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Genetics and epigenetics: stability and plasticity during cellular differentiation

机译:遗传学和表观遗传学:细胞分化过程中的稳定性和可塑性

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Stem cells and multipotent progenitor cells face the challenge of balancing the stability and plasticity of their developmental states. Their self-renewal requires the maintenance of a defined gene-expression program, which must be stably adjusted towards a new fate upon differentiation. Recent data imply that epigenetic mechanisms can confer robustness to steady state gene expression but can also direct the terminal fate of lineage-restricted multipotent progenitor cells. Here, we review the latest models for how changes in chromatin and DNA methylation are regulated during cellular differentiation. We further propose that targets of epigenetic repression share common features in the sequences of their regulatory regions, thereby suggesting a co-evolution of epigenetic pathways and classes of cis-acting elements.
机译:干细胞和多能祖细胞面临着平衡其发育状态的稳定性和可塑性的挑战。它们的自我更新需要维持明确的基因表达程序,必须对该程序进行稳定调整以适应新的分化命运。最近的数据表明,表观遗传机制可以赋予稳态基因表达鲁棒性,但也可以指导沿袭受限的多能祖细胞的最终命运。在这里,我们回顾了细胞分化过程中如何调节染色质和DNA甲基化的最新模型。我们进一步提出,表观遗传抑制的靶标在其调节区域的序列中具有共同的特征,从而表明表观遗传途径和顺式作用元件类别的共同进化。

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