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A beta-mixture quantile normalization method for correcting probe design bias in Illumina Infinium 450 k DNA methylation data

机译:Beta混合物分位数归一化方法用于校正Illumina Infinium 450 k DNA甲基化数据中的探针设计偏倚

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摘要

>Motivation: The Illumina Infinium 450 k DNA Methylation Beadchip is a prime candidate technology for Epigenome-Wide Association Studies (EWAS). However, a difficulty associated with these beadarrays is that probes come in two different designs, characterized by widely different DNA methylation distributions and dynamic range, which may bias downstream analyses. A key statistical issue is therefore how best to adjust for the two different probe designs.>Results: Here we propose a novel model-based intra-array normalization strategy for 450 k data, called BMIQ (Beta MIxture Quantile dilation), to adjust the beta-values of type2 design probes into a statistical distribution characteristic of type1 probes. The strategy involves application of a three-state beta-mixture model to assign probes to methylation states, subsequent transformation of probabilities into quantiles and finally a methylation-dependent dilation transformation to preserve the monotonicity and continuity of the data. We validate our method on cell-line data, fresh frozen and paraffin-embedded tumour tissue samples and demonstrate that BMIQ compares favourably with two competing methods. Specifically, we show that BMIQ improves the robustness of the normalization procedure, reduces the technical variation and bias of type2 probe values and successfully eliminates the type1 enrichment bias caused by the lower dynamic range of type2 probes. BMIQ will be useful as a preprocessing step for any study using the Illumina Infinium 450 k platform.>Availability: BMIQ is freely available from .>Contact: >Supplementary information: are available at Bioinformatics online
机译:>动机:Illumina Infinium 450 k DNA甲基化Beadchip是表观基因组广泛关联研究(EWAS)的主要候选技术。但是,与这些磁珠阵列相关的困难是探针采用两种不同的设计,其特征是DNA甲基化分布和动态范围差异很大,这可能会影响下游分析。因此,一个关键的统计问题是如何最佳地适应两种不同的探针设计。>结果:在这里,我们提出了一种新颖的基于模型的450 k数据基于阵列的阵列内归一化策略,称为BMIQ(Beta MIxture Quantile)膨胀),以将type2设计探针的beta值调整为type1探针的统计分布特征。该策略涉及应用三态β混合物模型为探针分配甲基化状态,随后将概率转换为分位数,最后进行依赖于甲基化的扩张转换,以保持数据的单调性和连续性。我们在细胞系数据,新鲜冷冻和石蜡包埋的肿瘤组织样品中验证了我们的方法,并证明BMIQ与两种竞争方法相比具有优势。具体而言,我们表明BMIQ提高了归一化程序的鲁棒性,减小了技术差异和2型探针值的偏差,并成功消除了由2型探针的较低动态范围引起的1型富集偏差。 BMIQ将用作使用Illumina Infinium 450 k平台进行任何研究的预处理步骤。>可用性: BMIQ可从以下位置免费获得。>联系方式: >补充信息:< / strong>可在线访问生物信息学

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