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Epigenetic plasticity of chromatin in embryonic and hematopoietic stem|[sol]|progenitor cells: therapeutic potential of cell reprogramming

机译:染色质在胚胎和造血干细胞中的表观遗传可塑性:细胞重编程的治疗潜力

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During embryonic development and adult life, the plasticity and reversibility of modifications that affect the chromatin structure is important in the expression of genes involved in cell fate decisions and the maintenance of cell-differentiated state. Epigenetic changes in DNA and chromatin, which must occur to allow the accessibility of transcriptional factors at specific DNA-binding sites, are regarded as emerging major players for embryonic and hematopoietic stem cell (HSC) development and lineage differentiation. Epigenetic deregulation of gene expression, whether it be in conjunction with chromosomal alterations and gene mutations or not, is a newly recognized mechanism that leads to several diseases, including leukemia. The reversibility of epigenetic modifications makes DNA and chromatin changes attractive targets for therapeutic intervention. Here we review some of the epigenetic mechanisms that regulate gene expression in pluripotent embryonic and multipotent HSCs but may be deregulated in leukemia, and the clinical approaches designed to target the chromatin structure in leukemic cells.
机译:在胚胎发育和成年生活中,影响染色质结构的修饰的可塑性和可逆性在参与细胞命运决定和维持细胞分化状态的基因表达中很重要。必须发生DNA和染色质的表观遗传变化,才能使转录因子在特定的DNA结合位点可及,被认为是胚胎和造血干细胞(HSC)发育和谱系分化的新兴主要参与者。基因表达的表观遗传失调,无论是否与染色体改变和基因突变结合在一起,都是导致多种疾病(包括白血病)的新发现机制。表观遗传修饰的可逆性使DNA和染色质变化成为治疗干预的有吸引力的靶标。在这里,我们综述了一些调控多能胚胎和多能HSCs基因表达但可能在白血病中被解除调控的表观遗传机制,以及旨在针对白血病细胞中染色质结构的临床方法。

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