心理压抑
生物
抑制因子
转录调控
细胞命运测定
转录因子
组蛋白
细胞生物学
染色质
锌指
甲基化
淋巴细胞生成
抄写(语言学)
调节器
遗传学
癌症研究
造血
干细胞
DNA
基因表达
基因
语言学
哲学
作者
Matthew Velinder,Jason Singer,Diana Bareyan,Jessica Meznarich,Christopher M. Tracy,James Fulcher,David McClellan,Helena Lucente,Sarah Franklin,Sunil Sharma,Michael E. Engel
摘要
Proper hematopoietic cell fate decisions require co-ordinated functions of transcription factors, their associated co-regulators, and histone-modifying enzymes. Growth factor independence 1 (GFI1) is a zinc finger transcriptional repressor and master regulator of normal and malignant hematopoiesis. While several GFI1-interacting proteins have been described, how GFI1 leverages these relationships to carry out transcriptional repression remains unclear. Here, we describe a functional axis involving GFI1, SMYD2, and LSD1 that is a critical contributor to GFI1-mediated transcriptional repression. SMYD2 methylates lysine-8 (K8) within a -(8)KSKK(11)- motif embedded in the GFI1 SNAG domain. Methylation-defective GFI1 SNAG domain lacks repressor function due to failure of LSD1 recruitment and persistence of promoter H3K4 di-methyl marks. Methylation-defective GFI1 also fails to complement GFI1 depletion phenotypes in developing zebrafish and lacks pro-growth and survival functions in lymphoid leukemia cells. Our data show a discrete methylation event in the GFI1 SNAG domain that facilitates recruitment of LSD1 to enable transcriptional repression and co-ordinate control of hematopoietic cell fate in both normal and malignant settings.
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