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Bridging the gap between high-throughput genetic and transcriptional data reveals cellular pathways responding to alpha-synuclein toxicity

机译:弥合高通量遗传和转录数据之间的鸿沟揭示了对α-突触核蛋白毒性反应的细胞途径

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摘要

Cells respond to stimuli by changes in various processes, including signaling pathways and gene expression. Efforts to identify components of these responses increasingly depend on mRNA profiling and genetic library screens, yet the functional roles of the genes identified by these assays often remain enigmatic. By comparing the results of these two assays across various cellular responses, we found that they are consistently distinct. Moreover, genetic screens tend to identify response regulators, while mRNA profiling frequently detects metabolic responses. We developed an integrative approach that bridges the gap between these data using known molecular interactions, thus highlighting major response pathways. We harnessed this approach to reveal cellular pathways related to alpha-synuclein, a small lipid-binding protein implicated in several neurodegenerative disorders including Parkinson disease. For this we screened an established yeast model for alpha-synuclein toxicity to identify genes that when overexpressed alter cellular survival. Application of our algorithm to these data and data from mRNA profiling provided functional explanations for many of these genes and revealed novel relations between alpha-synuclein toxicity and basic cellular pathways.
机译:细胞通过各种过程的变化来响应刺激,包括信号传导途径和基因表达。识别这些反应成分的努力越来越依赖于mRNA谱分析和遗传文库筛选,但是通过这些测定法鉴定的基因的功能作用通常仍然难以捉摸。通过比较这两种测定在各种细胞反应中的结果,我们发现它们始终是截然不同的。此外,基因筛查倾向于识别反应调节因子,而mRNA谱分析经常检测代谢反应。我们开发了一种集成方法,可使用已知的分子相互作用弥合这些数据之间的差距,从而突出显示主要的反应途径。我们利用这种方法揭示了与α-突触核蛋白有关的细胞途径,α-突触核蛋白是一种小型脂质结合蛋白,与包括帕金森氏症在内的几种神经退行性疾病有关。为此,我们针对α-突触核蛋白毒性筛选了已建立的酵母模型,以鉴定过度表达时会改变细胞存活率的基因。将我们的算法应用于这些数据以及来自mRNA谱分析的数据为许多这些基因提供了功能解释,并揭示了α-突触核蛋白毒性与基本细胞途径之间的新型关系。

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