Wuenschell C W, Fisher R S, Kaufman D L, Tobin A J
Proc Natl Acad Sci U S A. 1986 Aug;83(16):6193-7. doi: 10.1073/pnas.83.16.6193.
Glutamate decarboxylase (GAD; EC 4.1.1.15) is responsible for the synthesis of the neurotransmitter gamma-aminobutyric acid (GABA). We have used a cDNA sequence encoding GAD to produce a single-stranded RNA hybridization probe for GAD mRNA. This probe detects GAD mRNA in individual cells in sections of mouse cerebellum. The specificity of in situ hybridization with this probe rests on four criteria: the distribution of labeled cells matched the results we and others obtain with GAD immunohistochemistry (Purkinje, Golgi II, stellate, and basket neurons were labeled, whereas granule cells and glia were not); a negative control probe having a sequence identical to GAD mRNA did not specifically label any cerebellar cells; prior treatment of the sections with RNase abolished specific labeling; the labeling showed the melting behavior typical of nucleic acid hybrids. Translation of GAD mRNA is apparently restricted to neuronal cell bodies since GAD mRNA was detectable in neuronal perikarya but not in terminals. Also, the choice of GABA as a neurotransmitter appears to be made at the level of transcription since granule neurons did not contain detectable GAD mRNA. The level of GAD mRNA varied among the classes of neurons as well as from cell to cell within each neuron type.
谷氨酸脱羧酶(GAD;EC 4.1.1.15)负责神经递质γ-氨基丁酸(GABA)的合成。我们利用编码GAD的cDNA序列制备了用于GAD mRNA的单链RNA杂交探针。该探针可检测小鼠小脑切片中单个细胞内的GAD mRNA。用该探针进行原位杂交的特异性基于以下四个标准:标记细胞的分布与我们和其他人用GAD免疫组织化学获得的结果相符(浦肯野细胞、高尔基II型细胞、星状细胞和篮状神经元被标记,而颗粒细胞和神经胶质细胞未被标记);与GAD mRNA序列相同的阴性对照探针未特异性标记任何小脑细胞;切片用核糖核酸酶预先处理后消除了特异性标记;标记显示出核酸杂交典型的解链行为。GAD mRNA的翻译显然局限于神经元细胞体,因为在神经元胞体中可检测到GAD mRNA,而在终末中未检测到。此外,由于颗粒神经元不含可检测到的GAD mRNA,因此似乎在转录水平就做出了选择GABA作为神经递质的决定。GAD mRNA的水平在不同类型的神经元之间以及每种神经元类型内的不同细胞之间都有所不同。