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Quantitative analysis of fitness and genetic interactions in yeast on a genome scale

机译:在基因组规模上对酵母适应性和遗传相互作用的定量分析

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摘要

Global quantitative analysis of genetic interactions is a powerful approach for deciphering the roles of genes and mapping functional relationships among pathways. Using colony size as a proxy for fitness, we developed a method for measuring fitness-based genetic interactions from high-density arrays of yeast double mutants generated by synthetic genetic array (SGA) analysis. We identified several experimental sources of systematic variation and developed normalization strategies to obtain accurate single- and double-mutant fitness measurements, which rival the accuracy of other high-resolution studies. We applied the SGA score to examine the relationship between physical and genetic interaction networks, and we found that positive genetic interactions connect across functionally distinct protein complexes revealing a network of genetic suppression among loss-of-function alleles.
机译:遗传相互作用的全局定量分析是一种强大的方法,可用于破译基因的作用并绘制途径之间的功能关系。使用菌落大小作为适应度的代理,我们开发了一种方法,该方法可以通过合成遗传阵列(SGA)分析生成的高密度酵母双突变体阵列来测量基于适应度的遗传相互作用。我们确定了系统变异的几个实验来源,并开发了归一化策略来获得准确的单突变体和双突变体适应性测量结果,这些结果可与其他高分辨率研究相媲美。我们应用SGA评分来检查物理和遗传相互作用网络之间的关系,并且我们发现,积极的遗传相互作用跨功能不同的蛋白质复合物连接,揭示了功能丧失等位基因之间的遗传抑制网络。

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