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Condition-specific genetic interaction maps reveal crosstalk between the cAMP/PKA and the HOG MAPK pathways in the activation of the general stress response

机译:特定条件的遗传相互作用图揭示了在一般应激反应激活中cAMP / PKA与HOG MAPK通路之间的串扰

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摘要

Cells must quickly respond and efficiently adapt to environmental changes. The yeast Saccharomyces cerevisiae has multiple pathways that respond to specific environmental insults, as well as a generic stress response program. The later is regulated by two transcription factors, Msn2 and Msn4, that integrate information from upstream pathways to produce fast, tunable, and robust response to different environmental changes. To understand this integration, we employed a systematic approach to genetically dissect the contribution of various cellular pathways to Msn2/4 regulation under a range of stress and growth conditions. We established a high-throughput liquid handling and automated flow cytometry system and measured GFP levels in 68 single-knockout and 1,566 double-knockout strains that carry an HSP12-GFP allele as a reporter for Msn2/4 activity. Based on the expression of this Msn2/4 reporter in five different conditions, we identified numerous genetic and epistatic interactions between different components in the network upstream to Msn2/4. Our analysis gains new insights into the functional specialization of the RAS paralogs in the repression of stress response and identifies a three-way crosstalk between the Mediator complex, the HOG MAPK pathway, and the cAMP/PKA pathway.
机译:细胞必须快速响应并有效适应环境变化。酵母酿酒酵母具有多种途径,可以响应特定的环境侵害,并具有通用的应激反应程序。后者受两个转录因子Msn2和Msn4的调节,它们整合了上游途径的信息,以对不同的环境变化产生快速,可调和强大的响应。为了了解这种整合,我们采用了一种系统的方法,在一系列压力和生长条件下,通过遗传方法剖析了各种细胞途径对Msn2 / 4调控的贡献。我们建立了高通量液体处理和自动流式细胞仪系统,并测量了68个单敲除和1566个双敲除菌株中的GFP水平,这些菌株携带HSP12-GFP等位基因作为Msn2 / 4活性的报告基因。基于此Msn2 / 4报告基因在五个不同条件下的表达,我们确定了Msn2 / 4上游网络中不同组件之间的众多遗传和上位相互作用。我们的分析获得了对RAS旁系同源物在应激反应抑制中的功能专长的新见解,并确定了介体复合物,HOG MAPK途径和cAMP / PKA途径之间的三向串扰。

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