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一种用于多维成对比较的多重检验程序及其在基因表达研究中的应用。

A multiple testing procedure for multi-dimensional pairwise comparisons with application to gene expression studies.

作者信息

Grandhi Anjana, Guo Wenge, Peddada Shyamal D

机构信息

BARDS, Merck Research Laboratories, RY34-A3086h, 126 E. Lincoln Avenue, Rahway, 07065, NJ, USA.

Department of Mathematical Sciences, New Jersey Institute of Technology, Newark, 07102, NJ, USA.

出版信息

BMC Bioinformatics. 2016 Feb 25;17:104. doi: 10.1186/s12859-016-0937-5.

Abstract

BACKGROUND

Often researchers are interested in comparing multiple experimental groups (e.g. tumor size) with a reference group (e.g. normal tissue) on the basis of thousands of features (e.g. genes) and determine if a differentially expressed feature is up or down regulated in a pairwise comparison. There are two sources of false discoveries, one due to multiple testing involving several pairwise comparisons and the second due to falsely declaring a feature to be up (or down) regulated when it is not (known as directional error). Together, the total error rate is called the mixed directional false discovery rate (mdFDR).

RESULTS

We develop a general powerful mdFDR controlling testing procedure and illustrate the methodology by analyzing uterine fibroid gene expression data (PLoS ONE 8:63909, 2013). We identify several differentially expressed genes (DEGs) and pathways that are specifically enriched according to the size of a uterine fibroid.

CONCLUSIONS

The proposed general procedure strongly controls mdFDR. Several specific methodologies can be derived from this general methodology by using appropriate testing procedures at different steps of the general procedure. Thus we are providing a general framework for making multiple pairwise comparisons. Our analysis of the uterine fibroid growth gene expression data suggests that molecular characteristics of a fibroid changes with size. Our powerful methodology allowed us to draw several interesting conclusions regarding the molecular characteristics of uterine fibroids. For example, IL-1 signaling pathway (Sci STKE 2003:3, 2003), associated with inflammation and known to activate prostaglandins that are implicated in the progression of fibroids, is significantly enriched only in small tumors (volume < 5.7 cm (3)). It appears that the molecular apparatus necessary for fibroid growth and development is established during tumor development. A complete list of all DEGs and the corresponding enriched pathways according to tumor size is provided for researchers to mine these data. Identification of these DEGs and the pathways may potentially have clinical implications.

摘要

背景

研究人员常常希望基于数千个特征(如基因),将多个实验组(如肿瘤大小)与一个参照组(如正常组织)进行比较,并在两两比较中确定差异表达的特征是上调还是下调。错误发现有两个来源,一个是由于涉及多个两两比较的多重检验,另一个是当一个特征并未上调(或下调)却错误地宣称其上调(或下调)(称为方向性错误)。这两种错误率之和被称为混合方向性错误发现率(mdFDR)。

结果

我们开发了一种通用的强大的控制mdFDR的检验程序,并通过分析子宫肌瘤基因表达数据(《公共科学图书馆·综合》8:63909,2013)来说明该方法。我们鉴定出了几个根据子宫肌瘤大小而特异性富集的差异表达基因(DEG)和通路。

结论

所提出的通用程序能有力地控制mdFDR。通过在通用程序的不同步骤使用适当的检验程序,可以从该通用方法派生出几种特定方法。因此,我们为进行多个两两比较提供了一个通用框架。我们对子宫肌瘤生长基因表达数据的分析表明,肌瘤的分子特征随大小而变化。我们强大的方法使我们能够得出关于子宫肌瘤分子特征的几个有趣结论。例如,与炎症相关且已知能激活与肌瘤进展有关的前列腺素的白细胞介素-1信号通路(《科学信号》2003:3,2003)仅在小肿瘤(体积<5.7立方厘米)中显著富集。似乎肌瘤生长和发育所需的分子机制在肿瘤发展过程中就已确立。我们为研究人员提供了所有DEG的完整列表以及根据肿瘤大小对应的富集通路,以便他们挖掘这些数据。这些DEG和通路的鉴定可能具有潜在的临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7187/4768411/6a64e214b1ec/12859_2016_937_Fig1_HTML.jpg

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