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首页> 外文期刊>PLoS Genetics >Comparison of independent screens on differentially vulnerable motor neurons reveals alpha-synuclein as a common modifier in motor neuron diseases
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Comparison of independent screens on differentially vulnerable motor neurons reveals alpha-synuclein as a common modifier in motor neuron diseases

机译:对差异脆弱的运动神经元的独立屏幕的比较显示,α-突触核蛋白是运动神经元疾病的常见修饰因子

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摘要

The term “motor neuron disease” encompasses a spectrum of disorders in which motor neurons are the primary pathological target. However, in both patients and animal models of these diseases, not all motor neurons are equally vulnerable, in that while some motor neurons are lost very early in disease, others remain comparatively intact, even at late stages. This creates a valuable system to investigate the factors that regulate motor neuron vulnerability. In this study, we aim to use this experimental paradigm to identify potential transcriptional modifiers. We have compared the transcriptome of motor neurons from healthy wild-type mice, which are differentially vulnerable in the childhood motor neuron disease Spinal Muscular Atrophy (SMA), and have identified 910 transcriptional changes. We have compared this data set with published microarray data sets on other differentially vulnerable motor neurons. These neurons were differentially vulnerable in the adult onset motor neuron disease Amyotrophic Lateral Sclerosis (ALS), but the screen was performed on the equivalent population of neurons from neurologically normal human, rat and mouse. This cross species comparison has generated a refined list of differentially expressed genes, including CELF5, Col5a2, PGEMN1, SNCA, Stmn1 and HOXa5, alongside a further enrichment for synaptic and axonal transcripts. As an in vivo validation, we demonstrate that the manipulation of a significant number of these transcripts can modify the neurodegenerative phenotype observed in a Drosophila line carrying an ALS causing mutation. Finally, we demonstrate that vector-mediated expression of alpha-synuclein (SNCA), a transcript decreased in selectively vulnerable motor neurons in all four screens, can extend life span, increase weight and decrease neuromuscular junction pathology in a mouse model of SMA. In summary, we have combined multiple data sets to identify transcripts, which are strong candidates for being phenotypic modifiers, and demonstrated SNCA is a modifier of pathology in motor neuron disease.
机译:术语“运动神经元疾病”涵盖其中运动神经元是主要病理学目标的一系列疾病。但是,在这些疾病的患者模型和动物模型中,并非所有的运动神经元都同样脆弱,因为虽然某些运动神经元在疾病早期就丢失了,但其他运动神经元则保持相对完整,即使在晚期也是如此。这将创建一个有价值的系统来研究调节运动神经元易损性的因素。在这项研究中,我们旨在使用这种实验范式来识别潜在的转录修饰子。我们比较了健康的野生型小鼠的运动神经元的转录组,这些小鼠在儿童运动神经元疾病脊髓性肌萎缩症(SMA)中具有不同的脆弱性,并确定了910个转录变化。我们已经将该数据集与其他差异易感运动神经元上已发布的微阵列数据集进行了比较。这些神经元在成年发作性运动神经元疾病肌萎缩性侧索硬化症(ALS)中具有不同的脆弱性,但对来自神经学正常的人,大鼠和小鼠的等价神经元进行了筛选。这种跨物种比较产生了差异表达基因的精炼清单,包括CELF5,Col5a2,PGEMN1,SNCA,Stmn1和HOXa5,以及对突触和轴突转录物的进一步富集。作为体内验证,我们证明了对大量这些转录本的操作可以修饰在携带引起突变的ALS的果蝇系中观察到的神经变性表型。最后,我们证明了载体介导的α-突触核蛋白(SNCA)的表达,在所有四个屏幕中选择性脆弱的运动神经元中均会降低,在SMA小鼠模型中可以延长寿命,增加体重并减少神经肌肉接头病理。总而言之,我们结合了多个数据集来识别转录本,这些转录本是表型修饰剂的强力候选者,并证明SNCA是运动神经元疾病病理学的修饰剂。

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