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Epigenomic profiling of young and aged HSCs reveals concerted changes during aging that reinforce self-renewal

机译:青年和老年HSC的表观基因组学分析揭示了衰老过程中的一致变化,从而增强了自我更新

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To investigate the cell-intrinsic aging mechanisms that erode the function of somatic stem cells during aging, we have conducted a comprehensive integrated genomic analysis of young and aged cells. We profiled the transcriptome, DNA methylome, and histone modifications of young and old murine hematopoietic stem cells (HSCs). Transcriptome analysis indicated reduced TGF-β signaling and perturbation of genes involved in HSC proliferation and differentiation. Aged HSCs exhibited broader H3K4me3 peaks across HSC identity and self-renewal genes and showed increased DNA methylation at transcription factor binding sites associated with differentiation-promoting genes combined with a reduction at genes associated with HSC maintenance. Altogether, these changes reinforce HSC self-renewal and diminish differentiation, paralleling phenotypic HSC aging behavior. Ribosomal biogenesis emerged as a particular target of aging with increased transcription of ribosomal protein and RNA genes and hypomethylation of rRNA genes. This data set will serve as a reference for future epigenomic analysis of stem cell aging.
机译:为了研究在衰老过程中侵蚀体干细胞功能的细胞固有衰老机制,我们对年轻和衰老的细胞进行了全面的综合基因组分析。我们分析了转录组,DNA甲基化组以及年轻和老龄小鼠造血干细胞(HSC)的组蛋白修饰。转录组分析表明,与HSC增殖和分化有关的基因的TGF-β信号转导减少和扰动。老化的HSC在HSC身份和自我更新基因上显示出更宽的H3K4me3峰,并在与分化促进基因相关的转录因子结合位点处显示出增加的DNA甲基化,同时与HSC维持相关的基因减少。总而言之,这些变化加强了HSC的自我更新并减少了分化,与HSC表型的衰老行为平行。随着核糖体蛋白和RNA基因转录的增加以及rRNA基因的甲基化不足,核糖体生物发生已成为衰老的特定目标。该数据集将为将来干细胞衰老的表观基因组分析提供参考。

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