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首页> 外文期刊>Cell Reports >Hydroxymethylation at Gene Regulatory Regions Directs Stem/Early Progenitor Cell Commitment during Erythropoiesis
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Hydroxymethylation at Gene Regulatory Regions Directs Stem/Early Progenitor Cell Commitment during Erythropoiesis

机译:在基因调控区域的羟甲基化指导红细胞生成过程中干/早期祖细胞的承诺。

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摘要

Hematopoietic stem cell differentiation involves the silencing of self-renewal genes and induction of a specific transcriptional program. Identification of multiple covalent cytosine modifications raises the question of how these derivatized bases influence stem cell commitment. Using a replicative primary human hematopoietic stem/progenitor cell differentiation system, we demonstrate dynamic changes of 5-hydroxymethylcytosine (5-hmC) during stem cell commitment and differentiation to the erythroid lineage. Genomic loci that maintain or gain 5-hmC density throughout erythroid differentiation contain binding sites for erythroid transcription factors and several factors not previously recognized as erythroid-specific factors. The functional importance of 5-hmC was demonstrated by impaired erythroid differentiation, with augmentation of myeloid potential, and disrupted 5-hmC patterning in leukemia patient-derived CD34+ stem/early progenitor cells with TET methylcytosine dioxygenase 2 (TET2) mutations. Thus, chemical conjugation and affinity purification of 5-hmC-enriched sequences followed by sequencing serve as resources for deciphering functional implications for gene expression during stem cell commitment and differentiation along a particular lineage.
机译:造血干细胞分化涉及自我更新基因的沉默和特定转录程序的诱导。多个共价胞嘧啶修饰的鉴定提出了一个问题,这些衍生的碱基如何影响干细胞的承诺。使用复制性人类主要造血干/祖细胞分化系统,我们证明了干细胞定型和向红系谱系分化过程中5-羟甲基胞嘧啶(5-hmC)的动态变化。在整个红系分化过程中保持或获得5hmC密度的基因组位点包含红系转录因子和一些以前未被识别为红系特异性因子的因子的结合位点。 5-hmC的功能重要性通过红系分化受损,髓样潜力增加以及在患有TET甲基胞嘧啶双加氧酶2(TET2)突变的白血病患者来源的CD34 +干/早期祖细胞中破坏了5-hmC模式而得到证明。因此,对富含5hmC的序列进行化学偶联和亲和纯化,然后进行测序,可作为资源,用于解释干细胞定型和沿特定谱系分化期间基因表达的功能含义。

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