Frericks Markus, Meissner Marc, Esser Charlotte
Institut für Umweltmedizinische Forschung (IUF) at the Heinrich Heine-University of Düsseldorf, Auf'm Hennekamp 50, 40225 Düsseldorf, Germany.
Toxicol Appl Pharmacol. 2007 May 1;220(3):320-32. doi: 10.1016/j.taap.2007.01.014. Epub 2007 Feb 6.
Data mining published microarray experiments require that expression profiles are directly comparable. We performed linear global normalization on the data of 1967 Affymetrix U74av2 microarrays, i.e. the transcriptomes of >100 murine tissues or cell types. The mathematical transformation effectively nullifies inter-experimental or inter-laboratory differences between microarrays. The correctness of expression values was validated by quantitative RT-PCR. Using the database we analyze components of the aryl hydrocarbon receptor (AHR) signaling pathway in various tissues. We identified lineage and differentiation specific variant expression of AHR, ARNT, and HIF1alpha in the T-cell lineage and high expression of CYP1A1 in immature B cells and dendritic cells. Performing co-expression analysis we found unorthodox expression of the AHR in the absence of ARNT, particularly in stem cell populations, and can reject the hypothesis that ARNT2 takes over and is highly expressed when ARNT expression is low or absent. Furthermore the AHR shows no co-expression with any other transcript present on the chip. Analysis of differential gene expression under 308 conditions revealed 53 conditions under which the AHR is regulated, numerous conditions under which an intrinsic AHR action is modified as well as conditions activating the AHR even in the absence of known AHR ligands. Thus meta-analysis of published expression profiles is a powerful tool to gain novel insights into known and unknown systems.
挖掘已发表的微阵列实验数据要求表达谱具有直接可比性。我们对1967个Affymetrix U74av2微阵列的数据进行了线性全局归一化处理,即超过100种小鼠组织或细胞类型的转录组数据。这种数学转换有效地消除了微阵列之间实验间或实验室间的差异。通过定量逆转录聚合酶链反应验证了表达值的正确性。利用该数据库,我们分析了各种组织中芳烃受体(AHR)信号通路的组成部分。我们在T细胞谱系中鉴定出AHR、ARNT和HIF1α的谱系和分化特异性变异表达,以及未成熟B细胞和树突状细胞中CYP1A1的高表达。通过共表达分析,我们发现在没有ARNT的情况下AHR有非传统表达,特别是在干细胞群体中,并且可以排除ARNT2在ARNT表达低或缺失时接管并高表达的假设。此外,AHR与芯片上存在的任何其他转录本均无共表达。对308种条件下的差异基因表达分析揭示了53种AHR受调控的条件、许多AHR内在作用被改变的条件以及即使在没有已知AHR配体的情况下也能激活AHR的条件。因此,对已发表表达谱的荟萃分析是深入了解已知和未知系统的有力工具。