加压器
运行x1
组蛋白脱乙酰基酶
生物
HDAC1型
髓系白血病
IRF8
HDAC8型
癌症研究
组蛋白脱乙酰基酶2
伏立诺他
转录因子
辅活化剂
细胞生物学
组蛋白
分子生物学
核受体
遗传学
基因
作者
Zhenbo Hu,Xiaorong Gu,Kristine Baraoidan,Vinzon Ibañez,Arun K. Sharma,Shrihari S. Kadkol,Reinhold Munker,Steven J. Ackerman,Giuseppina Nucifora,Yogen Saunthararajah
出处
期刊:Blood
[American Society of Hematology]
日期:2011-06-16
卷期号:117 (24): 6498-6508
被引量:54
标识
DOI:10.1182/blood-2010-10-312512
摘要
Abstract The transcription factor (TF) RUNX1 cooperates with lineage-specifying TFs (eg, PU.1/SPI1) to activate myeloid differentiation genes, such as macrophage and granulocyte macrophage colony-stimulating factor receptors (MCSFR and GMCSFR). Disruption of cooperative gene activation could contribute to aberrant repression of differentiation genes and leukemogenesis initiated by mutations and translocations of RUNX1. To investigate the mechanisms underlying cooperative gene activation, the effects of Runx1 deficiency were examined in an in vitro model of Pu.1-driven macrophage differentiation and in primary cells. Runx1 deficiency decreased Pu.1-mediated activation of Mcsfr and Gmcsfr, accompanied by decreased histone acetylation at the Mcsfr and Gmcsfr promoters, and increased endogenous corepressor (Eto2, Sin3A, and Hdac2) coimmunoprecipitation with Pu.1. In cotransfection experiments, corepressors were excluded from a multiprotein complex containing full-length RUNX1 and PU.1. However, corepressors interacted with PU.1 if wild-type RUNX1 was replaced with truncated variants associated with leukemia. Histone deacetylase (HDAC) enzyme activity is a major component of corepressor function. HDAC inhibition using suberoylanilide hydroxamic acid or MS-275 significantly increased MCSFR and GMCSFR expression in leukemia cell lines that express PU.1 and mutated or translocated RUNX1. RUNX1 deficiency is associated with persistent corepressor interaction with PU.1. Thus, inhibiting HDAC can partly compensate for the functional consequences of RUNX1 deficiency.
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