Coltella Nadia, Percio Stefano, Valsecchi Roberta, Cuttano Roberto, Guarnerio Jlenia, Ponzoni Maurilio, Pandolfi Pier Paolo, Melillo Giovanni, Pattini Linda, Bernardi Rosa
Division of Molecular Oncology, Leukemia Unit, San Raffaele Scientific Institute, Milan, Italy.
EMBO Mol Med. 2014 May;6(5):640-50. doi: 10.1002/emmm.201303065.
Acute promyelocytic leukemia (APL) is epitomized by the chromosomal translocation t(15;17) and the resulting oncogenic fusion protein PML-RARα. Although acting primarily as a transcriptional repressor, PML-RARα can also exert functions of transcriptional co-activation. Here, we find that PML-RARα stimulates transcription driven by HIF factors, which are critical regulators of adaptive responses to hypoxia and stem cell maintenance. Consistently, HIF-related gene signatures are upregulated in leukemic promyelocytes from APL patients compared to normal promyelocytes. Through in vitro and in vivo studies, we find that PML-RARα exploits a number of HIF-1α-regulated pro-leukemogenic functions that include cell migration, bone marrow (BM) neo-angiogenesis and self-renewal of APL blasts. Furthermore, HIF-1α levels increase upon treatment of APL cells with all-trans retinoic acid (ATRA). As a consequence, inhibiting HIF-1α in APL mouse models delays leukemia progression and exquisitely synergizes with ATRA to eliminate leukemia-initiating cells (LICs).
急性早幼粒细胞白血病(APL)的典型特征是染色体易位t(15;17) 以及由此产生的致癌融合蛋白PML-RARα。尽管PML-RARα主要作为转录抑制因子发挥作用,但它也能发挥转录共激活功能。在此,我们发现PML-RARα刺激由HIF因子驱动的转录,HIF因子是对缺氧适应性反应和干细胞维持的关键调节因子。一致地,与正常早幼粒细胞相比,APL患者白血病早幼粒细胞中HIF相关基因特征上调。通过体外和体内研究,我们发现PML-RARα利用了许多HIF-1α调节的促白血病功能,包括细胞迁移、骨髓(BM)新生血管生成和APL原始细胞的自我更新。此外,用全反式维甲酸(ATRA)处理APL细胞后,HIF-1α水平升高。因此,在APL小鼠模型中抑制HIF-1α可延迟白血病进展,并与ATRA协同作用以消除白血病起始细胞(LICs)。