首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Friedreich ataxia mouse models with progressive cerebellar and sensory ataxia reveal autophagic neurodegeneration in dorsal root ganglia.
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Friedreich ataxia mouse models with progressive cerebellar and sensory ataxia reveal autophagic neurodegeneration in dorsal root ganglia.

机译:进行性小脑和感觉性共济失调的Friedreich共济失调小鼠模型揭示了背根神经节自噬性神经退行性变。

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Friedreich ataxia (FRDA), the most common recessive ataxia, is characterized by degeneration of the large sensory neurons of the spinal cord and cardiomyopathy. It is caused by severely reduced levels of frataxin, a mitochondrial protein involved in iron-sulfur cluster (ISC) biosynthesis. Through a spatiotemporally controlled conditional gene-targeting approach, we have generated two mouse models for FRDA that specifically develop progressive mixed cerebellar and sensory ataxia, the most prominent neurological features of FRDA. Histological studies showed both spinal cord and dorsal root ganglia (DRG) anomalies with absence of motor neuropathy, a hallmark of the human disease. In addition, one line revealed a cerebellar granule cell loss, whereas both lines had Purkinje cell arborization defects. These lines represent the first FRDA models with a slowly progressive neurological degeneration. We identified an autophagic process as the causative pathological mechanism in the DRG, leading to removal of mitochondrial debris and apparition of lipofuscin deposits. These mice therefore represent excellent models for FRDA to unravel the pathological cascade and to test compounds that interfere with the degenerative process.
机译:Friedreich共济失调(FRDA)是最常见的隐性共济失调,其特征是脊髓的大型感觉神经元变性和心肌病。它是由于frataxin的水平严重降低而产生的,frataxin是一种参与铁硫簇(ISC)生物合成的线粒体蛋白。通过时空控制的条件基因靶向方法,我们为FRDA生成了两个小鼠模型,这些模型专门发展了进行性小脑和感觉共济失调,这是FRDA最突出的神经系统特征。组织学研究显示,脊髓和背根神经节(DRG)异常均没有运动神经病变,这是人类疾病的标志。另外,一个系显示小脑颗粒细胞丢失,而两个系均具有浦肯野细胞乔化缺陷。这些线代表第一个具有缓慢进行性神经变性的FRDA模型。我们确定自噬过程作为DRG中的致病病理机制,导致线粒体碎片的清除和脂褐素沉积物的消失。因此,这些小鼠代表了FRDA的出色模型,可以揭示病理级联并测试干扰变性过程的化合物。

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