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Improving reliability and absolute quantification of human brain microarray data by filtering and scaling probes using RNA-Seq

机译:使用RNA-SEQ过滤和缩放探针提高人脑微阵列数据的可靠性和绝对量化

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摘要

Background High-throughput sequencing is gradually replacing microarrays as the preferred method for studying mRNA expression levels, providing nucleotide resolution and accurately measuring absolute expression levels of almost any transcript, known or novel. However, existing microarray data from clinical, pharmaceutical, and academic settings represent valuable and often underappreciated resources, and methods for assessing and improving the quality of these data are lacking. Results To quantitatively assess the quality of microarray probes, we directly compare RNA-Seq to Agilent microarrays by processing 231 unique samples from the Allen Human Brain Atlas using RNA-Seq. Both techniques provide highly consistent, highly reproducible gene expression measurements in adult human brain, with RNA-Seq slightly outperforming microarray results overall. We show that RNA-Seq can be used as ground truth to assess the reliability of most microarray probes, remove probes with off-target effects, and scale probe intensities to match the expression levels identified by RNA-Seq. These sequencing scaled microarray intensities (SSMIs) provide more reliable, quantitative estimates of absolute expression levels for many genes when compared with unscaled intensities. Finally, we validate this result in two human cell lines, showing that linear scaling factors can be applied across experiments using the same microarray platform. Conclusions Microarrays provide consistent, reproducible gene expression measurements, which are improved using RNA-Seq as ground truth. We expect that our strategy could be used to improve probe quality for many data sets from major existing repositories.
机译:背景技术高通量测序逐渐替代微阵列作为研究mRNA表达水平的优选方法,提供核苷酸分辨率和准确地测量几乎任何转录物的绝对表达水平,已知或新颖。然而,来自临床,制药和学术设施的现有微阵列数据代表了有价值的和往往被低估的资源,以及评估和提高这些数据质量的方法。结果定量评估微阵列探针的质量,通过使用RNA-SEQ处理来自Allen人脑地图集的231个独特样品,直接比较RNA-SEQ至安捷伦微阵列。两种技术在成人人脑中提供高度一致,高度可重复的基因表达测量,RNA-SEQ整体略微优于微阵列结果。我们表明RNA-SEQ可以用作地面真理来评估大多数微阵列探针的可靠性,除去偏移效应的探针,并达到RNA-SEQ鉴定的表达水平的探测强度。这些测序缩放的微阵列强度(SSMIS)为许多基因的绝对表达水平提供了更可靠的定量估计,与未累计的强度相比。最后,我们验证了两个人类细胞系的结果,表明线性缩放因子可以使用相同的微阵列平台跨实验应用。结论微阵列提供一致,可重复的基因表达测量,其使用RNA-SEQ改善为基本真理。我们希望我们的策略可用于提高来自主要现有存储库的许多数据集的探测质量。

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