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比较表达谱分析鉴定出一种体内靶基因特征,其中TFAP2B作为PAX3/FKHR生存功能的介质。

Comparative expression profiling identifies an in vivo target gene signature with TFAP2B as a mediator of the survival function of PAX3/FKHR.

作者信息

Ebauer M, Wachtel M, Niggli F K, Schäfer B W

机构信息

Department of Oncology, University Children's Hospital, Zurich, Switzerland.

出版信息

Oncogene. 2007 Nov 8;26(51):7267-81. doi: 10.1038/sj.onc.1210525. Epub 2007 May 21.

Abstract

The chromosomal translocation t(2;13), characteristic for the aggressive childhood cancer alveolar rhabdomyosarcoma (aRMS), generates the chimeric transcription factor PAX3/FKHR with a well known oncogenic role. However, the molecular mechanisms mediating essential pathophysiological functions remain poorly defined. Here, we used comparative expression profiling of PAX3/FKHR silencing in vitro and PAX3/FKHR-specific gene signatures in vivo to identify physiologically important target genes. Hereby, 51 activated genes, both novel and known, were identified. We also found repression of skeletal muscle-specific genes suggesting that PAX3/FKHR blocks further differentiation of aRMS cells. Importantly, TFAP2B was validated as direct target gene mediating the anti-apoptotic function of PAX3/FKHR. Hence, we developed a pathophysiologically relevant transcriptional profile of PAX3/FKHR and identified a critical target gene for aRMS development.

摘要

染色体易位t(2;13)是侵袭性儿童癌症肺泡横纹肌肉瘤(aRMS)的特征,它产生具有众所周知致癌作用的嵌合转录因子PAX3/FKHR。然而,介导基本病理生理功能的分子机制仍不清楚。在此,我们利用体外PAX3/FKHR沉默和体内PAX3/FKHR特异性基因特征的比较表达谱来鉴定生理上重要的靶基因。据此,鉴定出51个激活基因,包括新的和已知的。我们还发现骨骼肌特异性基因受到抑制,这表明PAX3/FKHR阻断了aRMS细胞的进一步分化。重要的是,TFAP2B被验证为介导PAX3/FKHR抗凋亡功能的直接靶基因。因此,我们建立了PAX3/FKHR的病理生理相关转录谱,并鉴定出aRMS发展的关键靶基因。

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