Singhal Nishant, Esch Daniel, Stehling Martin, Schöler Hans R
Department of Cell and Developmental Biology, Max Planck Institute for Molecular Biomedicine , Münster, Germany .
Department of Cell and Developmental Biology, Max Planck Institute for Molecular Biomedicine , Münster, Germany . ; Faculty of Medicine, University of Münster , Münster, Germany .
Biores Open Access. 2014 Feb 1;3(1):1-8. doi: 10.1089/biores.2013.0047.
BAF chromatin remodeling complexes containing the BRG1 protein have been shown to be not only essential for early embryonic development, but also paramount in enhancing the efficiency of reprogramming somatic cells to pluripotency mediated by four transcription factors. To investigate the role of BRG1 in regulating pluripotency, we found that Oct4 and Nanog levels were increased immediately after BRG1 knockdown. While Nanog levels remained elevated over the investigated time period, Oct4 levels decreased at later time points. Additionally, OCT4 target genes were also found to be upregulated upon Brg1 knockdown. SiRNA-mediated BRG1 knockdown in embryonic stem (ES) cells led to Oct4 and Nanog upregulation, whereas F9 cells showed primarily Oct4 upregulation. BRG1 knockdown upregulated the expression of differentiation markers in mouse ES cells as well as differentiated morphology under reduced leukemia inhibitory factor conditions. Our results show that BRG1 plays an important role in maintaining pluripotency by fine-tuning the expression level of Oct4 and other pluripotency-associated genes.
已证明,含有BRG1蛋白的BAF染色质重塑复合物不仅对早期胚胎发育至关重要,而且在提高由四种转录因子介导的将体细胞重编程为多能性的效率方面也至关重要。为了研究BRG1在调节多能性中的作用,我们发现BRG1敲低后Oct4和Nanog水平立即升高。虽然在研究时间段内Nanog水平保持升高,但Oct4水平在后期时间点下降。此外,还发现Brg1敲低后OCT4靶基因也上调。胚胎干细胞(ES)中通过小干扰RNA介导的BRG1敲低导致Oct4和Nanog上调,而F9细胞主要表现为Oct4上调。在白血病抑制因子减少的条件下,BRG1敲低上调了小鼠ES细胞中分化标志物的表达以及分化形态。我们的结果表明,BRG1通过微调Oct4和其他多能性相关基因的表达水平在维持多能性中起重要作用。