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MAP2 and GAP-43 expression in normal and weaver mouse cerebellum: Correlative immunohistochemical and in situ hybridization studies

机译:正常和韦弗小鼠小脑中的MAP2和GAP-43表达:相关的免疫组织化学和原位杂交研究

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摘要

MAP2 is a major microtubule-associated brain protein, selectively localized in dendrites; growth-associated phosphoprotein GAP-43 is a neuron- specific protein associated with axonal outgrowth. In adult cerebellum, both of these proteins and their corresponding RNA transcripts are most strongly expressed by granule cells. Using immunocytochemistry with antibodies and in situ hybridization histochemistry with [32P] labeled oligonucleotide probes, we examined the cellular localization of MAP2, GAP-43 and their mRNAs in the cerebellum of control and weaver (wv/wv) mutant mice, which exhibit massive granule cell death. In wild-type (+/+) mice, MAP2 immunoreactivity was seen in neuronal somata and dendrites of the granule cell layer; GAP-43 immunoreactivity was present in molecular layer, corresponding to the distribution of parallel fibres. Transcripts encoding MAP2 and GAP-43 were localized in the layer of the granule cell somata. In heterozygous weaver mice (wv/+), which feature an intermediate degree of granule cell loss, MAP2 immunoreactivity was localized in the granular layer, and the pattern of GAP- 43 immunostaining was also similar to +/+, the only difference being a thinner molecular layer. Heterozygotes had an anatomical pattern of MAP2 and GAP-43 mRNA hybridization qualitatively similar to that of the wild-type with some deviations in signal intensity. In homozygous weaver mutants (wv/wv), MAP2 immunoreactivity was extremely weak in the area beneath Purkinje cells and a certain GAP-43 immunoreactivity was seen in the upper part of cerebellar cortex. Hybridization signals for MAP2 and GAP-43 mRNAs were minimal. The reported alterations in regional pattern of MAP2 and GAP-43 expression in mutant mice offer a molecular correlate of dendritic and axonal protein gene transcription pertinent to the neuropathological manifestations of certain forms of heredodegenerative ataxia.
机译:MAP2是一种主要的与微管相关的脑蛋白,选择性地定位在树突中。与生长相关的磷蛋白GAP-43是与轴突生长相关的神经元特异性蛋白。在成年小脑中,颗粒细胞最强烈地表达这些蛋白质及其相应的RNA转录物。使用具有抗体的免疫细胞化学和与[32P]标记的寡核苷酸探针的原位杂交组织化学,我们检查了MAP2,GAP-43及其mRNA在对照和weaver(wv / wv)突变小鼠小脑中的细胞定位,这些小鼠表现出大颗粒细胞死亡。在野生型(+ / +)小鼠中,在神经元体细胞和颗粒细胞层的树突中观察到MAP2免疫反应。 GAP-43免疫反应性存在于分子层中,与平行纤维的分布相对应。编码MAP2和GAP-43的转录本位于颗粒细胞的体细胞层中。在杂合性韦弗小鼠(wv / +)中,颗粒细胞丧失程度中等,MAP2免疫反应性位于颗粒层中,GAP-43免疫染色的模式也与+ / +类似,唯一的区别是较薄的分子层。杂合子的MAP2和GAP-43 mRNA杂交的解剖学模式在质量上与野生型相似,但信号强度有所不同。在纯合的韦弗突变体(wv / wv)中,Purkinje细胞下方区域的MAP2免疫反应极弱,在小脑皮层上部可见一定的GAP-43免疫反应。 MAP2和GAP-43 mRNA的杂交信号极少。突变小鼠中MAP2和GAP-43表达区域模式的报道改变提供了与某些形式的变性退化性共济失调相关的树突状和轴突蛋白基因转录的分子相关性。

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