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BCR/ABL1依赖性转录反应的基因表达分析揭示了参与负反馈调节的基因的富集。

Gene expression analysis of BCR/ABL1-dependent transcriptional response reveals enrichment for genes involved in negative feedback regulation.

作者信息

Håkansson Petra, Nilsson Björn, Andersson Anna, Lassen Carin, Gullberg Urban, Fioretos Thoas

机构信息

Department of Clinical Genetics, University Hospital, Lund, Sweden.

出版信息

Genes Chromosomes Cancer. 2008 Apr;47(4):267-75. doi: 10.1002/gcc.20528.

Abstract

Philadelphia (Ph) chromosome-positive leukemia is characterized by the BCR/ABL1 fusion protein that affects a wide range of signal transduction pathways. The knowledge about its downstream target genes is, however, still quite limited. To identify novel BCR/ABL1-regulated genes we used global gene expression profiling of several Ph-positive and Ph-negative cell lines treated with imatinib. Following imatinib treatment, the Ph-positive cells showed decreased growth, viability, and reduced phosphorylation of BCR/ABL1 and STAT5. In total, 142 genes were identified as being dependent on BCR/ABL1-mediated signaling, mainly including genes involved in signal transduction, e.g. the JAK/STAT, MAPK, TGFB, and insulin signaling pathways, and in regulation of metabolism. Interestingly, BCR/ABL1 was found to activate several genes involved in negative feedback regulation (CISH, SOCS2, SOCS3, PIM1, DUSP6, and TNFAIP3), which may act to indirectly suppress the tumor promoting effects exerted by BCR/ABL1. In addition, several genes identified as deregulated upon BCR/ABL1 expression could be assigned to the TGFB and NFkB signaling pathways, as well as to reflect the metabolic adjustments needed for rapidly growing cells. Apart from providing important pathogenetic insights into BCR/ABL1-mediated leukemogenesis, the present study also provides a number of pathways/individual genes that may provide attractive targets for future development of targeted therapies. This article contains Supplementary Material available at http://www.interscience.wiley.com/jpages/1045-2257/suppmat.

摘要

费城(Ph)染色体阳性白血病的特征是BCR/ABL1融合蛋白,它影响多种信号转导途径。然而,关于其下游靶基因的知识仍然相当有限。为了鉴定新的BCR/ABL1调控基因,我们对几种用伊马替尼处理的Ph阳性和Ph阴性细胞系进行了全基因组表达谱分析。伊马替尼处理后,Ph阳性细胞的生长、活力降低,BCR/ABL1和STAT5的磷酸化减少。总共鉴定出142个基因依赖于BCR/ABL1介导的信号传导,主要包括参与信号转导的基因,如JAK/STAT、MAPK、TGFB和胰岛素信号通路,以及参与代谢调节的基因。有趣的是,发现BCR/ABL1激活了几个参与负反馈调节的基因(CISH、SOCS2、SOCS3、PIM1、DUSP6和TNFAIP3),这些基因可能间接抑制BCR/ABL1发挥的肿瘤促进作用。此外,一些被鉴定为在BCR/ABL1表达时失调的基因可归因于TGFB和NFkB信号通路,也反映了快速生长细胞所需的代谢调整。除了为BCR/ABL1介导的白血病发生提供重要的发病机制见解外,本研究还提供了一些途径/单个基因,可能为未来靶向治疗的发展提供有吸引力的靶点。本文包含可在http://www.interscience.wiley.com/jpages/1045-2257/suppmat获取的补充材料。

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