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A high throughput and sensitive method correlates neuronal disorder genotypes to Drosophila larvae crawling phenotypes.

机译:高通量和敏感的方法将神经元疾病的基因型与果蝇幼虫爬行表型相关联。

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Drosophila melanogaster is widely used as a model system for development and disease. Due to the homology between Drosophila and human genes, as well as the tractable genetics of the fly, its use as a model for neurologic disorders, in particular, has been rising. Locomotive impairment is a commonly used diagnostic for screening and characterization of these models, yet a fast, sensitive and model-free method to compare behavior is lacking. Here, we present a high throughput method to quantify the crawling behavior of larvae. We use the mean squared displacement as well as the direction autocorrelation of the crawling larvae as descriptors of their motion. By tracking larvae from wild-type strains and models of the Fragile X mental retardation as well as Alzheimer disease, we show these mutants exhibit impaired crawling. We further show that the magnitude of impairment correlates with the severity of the mutation, demonstrating the sensitivity and the dynamic range of the method. Finally, we study larvae with altered expression of the shaggy gene, a homolog of Glycogen Synthase Kinase-3 (GSK-3), which has been implicated in Alzheimer disease. Surprisingly, we find that both increased and decreased expression of dGSK-3 lead to similar larval crawling impairment. These findings have implications for the use of GSK-3 inhibitors recently proposed for Alzheimer treatment.
机译:果蝇(Drosophila melanogaster)被广泛用作发育和疾病的模型系统。由于果蝇与人类基因之间的同源性,以及果蝇的易处理遗传学,其作为神经系统疾病模型的应用尤其在增加。机车障碍是对这些模型进行筛选和表征的常用诊断方法,但缺少一种快速,灵敏且无模型的行为比较方法。在这里,我们提出了一种高通量方法来量化幼虫的爬行行为。我们使用均方位移以及爬行幼虫的方向自相关作为其运动的描述符。通过跟踪幼虫从野生型菌株和脆弱的X智力低下以及阿尔茨海默氏病的模型,我们表明这些突变体表现出受损的爬行。我们进一步表明,损伤的程度与突变的严重程度相关,证明了该方法的灵敏度和动态范围。最后,我们研究了幼虫,该幼虫的毛发基因表达改变,该基因是糖原合酶激酶3(GSK-3)的同源物,已与阿尔茨海默病有关。令人惊讶地,我们发现dGSK-3表达的增加和减少均导致相似的幼虫爬行障碍。这些发现对最近提议用于阿尔茨海默氏病治疗的GSK-3抑制剂的使用具有影响。

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