Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, Germany.
PLoS One. 2011 May 12;6(5):e19470. doi: 10.1371/journal.pone.0019470.
For self-renewal, embryonic stem cells (ESCs) require the expression of specific transcription factors accompanied by a particular chromosome organization to maintain a balance between pluripotency and the capacity for rapid differentiation. However, how transcriptional regulation is linked to chromosome organization in ESCs is not well understood. Here we show that the cohesin component RAD21 exhibits a functional role in maintaining ESC identity through association with the pluripotency transcriptional network. ChIP-seq analyses of RAD21 reveal an ESC specific cohesin binding pattern that is characterized by CTCF independent co-localization of cohesin with pluripotency related transcription factors Oct4, Nanog, Sox2, Esrrb and Klf4. Upon ESC differentiation, most of these binding sites disappear and instead new CTCF independent RAD21 binding sites emerge, which are enriched for binding sites of transcription factors implicated in early differentiation. Furthermore, knock-down of RAD21 causes expression changes that are similar to expression changes after Nanog depletion, demonstrating the functional relevance of the RAD21--pluripotency transcriptional network association. Finally, we show that Nanog physically interacts with the cohesin or cohesin interacting proteins STAG1 and WAPL further substantiating this association. Based on these findings we propose that a dynamic placement of cohesin by pluripotency transcription factors contributes to a chromosome organization supporting the ESC expression program.
为了自我更新,胚胎干细胞 (ESC) 需要表达特定的转录因子,并伴随着特定的染色体组织,以维持多能性和快速分化能力之间的平衡。然而,转录调控如何与 ESC 中的染色体组织相关联还不是很清楚。在这里,我们表明黏连蛋白成分 RAD21 通过与多能性转录网络的关联,在维持 ESC 特性方面发挥了功能作用。RAD21 的 ChIP-seq 分析揭示了 ESC 特异性黏连蛋白结合模式,其特征是 CTCF 独立的黏连蛋白与多能性相关转录因子 Oct4、Nanog、Sox2、Esrrb 和 Klf4 的共定位。在 ESC 分化过程中,这些结合位点中的大多数消失,取而代之的是新出现的 CTCF 独立的 RAD21 结合位点,这些结合位点富含早期分化中涉及的转录因子的结合位点。此外,RAD21 的敲低会导致与 Nanog 耗竭后相似的表达变化,这表明 RAD21--多能性转录网络关联具有功能相关性。最后,我们表明 Nanog 与黏连蛋白或黏连蛋白相互作用蛋白 STAG1 和 WAPL 发生物理相互作用,进一步证实了这种关联。基于这些发现,我们提出,由多能性转录因子动态放置的黏连蛋白有助于支持 ESC 表达程序的染色体组织。