Department of Haematology, Centre for Cancer Biology, SA Pathology University of Adelaide, Adelaide, South Australia, Australia.
Leukemia. 2013 Feb;27(2):409-15. doi: 10.1038/leu.2012.220. Epub 2012 Aug 3.
Bach2 is a lymphoid-specific transcription factor with a prominent role in B-cell development and apoptosis-induction in response to oxidative stress. We previously showed that Bach2 is downregulated in chronic myeloid leukaemia (CML), and here we demonstrate the mechanism by which Bcr-Abl mediates this phenomenon. We have cloned a 3.9 Kb genomic DNA fragment upstream of the transcription initiation site, and delineated the core and proximal BACH2 promoter regions. Transient BCR-ABL expression led to significant reduction in BACH2 promoter activity and this effect was dependent on the kinase function of the oncoprotein. Sequential deletions disclosed several regulatory elements within the promoter region, as well as within BACH2 exonic sequences. Analysis of these elements and transient transfection assays led to the identification of the Pax5 transcription factor as a potent trans-activator of BACH2, whose effect is predominantly mediated through occupation of a binding site on the BACH2 promoter, as demonstrated by both in vitro and in vivo experiments. Overall, our data show that Pax5 functions as an intermediate effector in the Bcr-Abl-mediated transcriptional repression of BACH2. The current results, combined with previous reports, establish Pax5 and Bach2 as transcriptional targets of Bcr-Abl, whose downregulation may contribute to lymphoid blast crisis of CML.
Bach2 是一种淋巴特异性转录因子,在 B 细胞发育和应对氧化应激时的细胞凋亡诱导中发挥重要作用。我们之前已经表明 Bach2 在慢性髓性白血病(CML)中下调,在这里我们展示了 Bcr-Abl 介导这种现象的机制。我们已经克隆了转录起始位点上游的 3.9kb 基因组 DNA 片段,并描绘了核心和近端 BACH2 启动子区域。瞬时 BCR-ABL 表达导致 BACH2 启动子活性显著降低,这种效应依赖于癌蛋白的激酶功能。连续缺失揭示了启动子区域内以及 BACH2 外显子序列内的几个调节元件。对这些元件和瞬时转染实验的分析导致鉴定出 Pax5 转录因子是 BACH2 的有效转录激活子,其作用主要通过占据 BACH2 启动子上的结合位点来介导,这通过体外和体内实验都得到了证明。总体而言,我们的数据表明 Pax5 作为 Bcr-Abl 介导的 BACH2 转录抑制的中间效应因子发挥作用。目前的结果与之前的报告相结合,确立了 Pax5 和 Bach2 作为 Bcr-Abl 的转录靶标,其下调可能导致 CML 的淋巴细胞性爆发危机。