Department of Hematology, Goethe-University, Frankfurt, Germany.
Leukemia. 2012 Jun;26(6):1338-47. doi: 10.1038/leu.2011.331. Epub 2011 Nov 22.
The homeostasis of hematopoiesis in the bone marrow is governed by a small number of key transcription factors, including PU.1, GATA-1 and c/EBPα. PU.1, a member of the E-twenty-six family of transcription factors, is indispensable for normal hematopoiesis. Inactivation of PU.1 induces acute leukemia in mice. Recent data suggest that the leukemia-associated fusion protein pro-myelocytic leukemia/retinoic acid receptor alpha (PML/RARα) inhibits PU.1, but the mechanism mediating this inhibition is unclear. Here, we investigated the mechanisms by which the fusion proteins PML/RARα and pro-myelocytic leukemia zinc finger/RARα (PLZF/RARα) (X-RARα) interfere with the function of PU.1. We found that X-RARα proteins functionally inactivate PU.1 by reducing its promoter-binding capacity, resulting in a reduction in PU.1-dependent transcriptional transactivation. In fact, X-RARα proteins directly interact with PU.1, leading to both the sequestration of PU.1 from its target promoters and a reduction in its serine phosphorylation, which is crucial for its promoter binding and transcriptional activity. We found that the functional inactivation of PU.1 could be overcome by the forced overexpression of PU.1 in PML/RARα- or PLZF/RARα-positive murine hematopoietic progenitor cells; evidently, this overexpression rescued the leukemic differentiation block induced by X-RARα proteins. Our data thus provide strong evidence that X-RARα proteins functionally inhibit PU.1, shedding light on the mechanism by which X-RARα proteins induce leukemogenesis.
骨髓中造血的动态平衡由少数关键转录因子控制,包括 PU.1、GATA-1 和 c/EBPα。PU.1 是 E-twenty-six 家族转录因子的成员,对于正常造血是不可或缺的。PU.1 的失活会在小鼠中诱导急性白血病。最近的数据表明,白血病相关融合蛋白早幼粒细胞白血病/维甲酸受体α(PML/RARα)抑制 PU.1,但介导这种抑制的机制尚不清楚。在这里,我们研究了融合蛋白 PML/RARα 和早幼粒细胞锌指/RARα(PLZF/RARα)(X-RARα)干扰 PU.1 功能的机制。我们发现,X-RARα 蛋白通过降低其启动子结合能力,从而降低 PU.1 依赖性转录激活,从而功能性地使 PU.1 失活。事实上,X-RARα 蛋白直接与 PU.1 相互作用,导致 PU.1 从其靶启动子上被隔离,并减少其丝氨酸磷酸化,这对其启动子结合和转录活性至关重要。我们发现,在 PML/RARα 或 PLZF/RARα 阳性的小鼠造血祖细胞中强制过表达 PU.1 可以克服 PU.1 的功能失活;显然,这过表达挽救了 X-RARα 蛋白诱导的白血病分化阻滞。我们的数据因此提供了强有力的证据,证明 X-RARα 蛋白功能性地抑制 PU.1,阐明了 X-RARα 蛋白诱导白血病发生的机制。