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Improved statistical analysis of budding yeast TAG microarrays revealed by defined spike-in pools

机译:定义的刺突池揭示了出芽的酵母TAG芯片的改进的统计分析

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摘要

Saccharomyces cerevisiae knockout collection TAG microarrays are an emergent platform for rapid, genome-wide functional characterization of yeast genes. TAG arrays report abundance of unique oligonucleotide 'TAG' sequences incorporated into each deletion mutation of the yeast knockout collection, allowing measurement of relative strain representation across experimental conditions for all knockout mutants simultaneously. One application of TAG arrays is to perform genome-wide synthetic lethality screens, known as synthetic lethality analyzed by microarray (SLAM). We designed a fully defined spike-in pool to resemble typical SLAM experiments and performed TAG microarray hybridizations. We describe a method for analyzing two-color array data to efficiently measure the differential knockout strain representation across two experimental conditions, and use the spike-in pool to show that the sensitivity and specificity of this method exceed typical current approaches.
机译:酿酒酵母基因敲除收集TAG微阵列是一种快速的平台,可快速,全基因范围地表征酵母基因。 TAG阵列报告了整合到酵母敲除集合体每个缺失突变中的独特寡核苷酸'TAG'序列的丰度,从而可以同时测量所有敲除突变体在整个实验条件下的相对菌株代表。 TAG阵列的一种应用是执行全基因组合成杀伤力筛选,称为通过微阵列分析合成杀伤力(SLAM)。我们设计了一个完全定义的加标池,以类似于典型的SLAM实验并进行TAG微阵列杂交。我们描述了一种分析双色阵列数据的方法,以有效地测量跨两个实验条件的差异敲除应变表示,并使用加标池显示该方法的灵敏度和特异性超过了当前的典型方法。

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