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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >The histone chaperone CAF-1 cooperates with the DNA methyltransferases to maintain Cd4 silencing in cytotoxic T cells
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The histone chaperone CAF-1 cooperates with the DNA methyltransferases to maintain Cd4 silencing in cytotoxic T cells

机译:组蛋白伴侣CAF-1与DNA甲基转移酶配合,以将CD4沉默在细胞毒性T细胞中保持

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摘要

The transcriptional repression of alternative lineage genes is critical for cell fate commitment. Mechanisms by which locus-specific gene silencing is initiated and heritably maintained during cell division are not clearly understood. To study the maintenance of silent gene states, we investigated how the Cd4 gene is stably repressed in CD8(+) T cells. Through CRISPR and shRNA screening, we identified the histone chaperone CAF-1 as a critical component for Cd4 repression. We found that the large subunit of CAF-1, Chaf1a, requires the N-terminal KER domain to associate with the histone deacetylases HDAC1/2 and the histone demethylase LSD1, enzymes that also participate in Cd4 silencing. When CAF-1 was lacking, Cd4 derepression was markedly enhanced in the absence of the de novo DNA methyltransferase Dnmt3a but not the maintenance DNA methyltransferase Dnmt1. In contrast to Dnmt1, Dnmt3a deficiency did not significantly alter levels of DNA methylation at the Cd4 locus. Instead, Dnmt3a deficiency sensitized CD8(+) T cells to Cd4 derepression mediated by compromised functions of histone-modifying factors, including the enzymes associated with CAF-1. Thus, we propose that the heritable silencing of the Cd4 gene in CD8(+) T cells exploits cooperative functions among the DNA methyltransferases, CAF-1, and histone- modifying enzymes.
机译:替代谱系基因的转录抑制对于细胞命运承诺至关重要。在细胞分裂期间启动和遗传地维持轨迹特异性基因沉默的机制是不清楚的。为了研究维持静音基因状态,我们研究了如何在CD8(+)T细胞中稳定地压制CD4基因。通过CRISPR和ShRNA筛选,我们将组蛋白伴侣CAF-1鉴定为CD4抑制的关键组分。我们发现CAF-1,CHAF1a的大亚基要求N-末端Ker结构域与组蛋白脱乙酰酶HDAC1 / 2和组蛋白脱甲基化酶LSD1,也参与CD4沉默的酶。当CAF-1缺乏时,在没有DE Novo DNA甲基转移酶DNMT3A但不是维持DNA甲基转移酶DNMT1的情况下显着增强CD4 DERELAGES。与DNMT1相比,DNMT3A缺乏在CD4基因座上没有显着改变DNA甲基化水平。相反,DNMT3A缺乏致敏CD8(+)T细胞通过损害组蛋白改性因子的损害函数介导的CD4 DEREMENTION,包括与CAF-1相关的酶。因此,我们提出CD8(+)T细胞中CD4基因的遗传沉默利用DNA甲基转移酶,CAF-1和组蛋白改性酶之间的协同功能。

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