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Identification of common genetic modifiers of neurodegenerative diseases from an integrative analysis of diverse genetic screens in model organisms

机译:通过对模型生物中多种遗传筛选的综合分析鉴定神经退行性疾病的常见遗传修饰因子

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摘要

BackgroundAn array of experimental models have been developed in the small model organisms C. elegans, S. cerevisiae and D. melanogaster for the study of various neurodegenerative diseases including Alzheimer's disease, Parkinson's disease, and expanded polyglutamine diseases as exemplified by Huntington's disease (HD) and related ataxias. Genetic approaches to determine the nature of regulators of the disease phenotypes have ranged from small scale to essentially whole genome screens. The published data covers distinct models in all three organisms and one important question is the extent to which shared genetic factors can be uncovered that affect several or all disease models. Surprisingly it has appeared that there may be relatively little overlap and that many of the regulators may be organism or disease-specific. There is, however, a need for a fully integrated analysis of the available genetic data based on careful comparison of orthologues across the species to determine the real extent of overlap.
机译:背景技术已经在小模型生物秀丽隐杆线虫,酿酒酵母和黑线虫D.melanogaster中开发了一系列实验模型,用于研究各种神经退行性疾病,包括阿尔茨海默氏病,帕金森氏病和扩展的聚谷氨酰胺病,例如亨廷顿氏病(HD)和相关的共济失调。确定疾病表型调节子性质的遗传方法范围从小规模到基本上全基因组筛选。公开的数据涵盖了所有三种生物的不同模型,一个重要的问题是,在多大程度上可以揭示影响几种或所有疾病模型的共有遗传因素。令人惊讶的是,似乎重叠可能相对较少,并且许多调节剂可能是生物体或疾病特异性的。但是,需要对整个物种的直向同源物进行仔细比较,从而确定重叠的真实程度,从而对现有的遗传数据进行全面整合的分析。

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