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Systematic analysis of Ca2+ homeostasis in Saccharomyces cerevisiae based on chemical-genetic interaction profiles

机译:基于化学遗传相互作用曲线的Ca2 +稳态对Ca2 +稳态的系统分析

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We investigated the global landscape of Ca2+ homeostasis in budding yeast based on high-dimensional chemical-genetic interaction profiles. The morphological responses of 62 Ca2+-sensitive (cls) mutants were quantitatively analyzed with the image processing program CalMorph after exposure to a high concentration of Ca2+. After a generalized linear model was applied, an analysis of covariance model was used to detect significant Ca2+-cls interactions. We found that high-dimensional, morphological Ca2+-cls interactions were mixed with positive (86%) and negative (14%) chemical-genetic interactions, whereas onedimensional fitness Ca2+-cls interactions were all negative in principle. Clustering analysis with the interaction profiles revealed nine distinct gene groups, six of which were functionally associated. In addition, characterization of Ca2+-cls interactions revealed that morphology- based negative interactions are unique signatures of sensitized cellular processes and pathways. Principal component analysis was used to discriminate between suppression and enhancement of the Ca2+-sensitive phenotypes triggered by inactivation of calcineurin, a Ca2+-dependent phosphatase. Finally, similarity of the interaction profiles was used to reveal a connected network among the Ca2+ homeostasis units acting in different cellular compartments. Our analyses of high-dimensional chemical-genetic interaction profiles provide novel insights into the intracellular network of yeast Ca2+ homeostasis.
机译:我们在基于高维化学遗传互动曲线的萌芽酵母中调查了Ca2 +稳态的全球景观。在暴露于高浓度的Ca2 +之后,用图像处理程序肠道定量分析62Ca2 + -ssiscy(Cls)突变体的形态学应答。在应用广义线性模型之后,使用协方差模型的分析来检测显着的Ca2 + -Cls相互作用。我们发现高尺寸的形态Ca2 + -Cls相互作用与阳性(86%)和阴性(14%)化学遗传相互作用混合,而Oneedimmensional Fitness Ca2 + -Cls相互作用原则上是阴性的。使用相互作用曲线的聚类分析显示出九个不同的基因组,其中六个是功能相关的。另外,Ca2 + -Cls相互作用的表征显示,基于形态学的负相互作用是敏化细胞过程和途径的独特签名。主要成分分析用于区分抑制和增强通过钙蛋白灭活而引发的Ca2 + -ssispotypes的增强,Ca2 +依赖性磷酸酶。最后,使用相互作用曲线的相似性来揭示在不同蜂窝室中的Ca2 +稳态单元中的连接网络。我们对高维化学遗传互动型材的分析为酵母CA2 +稳态的细胞内网络提供了新的洞察力。

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