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

机译:基于化学-遗传相互作用谱的啤酒酵母Ca2 +稳态的系统分析

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摘要

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 one-dimensional 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:基于高维化学-遗传相互作用图,我们研究了发芽酵母中Ca 2 + 稳态的全球格局。图像处理程序CalMorph暴露于高浓度的Ca 2 + 后,定量分析了62个Ca 2 + 敏感(cls)突变体的形态响应。应用广义线性模型后,对协方差模型进行分析以检测显着的Ca 2 + -cls相互作用。我们发现,高维,形态学Ca 2 + -cls相互作用混合了正(86%)和负(14%)化学-遗传相互作用,而一维适应性Ca 2 + -cls交互原则上都是负的。用相互作用谱进行聚类分析揭示了九个不同的基因组,其中六个在功能上相关。此外,Ca 2 + -cls相互作用的表征揭示了基于形态的负相互作用是敏化细胞过程和途径的独特特征。主成分分析用于区分钙调神经磷酸酶(Ca 2 + 依赖性磷酸酶)失活触发的Ca 2 + 敏感表型的抑制和增强。最后,利用相互作用谱的相似性揭示了作用于不同细胞区室的Ca 2 + 稳态单元之间的连通网络。我们对高维化学-遗传相互作用谱的分析为酵母Ca 2 + 稳态的胞内网络提供了新的见解。

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