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A Simple Neuronal Mechanical Injury Methodology to Study Drosophila Motor Neuron Degeneration

机译:研究果蝇运动神经元变性的简单神经元机械损伤方法

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摘要

The degeneration of neurons occurs during normal development and in response to injury, stress, and disease. The cellular hallmarks of neuronal degeneration are remarkably similar in humans and invertebrates as are the molecular mechanisms that drive these processes. The fruit fly, Drosophila melanogaster, provides a powerful yet simple genetic model organism to study the cellular complexities of neurodegenerative diseases. In fact, approximately 70% of disease-associated human genes have a Drosophila homolog and a plethora of tools and assays have been described using flies to study human neurodegenerative diseases. More specifically the neuromuscular junction (NMJ) in Drosophila has proven to be an effective system to study neuromuscular diseases because of the ability to analyze the structural connections between the neuron and the muscle. Here, we report on an in vivo motor neuron injury assay in Drosophila, which reproducibly induces neurodegeneration at the NMJ by 24 h. Using this methodology, we have described a temporal sequence of cellular events resulting in motor neuron degeneration. The injury method has diverse applications and has also been utilized to identify specific genes required for neurodegeneration and to dissect transcriptional responses to neuronal injury.
机译:神经元的退化发生在正常发育过程中,并且是对伤害,压力和疾病的反应。神经元变性的细胞标志在人类和无脊椎动物中非常相似,而驱动这些过程的分子机制也是如此。果蝇果蝇(Drosophila melanogaster)为研究神经退行性疾病的细胞复杂性提供了强大而简单的遗传模型生物。实际上,大约70%的与疾病相关的人类基因具有果蝇同源物,并且已经有许多工具和试验使用果蝇来研究人类神经退行性疾病,并进行了多种测定。更具体地说,果蝇中的神经肌肉接头(NMJ)已被证明是研究神经肌肉疾病的有效系统,因为它能够分析神经元和肌肉之间的结构联系。在这里,我们报告在果蝇中的体内运动神经元损伤测定,该测定可再现地诱导NMJ在24 h内发生神经变性。使用这种方法,我们描述了导致运动神经元变性的细胞事件的时间序列。损伤方法具有多种应用,还已用于鉴定神经退行性疾病所需的特定基因和解剖对神经元损伤的转录反应。

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