University of Montreal, Montreal, QC, Canada.
Blood. 2011 Oct 27;118(17):4682-9. doi: 10.1182/blood-2011-05-354076. Epub 2011 Sep 7.
The three-amino-acid loop extension (TALE) class homeodomain proteins MEIS1 and PKNOX1 (PREP1) share the ability to interact with PBX and HOX family members and bind similar DNA sequences but appear to play opposing roles in tumor development. Elevated levels of MEIS1 accelerate development of HOX- and MLL-induced leukemias, and this pro-tumorigenic property has been associated with transcriptional activity of MEIS1. In contrast, reduction of PKNOX1 levels has been linked with cancer development despite the absence of an identifiable transactivating domain. In this report, we show that a chimeric protein generated by fusion of the MEIS1 C-terminal region encompassing the transactivating domain with the full-length PKNOX1 (PKNOX1-MC) acquired the ability to accelerate the onset of Hoxa9-induced leukemia in the mouse bone marrow transduction/transplantation model. Gene expression profiling of primary bone marrow cells transduced with Hoxa9 plus Meis1, or Hoxa9 plus Pknox1-MC revealed perturbations in overlapping functional gene subsets implicated in DNA packaging, chromosome organization, and in cell cycle regulation. Together, results presented in this report suggest that the C-terminal domain of MEIS1 confers to PKNOX1 an ectopic transactivating function that promotes leukemogenesis by regulating expression of genes involved in chromatin accessibility and cell cycle progression.
三氨基酸环延伸(TALE)类同源盒蛋白 MEIS1 和 PKNOX1(PREP1)具有与 PBX 和 HOX 家族成员相互作用以及结合相似 DNA 序列的能力,但似乎在肿瘤发展中发挥相反的作用。MEIS1 水平的升高加速了 HOX 和 MLL 诱导的白血病的发展,这种促肿瘤发生的特性与 MEIS1 的转录活性有关。相比之下,尽管缺乏可识别的转录激活结构域,但降低 PKNOX1 水平与癌症的发生有关。在本报告中,我们表明,通过融合 MEIS1 包含转录激活结构域的 C 末端区域与全长 PKNOX1(PKNOX1-MC)生成的嵌合蛋白获得了在小鼠骨髓转导/移植模型中加速 Hoxa9 诱导白血病发生的能力。用 Hoxa9 加 Meis1 或 Hoxa9 加 Pknox1-MC 转导的原代骨髓细胞的基因表达谱分析显示,在涉及 DNA 包装、染色体组织和细胞周期调节的重叠功能基因亚群中存在扰动。总之,本报告中的结果表明,MEIS1 的 C 末端结构域赋予 PKNOX1 异位转录激活功能,通过调节参与染色质可及性和细胞周期进程的基因表达促进白血病发生。