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首页> 外文期刊>OMICS: A journal of integrative biology >Comparative Analysis of Transcriptome and Fitness Profiles Reveals General and Condition-Specific Cellular Functions Involved in Adaptation to Environmental Change in Saccharomyces cerevisiae
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Comparative Analysis of Transcriptome and Fitness Profiles Reveals General and Condition-Specific Cellular Functions Involved in Adaptation to Environmental Change in Saccharomyces cerevisiae

机译:转录组和健身的比较分析资料揭示了一般Condition-Specific细胞功能参与适应在酿酒酵母的环境变化

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摘要

The transcriptional responses of yeast cells to a wide variety of stress conditions have been studied extensively. In addition, deletion mutant collections have been widely used to measure the combined effect of gene loss and stress on growth (fitness). Here we present a comparative analysis of 1,095 publicly available transcription and genome-wide fitness profiles in yeast, from different laboratories and experimental platforms. We analyzed these data, using T-profiler, to describe the correlation in behavior of a priori defined functional groups. Twomode clustering analysis of the fitness T-profiles revealed that functional groups involved in regulating ribosome biogenesis and translation offer general stress resistance. These groups are closely related to growth rate and nutrient availability. General stress sensitivity was found in deletion mutant groups functioning in intracellular vesicular transport, actin cytoskeleton organization, and cell polarity, indicating that they play an key role in maintaining yeast adaptability. Analysis of the phenotypic and transcriptional variability of our a priori defined functional groups showed that the quantitative effect on fitness of both resistant and sensitive groups is highly condition-dependent. Finally, we discuss the implications of our results for combinatorial drug design.
机译:酵母细胞的转录反应各种各样的压力条件广泛的研究。已广泛用于测量集合结合基因损失和压力对经济增长的影响(健康)。1095年公开的转录在酵母全基因组健康档案,从不同的实验室和实验平台。T-profiler,描述相关先天的行为定义的官能团。Twomode健身的聚类分析T-profiles表明官能团参与调节核糖体生物起源和翻译提供一般压力阻力。这些团体密切相关的增长率和营养的可用性。敏感性被发现在删除突变组在细胞内的膜泡运输功能,肌动蛋白细胞骨架组织和细胞极性,这表明它们发挥关键作用在维持酵母适应性。的表型和转录变异我们先天的官能团显示定义对健身的定量影响是高度抗性和敏感组condition-dependent。为组合的影响我们的结果药物设计。

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