Chromatin remodeling: recruitment of histone demethylase RBP2 by Madl for transcriptional repression of a Myc target gene, telomerase reverse transcriptase

染色质重塑 端粒酶逆转录酶 脱甲基酶 组蛋白 染色质 细胞生物学 逆转录酶 端粒酶 心理压抑 生物 基因 化学 分子生物学 遗传学 基因表达 核糖核酸
作者
Zheng Ge,Wenjuan Li,Na Wang,Cheng Liu,Qingjun Zhu,Magnus Björkholm,Astrid Gruber,Dawei Xu
出处
期刊:The FASEB Journal [Wiley]
卷期号:24 (2): 579-586 被引量:59
标识
DOI:10.1096/fj.09-140087
摘要

The Myc/Max/Mad network transcription factors are known to govern target gene expression through recruiting histone acetyltransferases or deacetylases. In the present study, we show that Madl recruits the histone demethylase RBP2 to the Myc target telomerase reverse transcriptase ( hTERT ) gene promoter to repress transcription. With differentiation of leukemic HL60 cells, Madl and RBP2 were both up‐regulated, interacted, and cooccupied the hTERT promoter accompanied by histone H3‐K4 demethylation. In immortalized p493–6 B cells, shutting down c‐Myc led to the accumulation of Madl and RBP2 at hTERT promoter and diminished hTERT mRNA expression. When RBP2 was depleted, hTERT expression was significantly enhanced, coupled with dissociation of RBP2 with and increased H3‐K4 methylation at the hTERT promoter in p493–6 cells. Moreover, RBP2 and Madl were present on the hTERT promoter in human fibroblasts having a silent hTERT gene, and RBP2 depletion resulted in gene derepression. Taken together, Madl recruits RBP2 to the hTERT promoter that, in turn, demethylates H3‐K4, thereby contributing to a stable repression of the hTERT gene in normal or differentiated malignant cells. Our findings reveal a novel mechanism through which the Myc/Max/Mad network proteins control their target gene transcription and provide insights into mechanisms underlying telomerase silencing and activation.—Ge, Z., Li, W., Wang, N., Liu, C., Zhu, Q., Björkholm, M., Gruber, A., Xu, D. Chromatin remodeling: recruitment of histone demethylase RBP2 by Madl for transcriptional repression of a Myc target gene, telomerase reverse transcriptase. FASEB J . 24, 579–586 (2010). www.fasebj.org
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