuroscience, Biomedical Research Facility, Florida State University, Tallahassee 32306-4075, USA.
Neuroscience. 1997 Jun;78(4):977-83. doi: 10.1016/s0306-4522(96)00583-0.
DARPP-32 (dopamine- and cyclic AMP-regulated phosphoprotein, apparent molecular weight of 32,000) is part of the D1 dopamine receptor signal transduction cascade. Both the D1 receptor and DARPP-32 are found in the caudate putamen, but it is not known if they co-localize in the medium-sized spiny neurons. In the present study, double-labelling immunocytochemistry was used to simultaneously localize the D1 receptor and DARPP-32 in the rat caudate-putamen. The neuropil was heavily and uniformly immunoreactive for both the D1 receptor and DARPP-32. All cell bodies immunopositive for the D1 receptor were immunopositive for DARPP-32. The D1 receptor was not detectable, however, in nearly half of the DARPP-32-containing cell bodies. DARPP-32 is present in striatopallidal and striatonigral projections. The D1 receptor co-localized with DARPP-32 in fibres of the entopeduncular nucleus and the pars reticulata of the substantia nigra. In the globus pallidus, however, D1 receptor immunoreactivity was barely detectable, while DARPP-32 immunolabelling of axons and axon terminals was intense. These data suggest that the striatal somata containing both the D1 receptor and DARPP-32 project to the entopeduncular nucleus and substantia nigra, whereas somata containing only DARPP-32 immunoreactivity project to the globus pallidus. Thus, the differences in expression of the D1 receptor and of DARPP-32 within striatal cell bodies are likely reflected in their projections. The co-localization of the D1 receptor and DARPP-32 is consistent with the known regulation of DARPP-32 phosphorylation by D1 receptor activation. The demonstration of a large population of striatal neurons that contain DARPP-32 but apparently do not contain D1 receptors substantiates the premise that these cells have an alternative signal transduction pathway. Subsequent studies are needed to search for a signal transduction pathway for these neurons analogous to the dopamine D1 receptor pathway.
多巴胺和环磷酸腺苷调节的磷蛋白(表观分子量为32,000,DARPP - 32)是D1多巴胺受体信号转导级联反应的一部分。D1受体和DARPP - 32都存在于尾状壳核中,但它们是否在中等大小的棘状神经元中共定位尚不清楚。在本研究中,采用双重标记免疫细胞化学方法同时在大鼠尾状壳核中定位D1受体和DARPP - 32。神经毡对D1受体和DARPP - 32均有强烈且均匀的免疫反应性。所有对D1受体呈免疫阳性的细胞体对DARPP - 32也呈免疫阳性。然而,在近一半含有DARPP - 32的细胞体中未检测到D1受体。DARPP - 32存在于纹状体苍白球和纹状体黑质投射中。D1受体与DARPP - 32在脚内核和黑质网状部的纤维中共定位。然而,在苍白球中,几乎检测不到D1受体免疫反应性,而轴突和轴突终末的DARPP - 32免疫标记则很强烈。这些数据表明,同时含有D1受体和DARPP - 32的纹状体细胞体投射到脚内核和黑质,而仅含有DARPP - 32免疫反应性的细胞体投射到苍白球。因此,纹状体细胞体内D1受体和DARPP - 32表达的差异可能反映在它们的投射中。D1受体和DARPP - 32的共定位与已知的D1受体激活对DARPP - 32磷酸化的调节一致。大量含有DARPP - 32但显然不含D1受体的纹状体神经元的证明证实了这些细胞具有替代信号转导途径这一前提。后续研究需要寻找类似于多巴胺D1受体途径的这些神经元的信号转导途径。