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Metaboloepigenetic Regulation of Pluripotent Stem Cells

机译:多能干细胞的弥合性调节

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The differentiation of pluripotent stem cells is associated with extensive changes in metabolism, as well as widespread remodeling of the epigenetic landscape. Epigenetic regulation is essential for the modulation of differentiation, being responsible for cell type specific gene expression patterns through the modification of DNA and histones, thereby establishing cell identity. Each cell type has its own idiosyncratic pattern regarding the use of specific metabolic pathways. Rather than simply being perceived as a means of generating ATP and building blocks for cell growth and division, cellular metabolism can directly influence cellular regulation and the epigenome. Consequently, the significance of nutrients and metabolites as regulators of differentiation is central to understanding how cells interact with their immediate environment. This review serves to integrate studies on pluripotent stem cell metabolism, and the regulation of DNA methylation and acetylation and identifies areas in which current knowledge is limited.
机译:多能干细胞的分化与新陈代谢的广泛变化,以及对表观遗传景观的广泛改造。表观遗传调节对于分化的调节至关重要,负责通过DNA和组蛋白的修饰来对细胞类型特异性基因表达模式负责,从而建立细胞标识。每种细胞类型具有关于使用特定代谢途径的自身的特征模式。而不是简单地被认为是生成用于细胞生长和分裂的ATP和构建块的一种手段,细胞代谢可以直接影响细胞调节和外延蛋白酶。因此,营养素和代谢物作为差异调节剂的重要性是了解细胞如何与其直接环境相互作用的核心。本综述用于整合对多能干细胞代谢的研究,以及DNA甲基化和乙酰化的调节,并确定当前知识有限的区域。

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