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首页> 外文期刊>Nucleic acids research >MicroRNA-29b/Tet1 regulatory axis epigenetically modulates mesendoderm differentiation in mouse embryonic stem cells
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MicroRNA-29b/Tet1 regulatory axis epigenetically modulates mesendoderm differentiation in mouse embryonic stem cells

机译:MicroRNA-29b / Tet1调控轴表观遗传调控小鼠胚胎干细胞中的内胚层分化

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Ten eleven translocation (Tet) family-mediated DNA oxidation on 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC) represents a novel epigenetic modification that regulates dynamic gene expression during embryonic stem cells (ESCs) differentiation. Through the role of Tet on 5hmC regulation in stem cell development is relatively defined, how the Tet family is regulated and impacts on ESCs lineage development remains elusive. In this study, we show non-coding RNA regulation on Tet family may contribute to epigenetic regulation during ESCs differentiation, which is suggested by microRNA-29b (miR-29b) binding sites on the Tet1 3′ untranslated region (3′ UTR). We demonstrate miR-29b increases sharply after embyoid body (EB) formation, which causes Tet1 repression and reduction of cellular 5hmC level during ESCs differentiation. Importantly, we show this miR-29b/Tet1 regulatory axis promotes the mesendoderm lineage formation both in vitro and in vivo by inducing the Nodal signaling pathway and repressing the key target of the active demethylation pathway, Tdg. Taken together, our findings underscore the contribution of small non-coding RNA mediated regulation on DNA demethylation dynamics and the differential expressions of key mesendoderm regulators during ESCs lineage specification. MiR-29b could potentially be applied to enrich production of mesoderm and endoderm derivatives and be further differentiated into desired organ-specific cells.
机译:5-甲基胞嘧啶(5mC)上的十一个11易位(Tet)家族介导的DNA氧化成5-羟甲基胞嘧啶(5hmC)代表了一种新的表观遗传修饰,可调节胚胎干细胞(ESC)分化过程中动态基因的表达。通过相对于干细胞发育中Tet对5hmC调控的作用,Tet家族如何被调控以及对ESCs谱系发育的影响仍然不清楚。在这项研究中,我们显示Tet家族的非编码RNA调控可能有助于ESC分化过程中的表观遗传调控,这由Tet1 3'非翻译区(3'UTR)上的microRNA-29b(miR-29b)结合位点暗示。我们证明了胚泡体(EB)形成后,miR-29b急剧增加,这会导致Tet1抑制并导致ESCs分化过程中细胞5hmC水平降低。重要的是,我们显示了该miR-29b / Tet1调控轴通过诱导Nodal信号传导途径和抑制活性去甲基化途径的关键靶点Tdg,在体外和体内促进了中胚层谱系的形成。综上所述,我们的研究结果强调了在ESCs谱系规范中,小分子非编码RNA介导的DNA脱甲基化动力学调控和关键中胚层调节因子的差异表达。 MiR-29b可以潜在地用于丰富中胚层和内胚层衍生物的生产,并进一步分化为所需的器官特异性细胞。

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