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Specificity assessment from fractionation experiments (SAFE): a novel method to evaluate microarray probe specificity based on hybridisation stringencies

机译:分馏实验的特异性评估(SAFE):一种基于杂交严格性评估微阵列探针特异性的新方法

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摘要

The cDNA-chip technology is a highly versatile tool for the comprehensive analysis of gene expression at the transcript level. Although it has been applied successfully in expression profiling projects, there is an ongoing dispute concerning the quality of such expression data. The latter critically depends on the specificity of hybridisation. SAFE (specificity assessment from fractionation experiments) is a novel method to discriminate between non- specific cross-hybridisation and specific signals. We applied in situ fractionation of hybridised target on DNA-chips by means of repeated washes with increasing stringencies. Different fractions of hybridised target are washed off at defined stringencies and the collected fluorescence intensity data at each step comprise the fractionation curve. Based on characteristic features of the fractionation curve, unreliable data can be filtered and eliminated from subsequent analyses. The approach described here provides a novel experimental tool to identify probes that produce specific hybridisation signals in DNA-chip expression profiling approaches. The iterative use of the SAFE procedure will result in increasingly reliable sets of probes for microarray experiments and significantly improve the overall efficiency and reliability of RNA expression profiling data from DNA-chip experiments.
机译:cDNA芯片技术是用于在转录水平全面分析基因表达的高度通用的工具。尽管它已成功地用于表达谱分析项目中,但有关此类表达数据的质量仍存在争议。后者关键取决于杂交的特异性。 SAFE(分馏实验的特异性评估)是一种区分非特异性交叉杂交和特异性信号的新颖方法。我们通过增加严格性的反复洗涤在DNA芯片上原位分离杂交靶标。以限定的严格度洗去不同比例的杂交靶标,每个步骤收集的荧光强度数据包括分馏曲线。根据分馏曲线的特征,可以过滤不可靠的数据并从后续分析中消除。这里描述的方法提供了一种新颖的实验工具,可以识别在DNA芯片表达谱分析方法中产生特定杂交信号的探针。 SAFE程序的迭代使用将导致用于微阵列实验的探针组越来越可靠,并显着提高DNA芯片实验中RNA表达谱数据的整体效率和可靠性。

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