Department of Pathology, University of Michigan, Ann Arbor, MI 48109; and.
Department of Pathology, University of Michigan, Ann Arbor, MI 48109; andIndiana University School of Medicine, Indianapolis, IN 46202
Proc Natl Acad Sci U S A. 2014 Jul 8;111(27):9899-904. doi: 10.1073/pnas.1402238111. Epub 2014 Jun 23.
Homeobox A9 (HOXA9) is a homeodomain-containing transcription factor that plays a key role in hematopoietic stem cell expansion and is commonly deregulated in human acute leukemias. A variety of upstream genetic alterations in acute myeloid leukemia (AML) lead to overexpression of HOXA9, almost always in association with overexpression of its cofactor meis homeobox 1 (MEIS1) . A wide range of data suggests that HOXA9 and MEIS1 play a synergistic causative role in AML, although the molecular mechanisms leading to transformation by HOXA9 and MEIS1 remain elusive. In this study, we identify CCAAT/enhancer binding protein alpha (C/EBPα) as a critical collaborator required for Hoxa9/Meis1-mediated leukemogenesis. We show that C/EBPα is required for the proliferation of Hoxa9/Meis1-transformed cells in culture and that loss of C/EBPα greatly improves survival in both primary and secondary murine models of Hoxa9/Meis1-induced leukemia. Over 50% of Hoxa9 genome-wide binding sites are cobound by C/EBPα, which coregulates a number of downstream target genes involved in the regulation of cell proliferation and differentiation. Finally, we show that Hoxa9 represses the locus of the cyclin-dependent kinase inhibitors Cdkn2a/b in concert with C/EBPα to overcome a block in G1 cell cycle progression. Together, our results suggest a previously unidentified role for C/EBPα in maintaining the proliferation required for Hoxa9/Meis1-mediated leukemogenesis.
Homeobox A9 (HOXA9) 是一种含有同源结构域的转录因子,在造血干细胞扩增中发挥关键作用,并且在人类急性白血病中通常失调。急性髓系白血病 (AML) 中的多种上游遗传改变导致 HOXA9 的过度表达,几乎总是与共激活因子髓系增强因子 1 (MEIS1) 的过度表达相关。广泛的数据表明,HOXA9 和 MEIS1 在 AML 中发挥协同的因果作用,尽管导致 HOXA9 和 MEIS1 转化的分子机制仍不清楚。在这项研究中,我们确定 CCAAT/增强子结合蛋白α (C/EBPα) 是 Hoxa9/Meis1 介导的白血病发生所必需的关键协作因子。我们表明 C/EBPα 是 Hoxa9/Meis1 转化细胞在培养中增殖所必需的,并且 C/EBPα 的缺失极大地改善了原发性和继发性 Hoxa9/Meis1 诱导的白血病小鼠模型中的存活。超过 50%的 Hoxa9 全基因组结合位点与 C/EBPα 共同结合,后者共同调节了许多参与细胞增殖和分化调节的下游靶基因。最后,我们表明 Hoxa9 与 C/EBPα 协同抑制细胞周期蛋白依赖性激酶抑制剂 Cdkn2a/b 的基因座,以克服 G1 细胞周期进程中的阻滞。总之,我们的结果表明 C/EBPα 在维持 Hoxa9/Meis1 介导的白血病发生所需的增殖中具有以前未被识别的作用。