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Global identification of transcriptional regulators of pluripotency and differentiation in embryonic stem cells

机译:胚胎干细胞多能性和分化的转录调节因子的全球鉴定

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Human embryonic stem cells (hESCs) hold great promise for regenerative medicine because they can undergo unlimited self-renewal and retain the capability to differentiate into all cell types in the body. Although numerous genes/proteins such as Oct4 and Gata6 have been identified to play critical regulatory roles in self-renewal and differentiation of hESC, the majority of the regulators in these cellular processes and more importantly how these regulators co-operate with each other and/or with epigenetic modifications are still largely unknown. We propose here a systematic approach to integrate genomic and epigenomic data for identification of direct regulatory interactions. This approach allows reconstruction of cell-type-specific transcription networks in embryonic stem cells (ESCs) and fibroblasts at an unprecedented scale. Many links in the reconstructed networks coincide with known regulatory interactions or literature evidence. Systems-level analyses of these networks not only uncover novel regulators for pluripotency and differentiation, but also reveal extensive interplays between transcription factor binding and epigenetic modifications. Especially, we observed poised enhancers characterized by both active (H3K4me1) and repressive (H3K27me3) histone marks that contain enriched Oct4- and Suz12-binding sites. The success of such a systems biology approach is further supported by experimental validation of the predicted interactions.
机译:人类胚胎干细胞(hESCs)对于再生医学具有广阔的前景,因为它们可以进行无限的自我更新,并保留分化为体内所有细胞类型的能力。尽管已鉴定出许多基因/蛋白质(例如Oct4和Gata6)在hESC的自我更新和分化中起关键的调控作用,但这些细胞过程中的大多数调控因子,更重要的是这些调控因子如何彼此协同和/还是带有表观遗传修饰的仍然未知。我们在这里提出一种系统的方法来整合基因组和表观基因组数据,以鉴定直接的调控相互作用。这种方法允许在胚胎干细胞(ESC)和成纤维细胞中以前所未有的规模重建特定于细胞类型的转录网络。重建网络中的许多链接都与已知的监管相互作用或文献证据相吻合。这些网络的系统级分析不仅揭示了多能性和分化的新型调节剂,而且还揭示了转录因子结合与表观遗传修饰之间的广泛相互作用。尤其是,我们观察到了以活跃的(H3K4me1)和抑制性的(H3K27me3)组蛋白标记为特征的平衡增强子,其中含有丰富的Oct4和Suz12结合位点。预测相互作用的实验验证进一步支持了这种系统生物学方法的成功。

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