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Boolean modeling of transcriptome data reveals novel modes of heterotrimeric G-protein action

机译:转录组数据的布尔建模揭示了异三聚体G蛋白作用的新模式

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摘要

Heterotrimeric G-proteins mediate crucial and diverse signaling pathways in eukaryotes. Here, we generate and analyze microarray data from guard cells and leaves of G-protein subunit mutants of the model plant Arabidopsis thaliana, with or without treatment with the stress hormone, abscisic acid. Although G-protein control of the transcriptome has received little attention to date in any system, transcriptome analysis allows us to search for potentially uncommon yet significant signaling mechanisms. We describe the theoretical Boolean mechanisms of G-protein × hormone regulation, and then apply a pattern matching approach to associate gene expression profiles with Boolean models. We find that (1) classical mechanisms of G-protein signaling are well represented. Conversely, some theoretical regulatory modes of the G-protein are not supported; (2) a new mechanism of G-protein signaling is revealed, in which Gβ regulates gene expression identically in the presence or absence of Gα; (3) guard cells and leaves favor different G-protein modes in transcriptome regulation, supporting system specificity of G-protein signaling. Our method holds significant promise for analyzing analogous ‘switch-like' signal transduction events in any organism.
机译:异源三聚体G蛋白介导真核生物中至关重要的信号途径。在这里,我们生成或分析来自模型植物拟南芥的G蛋白亚基突变体的保卫细胞和叶子的微阵列数据,无论是否经过胁迫激素,脱落酸处理。尽管迄今为止,在任何系统中对转录组的G蛋白控制都鲜为人知,但是转录组分析使我们能够搜索潜在的罕见但重要的信号传导机制。我们描述了G蛋白×激素调节的理论布尔机制,然后应用模式匹配方法将基因表达谱与布尔模型相关联。我们发现(1)很好地代表了G蛋白信号传导的经典机制。相反,不支持某些理论上的G蛋白调控模式。 (2)揭示了G蛋白信号传导的新机制,其中在存在或不存在Gα的情况下,Gβ均相同地调节基因表达。 (3)保卫细胞和叶片在转录组调控中倾向于不同的G蛋白模式,支持G蛋白信号传导的系统特异性。我们的方法在分析任何生物体中类似的“开关样”信号转导事件方面具有广阔的前景。

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