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通过 microRNA 分析揭示 Sox17 和 Foxa2 启动子的组蛋白乙酰化在小鼠限定内胚层分化中的作用。

Involvement of histone acetylation of Sox17 and Foxa2 promoters during mouse definitive endoderm differentiation revealed by microRNA profiling.

机构信息

China Novartis Institutes for BioMedical Research, Shanghai, China.

出版信息

PLoS One. 2011;6(11):e27965. doi: 10.1371/journal.pone.0027965. Epub 2011 Nov 23.

Abstract

Generation of hepatocyte from embryonic stem cells (ESCs) holds great promise for hepatocyte replacement therapy to treat liver diseases. Achieving high efficiency of directed differentiation of ESCs to hepatocyte is of critical importance. Previously, Wnt3a has been reported to promote Activin A-induced human definitive endoderm (DE) differentiation, the early stage of hepatocyte differentiation. However, the underlying molecular mechanisms are not clear. Growing evidence demonstrated that microRNAs (miRNAs) are key regulators involved in various important biological processes including the regulation of stem cell differentiation. In the present study, we profiled genome wide miRNA expression during Wnt3a and Activin A induced mouse DE differentiation. We uncovered distinct miRNA expression patterns during DE differentiation with the identification of a subset of miRNAs whose expression is synergistically regulated by Wnt3a/Activin A treatment at different stages of DE differentiation. Forced expression of a pool of such synergistically regulated miRNAs alone could partially promote DE differentiation, indicating a regulatory role of them. Using TargetScan and GeneGO pathway analyses, the synergistically regulated miRNAs are predicted to regulate key pathways involved in DE differentiation; among them includes the regulation of histone acetylation. Consistently, Wnt3a and Activin A treatment increased global histone acetylation which can be partially mimicked by over expression of the pooled miRNAs. Chromatin IP (ChIP) experiments demonstrated that the promoter regions of Sox17 and Foxa2 are subjected to histone acetylation regulation. Administration of Hdac inhibitors greatly augmented DE differentiation. Our data uncovered a novel epigenetic mechanism of Wnt3a and Activin A induced DE differentiation, whereby the treatment of growth factors induced histone acetylation at least in part by the regulation of miRNA expression.

摘要

胚胎干细胞 (ESC) 向肝细胞的定向分化效率对于肝细胞替代治疗肝脏疾病至关重要。此前有报道称,Wnt3a 可促进激活素 A 诱导的人胚层 (DE) 分化,即肝细胞分化的早期阶段。然而,其潜在的分子机制尚不清楚。越来越多的证据表明,microRNAs (miRNAs) 是参与各种重要生物学过程的关键调节因子,包括干细胞分化的调节。在本研究中,我们对 Wnt3a 和激活素 A 诱导的小鼠 DE 分化过程中的全基因组 miRNA 表达进行了分析。我们揭示了 DE 分化过程中独特的 miRNA 表达模式,确定了一小部分 miRNA 的表达受 Wnt3a/激活素 A 处理在 DE 分化的不同阶段协同调节。单独表达这些协同调节的 miRNA 可部分促进 DE 分化,表明它们具有调节作用。使用 TargetScan 和 GeneGO 通路分析,预测协同调节的 miRNAs 可调节 DE 分化中涉及的关键通路;其中包括组蛋白乙酰化的调节。一致地,Wnt3a 和激活素 A 处理增加了组蛋白乙酰化的整体水平,而这种作用可部分被这些 miRNA 的过表达所模拟。染色质免疫沉淀 (ChIP) 实验表明 Sox17 和 Foxa2 的启动子区域受到组蛋白乙酰化的调节。Hdac 抑制剂的给药极大地增强了 DE 分化。我们的数据揭示了 Wnt3a 和激活素 A 诱导的 DE 分化的一种新的表观遗传机制,即生长因子处理通过 miRNA 表达的调节至少部分诱导组蛋白乙酰化。

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