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Epigenetic Plasticity Drives Adipogenic and Osteogenic Differentiation of Marrow-derived Mesenchymal Stem Cells

机译:表观遗传可塑性驱动骨髓间充质干细胞的成脂和成骨分化。

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摘要

Terminal differentiation of multipotent stem cells is achieved through a coordinated cascade of activated transcription factors and epigenetic modifications that drive gene transcription responsible for unique cell fate. Within the mesenchymal lineage, factors such as RUNX2 and PPARγ are indispensable for osteogenesis and adipogenesis, respectively. We therefore investigated genomic binding of transcription factors and accompanying epigenetic modifications that occur during osteogenic and adipogenic differentiation of mouse bone marrow-derived mesenchymal stem cells (MSCs). As assessed by ChIP-sequencing and RNA-sequencing analyses, we found that genes vital for osteogenic identity were linked to RUNX2, C/EBPβ, retinoid X receptor, and vitamin D receptor binding sites, whereas adipocyte differentiation favored PPARγ, retinoid X receptor, C/EBPα, and C/EBPβ binding sites. Epigenetic marks were clear predictors of active differentiation loci as well as enhancer activities and selective gene expression. These marrow-derived MSCs displayed an epigenetic pattern that suggested a default preference for the osteogenic pathway; however, these patterns were rapidly altered near the Adipoq, Cidec, Fabp4, Lipe, Plin1, Pparg, and Cebpa genes during adipogenic differentiation. Surprisingly, we found that these cells also exhibited an epigenetic plasticity that enabled them to trans-differentiate from adipocytes to osteoblasts (and vice versa) after commitment, as assessed by staining, gene expression, and ChIP-quantitative PCR analysis. The osteogenic default pathway may be subverted during pathological conditions, leading to skeletal fragility and increased marrow adiposity during aging, estrogen deficiency, and skeletal unloading. Taken together, our data provide an increased mechanistic understanding of the epigenetic programs necessary for multipotent differentiation of MSCs that may prove beneficial in the development of therapeutic strategies.
机译:多能干细胞的终末分化是通过活化转录因子和表观遗传修饰的协调级联实现的,这些修饰驱动基因转录负责独特的细胞命运。在间充质谱系中,诸如RUNX2和PPARγ之类的因子分别对于成骨和成脂是必不可少的。因此,我们研究了转录因子的基因组结合以及伴随的表观遗传学修饰,这些修饰发生在小鼠骨髓来源的间充质干细胞(MSC)的成骨和成脂分化期间。通过ChIP测序和RNA测序分析评估,我们发现,对成骨性至关重要的基因与RUNX2,C /EBPβ,类维生素A X受体和维生素D受体结合位点相关,而脂肪细胞分化则有利于PPARγ,类维生素X受体, C /EBPα和C /EBPβ结合位点。表观遗传标记是活跃分化位点以及增强子活性和选择性基因表达的明确预测因子。这些骨髓来源的MSC表现出表观遗传模式,暗示了对成骨途径的默认偏好。然而,在成脂分化过程中,这些模式在Adipoq,Cidec,Fabp4,Lipe,Plin1,Pparg和Cebpa基因附近迅速改变。出乎意料的是,我们发现这些细胞还表现出表观遗传可塑性,使其能够在定型后从脂肪细胞向成骨细胞反分化(反之亦然),如通过染色,基因表达和ChIP定量PCR分析所评估的。成骨默认途径可能在病理情况下被破坏,导致骨骼脆弱,并在衰老,雌激素缺乏和骨骼卸载过程中增加骨髓脂肪。综上所述,我们的数据对MSC的多能分化所必需的表观遗传程序提供了增强的机械理解,这可能证明对治疗策略的发展有益。

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