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Patterned Neuroprotection in the Inpp4awbl Mutant Mouse Cerebellum Correlates with the Expression of Eaat4

机译:Inpp4awbl突变小鼠小脑中的模式神经保护与Eaat4的表达相关。

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摘要

The weeble mutant mouse has a frame shift mutation in inositol polyphosphate 4-phosphatase type I (Inpp4a). The phenotype is characterized by an early onset cerebellar ataxia and neurodegeneration, especially apparent in the Purkinje cells. Purkinje cell loss is a common pathological finding in many human and mouse ataxic disorders. Here we show that in the Inpp4awbl mutant, Purkinje cells are lost in a specific temporal and spatial pattern. Loss occurs early in postnatal development; however, prior to the appearance of climbing fibers in the developing molecular layer, the mutant has a normal complement of Purkinje cells and they are properly positioned. Degeneration and reactive gliosis are present at postnatal day 5 and progress rapidly in a defined pattern of patches; however, Inpp4a is expressed uniformly across Purkinje cells. In late stage mutants, patches of surviving Purkinje cells appear remarkably normal with the exception that the climbing fibers have been excessively eliminated. Surviving Purkinje cells express Eaat4, a glutamate transporter that is differentially expressed in subsets of Purkinje cells during development and into adult stages. Prior to Purkinje cell loss, reactive gliosis and dendritic atrophy can be seen in Eaat4 negative stripes. Our data suggest that Purkinje cell loss in the Inpp4awbl mutant is due to glutamate excitotoxicity initiated by the climbing fiber, and that Eaat4 may exert a protective effect.
机译:这只可哭的突变小鼠的I型肌醇多磷酸4-磷酸酶(Inpp4a)具有移码突变。该表型的特征是早发性小脑共济失调和神经退行性变,在浦肯野细胞中尤为明显。浦肯野细胞丢失是许多人类和小鼠共济失调疾病的常见病理发现。在这里,我们显示在Inpp4awbl突变体中,浦肯野细胞以特定的时间和空间模式丢失。损失发生在产后早期。然而,在攀登纤维出现在发育中的分子层之前,该突变体具有正常的浦肯野细胞补体,并且已正确定位。出生后第5天出现变性和反应性神经胶质增生,并以明确的斑块形式迅速进展;但是,Inpp4a在整个Purkinje细胞中均表达。在晚期突变体中,存活的浦肯野细胞斑片看起来非常正常,除了攀爬纤维已被过度消除。存活的浦肯野细胞表达Eaat4,一种谷氨酸转运蛋白,在发育过程中和成年阶段在浦肯野细胞亚群中差异表达。在浦肯野细胞丢失之前,可以在Eaat4阴性条纹中看到反应性神经胶质增生和树突萎缩。我们的数据表明,Inpp4awbl突变体中的浦肯野细胞丢失是由于攀爬纤维引发的谷氨酸兴奋性毒性所致,而Eaat4可能发挥保护作用。

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