Brené S, Lindefors N, Ehrlich M, Taubes T, Horiuchi A, Kopp J, Hall H, Sedvall G, Greengard P, Persson H
Department of Clinical Neuroscience, Karolinska Institute, Stockholm, Sweden.
J Neurosci. 1994 Mar;14(3 Pt 1):985-98. doi: 10.1523/JNEUROSCI.14-03-00985.1994.
In this study we have isolated and sequenced human cDNAs for the phosphoproteins DARPP-32, ARPP-21, and ARPP-16/19, and have compared these sequences to previously characterized bovine and rat cDNAs. In situ hybridization and Northern blot analysis with the human cDNA probes were used to study the expression of mRNAs encoding ARPP-16/19, ARPP-21, and DARPP-32 in human postmortem brain tissue. In situ hybridization was performed using horizontal whole hemisphere sections. Five representative levels of the brain ranging from 71 mm to 104 mm ventral to vertex were examined. All three probes showed distinct hybridization patterns in the caudate nucleus, putamen, nucleus accumbens, and the amygdaloid complex. For ARPP-16/19 mRNA, a hybridization signal comparable to the signal in caudate nucleus, putamen, and nucleus accumbens was also detected in the neocortex. ARPP-21 and DARPP-32 mRNA, on the other hand, were present in lower levels in neocortical regions. DARPP-32 mRNA was abundant in the cerebellar cortex at the level of the Purkinje cell layer. High levels of ARPP-16/19 and ARPP-21 mRNA were also found in the cerebellar cortex, where they were confined to deeper layers. The present result demonstrate that mRNAs for the three phosphoproteins are expressed in overlapping, but also distinct, areas of the human brain that in many cases coincide with previously described distribution of the dopamine D1 receptor.
在本研究中,我们分离并测序了磷蛋白DARPP - 32、ARPP - 21和ARPP - 16/19的人类cDNA,并将这些序列与先前已鉴定的牛和大鼠cDNA进行了比较。使用人类cDNA探针进行原位杂交和Northern印迹分析,以研究编码ARPP - 16/19、ARPP - 21和DARPP - 32的mRNA在人类死后脑组织中的表达。原位杂交使用水平全脑半球切片进行。检查了从头顶腹侧71毫米到104毫米范围内脑的五个代表性水平。所有三种探针在尾状核、壳核、伏隔核和杏仁复合体中均显示出独特的杂交模式。对于ARPP - 16/19 mRNA,在新皮层中也检测到了与尾状核、壳核和伏隔核中信号相当的杂交信号。另一方面,ARPP - 21和DARPP - 32 mRNA在新皮层区域中的水平较低。DARPP - 32 mRNA在浦肯野细胞层水平的小脑皮层中丰富。在小脑皮层中也发现了高水平的ARPP - 16/19和ARPP - 21 mRNA,它们局限于更深的层。目前的结果表明,这三种磷蛋白的mRNA在人类大脑中重叠但又不同的区域表达,在许多情况下与先前描述的多巴胺D1受体分布一致。