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DNA methyltransferase 1 is essential for and uniquely regulates hematopoietic stem and progenitor cells.

机译:DNA甲基转移酶1是造血干细胞和祖细胞必不可少的,并具有独特的调节作用。

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DNA methylation is essential for development and in diverse biological processes. The DNA methyltransferase Dnmt1 maintains parental cell methylation patterns on daughter DNA strands in mitotic cells; however, the precise role of Dnmt1 in regulation of quiescent adult stem cells is not known. To examine the role of Dnmt1 in adult hematopoietic stem cells (HSCs), we conditionally disrupted Dnmt1 in the hematopoietic system. Defects were observed in Dnmt1-deficient HSC self-renewal, niche retention, and in the ability of Dnmt1-deficient HSCs to give rise to multilineage hematopoiesis. Loss of Dnmt1 also had specific impact on myeloid progenitor cells, causing enhanced cell cycling and inappropriate expression of mature lineage genes. Dnmt1 regulates distinct patterns of methylation and expression of discrete gene families in long-term HSCs and multipotent and lineage-restricted progenitors, suggesting that Dnmt1 differentially controls these populations. These findings establish a unique and critical role for Dnmt1 in the primitive hematopoietic compartment.
机译:DNA甲基化对于发育和各种生物过程至关重要。 DNA甲基转移酶Dnmt1维持有丝分裂细胞子DNA链上的亲代细胞甲基化模式。但是,Dnmt1在调节成年干细胞中的确切作用尚不清楚。若要检查Dnmt1在成人造血干细胞(HSCs)中的作用,我们有条件地破坏了Dnmt1在造血系统中。观察到Dnmt1缺陷的HSC自我更新,生态位保留以及Dnmt1缺陷的HSC产生多谱系造血功能的缺陷。 Dnmt1的丢失也对骨髓祖细胞有特定的影响,导致细胞周期增强和成熟谱系基因的不适当表达。 Dnmt1调节长期HSCs,多能和谱系限制祖细胞中甲基化和离散基因家族表达的不同模式,这表明Dnmt1差异控制了这些人群。这些发现为Dnmt1在原始造血区室中建立了独特而关键的作用。

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