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Analyzing the gene expression profile of pediatric acute myeloid leukemia with real-time PCR arrays

机译:实时PCR芯片分析小儿急性髓细胞白血病的基因表达谱

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Background The Real-time PCR Array System is the ideal tool for analyzing the expression of a focused panel of genes. In this study, we will analyze the gene expression profile of pediatric acute myeloid leukemia with real-time PCR arrays. Methods Real-time PCR array was designed and tested firstly. Then gene expression profile of 11 pediatric AML and 10 normal controls was analyzed with real-time PCR arrays. We analyzed the expression data with MEV (Multi Experiment View) cluster software. Datasets representing genes with altered expression profile derived from cluster analyses were imported into the Ingenuity Pathway Analysis Tool. Results We designed and tested 88 real-time PCR primer pairs for a quantitative gene expression analysis of key genes involved in pediatric AML. The gene expression profile of pediatric AML is significantly different from normal control; there are 19 genes up-regulated and 25 genes down-regulated in pediatric AML. To investigate possible biological interactions of differently regulated genes, datasets representing genes with altered expression profile were imported into the Ingenuity Pathway Analysis Tool. The results revealed 12 significant networks. Of these networks, Cellular Development, Cellular Growth and Proliferation, Tumor Morphology was the highest rated network with 36 focus molecules and the significance score of 41. The IPA analysis also groups the differentially expressed genes into biological mechanisms that are related to hematological disease, cell death, cell growth and hematological system development. In the top canonical pathways, p53 and Huntington’s disease signaling came out to be the top two most significant pathways with a p value of 1.5E-8 and2.95E-7, respectively. Conclusions The present study demonstrates the gene expression profile of pediatric AML is significantly different from normal control; there are 19 genes up-regulated and 25 genes down-regulated in pediatric AML. We found some genes dyes-regulated in pediatric AML for the first time as FASLG, HDAC4, HDAC7 and some HOX family genes. IPA analysis showed the top important pathways for pediatric AML are p53 and Huntington’s disease signaling. This work may provide new clues of molecular mechanism in pediatric AML.
机译:背景技术实时PCR阵列系统是分析集中基因组表达的理想工具。在这项研究中,我们将通过实时PCR阵列分析小儿急性髓细胞性白血病的基因表达谱。方法首先设计并测试实时荧光定量PCR芯片。然后使用实时PCR阵列分析了11个小儿AML和10个正常对照的基因表达谱。我们使用MEV(多实验视图)群集软件分析了表达数据。代表来自聚类分析的表达谱发生改变的基因的数据集被导入到Ingenuity Pathway Analysis Tool中。结果我们设计并测试了88个实时PCR引物对,用于定量分析涉及儿童AML的关键基因的基因表达。小儿AML的基因表达谱与正常对照有显着差异。小儿AML中有19个基因上调,有25个基因下调。为了研究不同调控基因的可能的生物学相互作用,将代表基因表达谱发生改变的数据集输入到“独创性途径分析工具”中。结果显示了12个重要的网络。在这些网络中,细胞发育,细胞生长和增殖,肿瘤形态学是评分最高的网络,具有36个聚焦分子和41个显着性得分。IPA分析还将差异表达的基因归类为与血液疾病,细胞相关的生物学机制。死亡,细胞生长和血液系统发育。在最常见的经典途径中,p53和亨廷顿舞蹈病信号是最重要的两个最重要的途径,其p值分别为1.5E-8和2.95E-7。结论本研究表明小儿AML的基因表达谱与正常对照有显着差异。小儿AML中有19个基因上调,有25个基因下调。我们发现一些基因在儿童AML中首次被染料调控,例如FASLG,HDAC4,HDAC7和一些HOX家族基因。 IPA分析显示,小儿AML的最重要的途径是p53和亨廷顿舞蹈病的信号传导。这项工作可能为小儿AML的分子机制提供新线索。

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