首页> 美国卫生研究院文献>Stem Cells and Development >Global Gene Expression Analysis of Very Small Embryonic-Like Stem Cells Reveals that the Ezh2-Dependent Bivalent Domain Mechanism Contributes to Their Pluripotent State
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Global Gene Expression Analysis of Very Small Embryonic-Like Stem Cells Reveals that the Ezh2-Dependent Bivalent Domain Mechanism Contributes to Their Pluripotent State

机译:很小的类胚胎干细胞的全局基因表达分析表明依赖Ezh2的二价域机制有助于其多能状态。

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摘要

Recently, we identified a population of Oct4+Sca-1+Lin-CD45- very small embryonic-like stem cells (VSELs) in murine and human adult tissues. VSELs can differentiate in vitro into cells from all 3 germ layers and in vivo tissue-committed stem cells. Open chromatin structure of core pluripotency transcription factors (TFs) supports the pluripotent state of VSELs. However, it has been difficult to determine how primitive VSELs maintain pluripotency, owing to their limited number in adult tissues. Here, we demonstrate by genome-wide gene-expression analysis with a small number of highly purified murine bone marrow–derived VSELs that Oct4+ VSELs (i) express a similar, yet nonidentical, transcriptome as embryonic stem cells (ESCs), (ii) highly express cell cycle checkpoint genes, (iii) express at a low level genes involved in protein turnover and mitogenic pathways, and (iv) highly express enhancer of zeste drosophila homolog 2 (Ezh2), a polycomb group protein. Furthermore, as a result of high expression of Ezh2, VSELs, like ESCs, exhibit bivalently modified nucleosomes (trimethylated H3K27 and H3K4) at promoters of important homeodomain-containing developmental TFs, thus preventing premature activation of the lineage-committing factors. Notably, spontaneous or RNA interference-enforced downregulation of Ezh2 during VSEL differentiation removes the bivalent domain (BD) structure, which leads to de-repression of several BD-regulated genes. Therefore, we suggest that Oct4+ VSELs, like other pluripotent stem cells, maintain their pluripotent state through an Ezh2-dependent BD-mediated epigenetic mechanism. Furthermore, our global survey of VSEL gene expression signature would not only advance our understanding of biological process for their pluripotency, differentiation, and quiescence but should also help to develop better protocols for ex vivo expansion of VSELs.
机译:最近,我们确定了Oct4 + Sca-1 + Lin - CD45 -非常小的类胚胎种群。鼠和成人组织中的干细胞(VSEL)。 VSEL​​可以在体外分化为来自所有3个胚层的细胞和体内组织定型的干细胞。核心多能转录因子(TF)的开放染色质结构支持VSEL的多能状态。但是,由于在成人组织中的数量有限,很难确定原始VSEL如何保持多能性。在这里,我们通过全基因组全基因表达分析,用少量高度纯化的小鼠骨髓来源的VSEL证明,Oct4 + VSEL(i)表达与胚胎干相似但不同的转录组细胞(ESC),(ii)高表达细胞周期检查点基因,(iii)低水平表达参与蛋白质更新和促有丝分裂途径的基因,以及(iv)zeste果蝇同系物2(Ezh2)(一种多梳子)的高表达增强子组蛋白。此外,由于Ezh2的高表达,VSEL与ESCs一样,在重要的含同源域的发育TFs的启动子上显示了二价修饰的核小体(三甲基化的H3K27和H3K4),从而防止了谱系赋予因子的过早激活。值得注意的是,在VSEL分化过程中,Ezh2的自发或RNA干扰引起的下调会去除二价域(BD)结构,从而导致抑制多个BD调控的基因。因此,我们建议与其他多能干细胞一样,Oct4 + VSEL通过依赖Ezh2的BD介导的表观遗传机制维持其多能状态。此外,我们对VSEL基因表达特征的全球调查不仅会提高我们对其多能性,分化和静止的生物学过程的了解,而且还将有助于为VSEL的体外扩增开发更好的方案。

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