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Resolving the polymorphism-in-probe problem is critical for correct interpretation of expression QTL studies

机译:解决探针多态性问题对于正确解释表达QTL研究至关重要

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摘要

Polymorphisms in the target mRNA sequence can greatly affect the binding affinity of microarray probe sequences, leading to false-positive and false-negative expression quantitative trait locus (QTL) signals with any other polymorphisms in linkage disequilibrium. We provide the most complete solution to this problem, by using the latest genome and exome sequence reference data to identify almost all common polymorphisms (frequency >1% in Europeans) in probe sequences for two commonly used microarray panels (the gene-based Illumina Human HT12 array, which uses 50-mer probes, and exon-based Affymetrix Human Exon 1.0 ST array, which uses 25-mer probes). We demonstrate the impact of this problem using cerebellum and frontal cortex tissues from 438 neuropathologically normal individuals. We find that although only a small proportion of the probes contain polymorphisms, they account for a large proportion of apparent expression QTL signals, and therefore result in many false signals being declared as real. We find that the polymorphism-in-probe problem is insufficiently controlled by previous protocols, and illustrate this using some notable false-positive and false-negative examples in MAPT and PRICKLE1 that can be found in many eQTL databases. We recommend that both new and existing eQTL data sets should be carefully checked in order to adequately address this issue.
机译:靶mRNA序列中的多态性可以极大地影响微阵列探针序列的结合亲和力,导致假阳性和假阴性表达定量性状基因座(QTL)信号与连锁不平衡中的任何其他多态性一起。我们使用最新的基因组和外显子组序列参考数据,为两个常用的微阵列面板(基于基因的Illumina Human)的探针序列识别几乎所有常见的多态性(欧洲人中频率> 1%),从而提供了最完整的解决方案。 HT12阵列(使用50聚体探针)和基于外显子的Affymetrix Human Exon 1.0 ST阵列(使用25聚体探针)。我们证明了使用来自438个神经病理正常个体的小脑和额叶皮层组织的此问题的影响。我们发现,尽管只有一小部分探针包含多态性,但它们占表观表达QTL信号的很大一部分,因此导致许多错误信号被声明为真实信号。我们发现探针多态性问题无法通过以前的协议来控制,并使用可以在许多eQTL数据库中找到的MAPT和PRICKLE1中一些明显的假阳性和假阴性示例来说明这一问题。我们建议应仔细检查新的和现有的eQTL数据集,以充分解决此问题。

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