首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >G9a/GLP-dependent histone H3K9me2 patterning during human hematopoietic stem cell lineage commitment
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G9a/GLP-dependent histone H3K9me2 patterning during human hematopoietic stem cell lineage commitment

机译:G9a / GLP依赖组蛋白H3K9me2在人类造血干细胞谱系承诺过程中的模式

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摘要

G9a and GLP are conserved protein methyltransferases that play key roles during mammalian development through mono- and dimethylation of histone H3 Lys 9 (H3K9me1/2), modifications associated with transcriptional repression. During embryogenesis, large H3K9me2 chromatin territories arise that have been proposed to reinforce lineage choice by affecting high-order chromatin structure. Here we report that in adult human hematopoietic stem and progenitor cells (HSPCs), H3K9me2 chromatin territories are absent in primitive cells and are formed de novo during lineage commitment. In committed HSPCs, G9a/GLP activity nucleates H3K9me2 marks at CpG islands and other genomic sites within genic regions, which then spread across most genic regions during differentiation. Immunofluorescence assays revealed the emergence of H3K9me2 nuclear sp eckles in committedHSPCs, consistent with progressive marking. Moreover, gene expression analysis indicated that G9a/GLP activity suppresses promiscuous transcription of lineage-affiliated genes and certain gene clusters, suggestive of regulation of HSPC chromatin structure. Remarkably, HSPCs continuously treated with UNC0638, a G9a/GLP small molecular inhibitor, better retain stem cell-like phenotypes and function during in vitro expansion. These results suggest that G9a/GLP activity promotes progressive H3K9me2 patterning during HSPC lineage specification andthat its inhibition delays HSPC lineage commitment. They also inform clinical manipulation of donor-derived HSPCs.
机译:G9a和GLP是保守的蛋白质甲基转移酶,通过组蛋白H3 Lys 9(H3K9me1 / 2)(与转录抑制相关的修饰)的单和二甲基化作用,在哺乳动物发育过程中发挥关键作用。在胚胎发生过程中,出现了大的H3K9me2染色质区域,已提出通过影响高阶染色质结构来加强谱系选择。在这里,我们报告在成年人类造血干细胞和祖细胞(HSPCs)中,原始细胞中不存在H3K9me2染色质区域,并且在血统承诺期间从头形成。在定型的HSPC中,G9a / GLP活性使CpG岛和基因区域内其他基因组位点的H3K9me2标记成核,然后在分化过程中遍布整个基因区域。免疫荧光分析显示,在定型的HSPC中出现了H3K9me2核斑点,与进行性标记一致。此外,基因表达分析表明,G9a / GLP活性抑制谱系相关基因和某些基因簇的混杂转录,提示对HSPC染色质结构的调节。值得注意的是,用G9a / GLP小分子抑制剂UNC0638连续处理的HSPC在体外扩增过程中能更好地保留干细胞样表型和功能。这些结果表明,G9a / GLP活性可促进在HSPC谱系规范过程中进行性H3K9me2构图,并且其抑制作用会延迟HSPC谱系的承诺。他们还告知临床操作供体来源的HSPC。

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