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首页> 外文期刊>Disease models & mechanisms: DMM >Bar-coding neurodegeneration: identifying subcellular effects of human neurodegenerative disease proteins using Drosophila leg neurons
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Bar-coding neurodegeneration: identifying subcellular effects of human neurodegenerative disease proteins using Drosophila leg neurons

机译:条形码神经退行性变:使用果蝇腿神经元鉴定人类神经退行性疾病蛋白的亚细胞效应

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Genetic, biochemical and histological studies have identified a number of different proteins as key drivers of human neurodegenerative diseases. Although different proteins are typically involved in different diseases, there is also considerable overlap. Addressing disease protein dysfunction in an in vivo neuronal context is often time consuming and requires labor-intensive analysis of transgenic models. To facilitate the rapid, cellular analysis of disease protein dysfunction, we have developed a fruit fly ( Drosophila melanogaster ) adult leg neuron assay. We tested the robustness of 41 transgenic fluorescent reporters and identified a number that were readily detected in the legs and could report on different cellular events. To test these reporters, we expressed a number of human proteins involved in neurodegenerative disease, in both their mutated and wild-type versions, to address the effects on reporter expression and localization. We observed strikingly different effects of the different disease proteins upon the various reporters with, for example, Aβ1-42 being highly neurotoxic, tau, parkin and HTT128Q affecting mitochondrial distribution, integrity or both, and Aβ1-42, tau, HTT128Q and ATX182Q affecting the F-actin network. This study provides proof of concept for using the Drosophila adult leg for inexpensive and rapid analysis of cellular effects of neurodegenerative disease proteins in mature neurons.
机译:遗传,生物化学和组织学研究已经鉴定出许多不同的蛋白质,它们是人类神经退行性疾病的关键驱动因素。尽管不同的蛋白质通常参与不同的疾病,但也存在相当多的重叠。解决体内神经元环境中的疾病蛋白功能障碍通常很耗时,并且需要对转基因模型进行劳动密集型分析。为了促进疾病蛋白功能障碍的快速,细胞分析,我们开发了一种果蝇(果蝇(Drosophila melanogaster)成年腿神经元测定法”。我们测试了41个转基因荧光报告基因的稳健性,并鉴定了在腿中容易检测到并可以报告不同细胞事件的数目。为了测试这些报道基因,我们以突变和野生型表达了许多与神经退行性疾病有关的人类蛋白质,以解决对报道基因表达和定位的影响。我们观察到了不同疾病蛋白对各种报告基因的显着不同影响,例如Aβ 1-42 具有高度神经毒性,tau,Parkin和HTT 128Q 影响线粒体分布,完整性或两者兼有,以及Aβ 1-42 ,tau,HTT 128Q 和ATX1 82Q 影响F-肌动蛋白网络。这项研究提供了使用果蝇成年腿对成熟神经元中神经退行性疾病蛋白的细胞作用进行廉价而快速的分析的概念证明。

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