CEBPA公司
运行x1
增强子
转录因子
生物
髓系白血病
抑制因子
基因敲除
癌症研究
基因表达调控
细胞生物学
增强子rna
HDAC1型
遗传学
基因
组蛋白
组蛋白脱乙酰基酶
作者
Fabrizio Simeoni,Isabel Romero-Camarero,Francesco Camera,Fabio Amaral,Oliver Sinclair,Evangelia K. Papachristou,Gary J. Spencer,Michael Lie-A-Ling,Georges Lacaud,Daniel H. Wiseman,Jason S. Carroll,Tim C. P. Somervaille
出处
期刊:Cell Reports
[Elsevier]
日期:2021-09-01
卷期号:36 (12): 109725-109725
被引量:10
标识
DOI:10.1016/j.celrep.2021.109725
摘要
Despite absent expression in normal hematopoiesis, the Forkhead factor FOXC1, a critical mesenchymal differentiation regulator, is highly expressed in ∼30% of HOXAhigh acute myeloid leukemia (AML) cases to confer blocked monocyte/macrophage differentiation. Through integrated proteomics and bioinformatics, we find that FOXC1 and RUNX1 interact through Forkhead and Runt domains, respectively, and co-occupy primed and active enhancers distributed close to differentiation genes. FOXC1 stabilizes association of RUNX1, HDAC1, and Groucho repressor TLE3 to limit enhancer activity: FOXC1 knockdown induces loss of repressor proteins, gain of CEBPA binding, enhancer acetylation, and upregulation of nearby genes, including KLF2. Furthermore, it triggers genome-wide redistribution of RUNX1, TLE3, and HDAC1 from enhancers to promoters, leading to repression of self-renewal genes, including MYC and MYB. Our studies highlight RUNX1 and CEBPA transcription factor swapping as a feature of leukemia cell differentiation and reveal that FOXC1 prevents this by stabilizing enhancer binding of a RUNX1/HDAC1/TLE3 transcription repressor complex to oncogenic effect.
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