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首页> 外文期刊>Journal of Neuropathology and Experimental Neurology: Official Journal of the American Association of Neuropathologists, Inc >Altered Dynein Axonemal Assembly Factor 1 Expression in C-Boutons in Bulbar and Spinal Cord Motor-Neurons in Sporadic Amyotrophic Lateral Sclerosis
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Altered Dynein Axonemal Assembly Factor 1 Expression in C-Boutons in Bulbar and Spinal Cord Motor-Neurons in Sporadic Amyotrophic Lateral Sclerosis

机译:在散杆菌和脊髓电动机神经元中的C-Boutons中改变的Dynein Axonemal组装因子1表达在散发性肌营养的外壳中

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摘要

Dyneins are major components of microtubules. Dynein assembly is modulated by a heterogeneous group of dynein axonemal assembly factors (DNAAFs). The present study analyzes dynein axonemal assembly factor 1 (DNAAF1) and leucine-rich repeat-containing protein 50 (LRRC50), the corresponding encoded protein, in lower motor neurons in spinal cord of sALS postmortem samples and hSOD1-G93A transgenic mice compared with controls. DNAAF1 mRNA is significantly reduced in the anterior horn in sALS, and LRRC50 immunoreactivity is significantly reduced in C-boutons of the remaining motor neurons of the anterior horn, dorsal nucleus of the vagus nerve, and hypoglossal nuclei at terminal stages of ALS. LRRC50 immunoreactivity has a perinuclear distribution in motor neurons in sALS thus suggesting a disorder of transport. The number of LRRC50-/S1R-immunoreactive structures is also significantly decreased in hSOD1-G93A transgenic mice at the age of 90 days (preclinical stages), and the number of motor neurons with LRRC50-immunoreactive structures is significantly reduced in animals aged 150 days (clinical stages). These observations suggest cholinergic denervation of motor neurons as a pathogenic factor in motor neuron disease. LRRC50 protein levels were not detected in human CSF.
机译:Dyneins是Microtubules的主要成分。 Dynein组件由异质的Dynein Axonemal组装因子(DNAAF)调节。本研究分析Dynein Axonemal组装因子1(DNAAF1)和富含少氨酸的重复的蛋白50(LRRC50),相应的编码蛋白,在Sals后模拟样本和HSOD1-G93A转基因小鼠的脊髓中的较低运动神经元中,与对照组相比。在SAL中的前角中,DNAAF1 mRNA显着降低,并且LRRC50免疫反应性在前喇叭的剩余电动机神经元的C-末端显着降低,迷走神经的背核和ALS末尾的低核核。 LRRC50免疫反应性在SAL中的运动神经元中具有PerInculcleclector,因此表明运输障碍。在90天(临床前阶段)的HSOD1-G93A转基因小鼠中,LRRC50- / S1R-IM-IM-IM-IM-PIMM杂种结构的数量也显着降低,并且LRRC50-免疫反应结构的电动神经元数量显着降低了150天的动物(临床阶段)。这些观察结果表明电机神经元的胆碱能证,作为运动神经元疾病的致病因子。在人CSF中未检测到LRRC50蛋白水平。

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