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首页> 外文期刊>Stem Cells >Activin/Nodal signaling controls divergent transcriptional networks in human embryonic stem cells and in endoderm progenitors.
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Activin/Nodal signaling controls divergent transcriptional networks in human embryonic stem cells and in endoderm progenitors.

机译:激活素/节点信号传导控制人类胚胎干细胞和内胚层祖细胞中的不同转录网络。

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摘要

Activin/Nodal signaling is necessary to maintain pluripotency of human embryonic stem cells (hESCs) and to induce their differentiation toward endoderm. However, the mechanisms by which Activin/Nodal signaling achieves these opposite functions remain unclear. To unravel these mechanisms, we examined the transcriptional network controlled in hESCs by Smad2 and Smad3, which represent the direct effectors of Activin/Nodal signaling. These analyses reveal that Smad2/3 participate in the control of the core transcriptional network characterizing pluripotency, which includes Oct-4, Nanog, FoxD3, Dppa4, Tert, Myc, and UTF1. In addition, similar experiments performed on endoderm cells confirm that a broad part of the transcriptional network directing differentiation is downstream of Smad2/3. Therefore, Activin/Nodal signaling appears to control divergent transcriptional networks in hESCs and in endoderm. Importantly, we observed an overlap between the transcriptional network downstream of Nanog and Smad2/3 in hESCs; whereas, functional studies showed that both factors cooperate to control the expression of pluripotency genes. Therefore, the effect of Activin/Nodal signaling on pluripotency and differentiation could be dictated by tissue specific Smad2/3 partners such as Nanog, explaining the mechanisms by which signaling pathways can orchestrate divergent cell fate decisions. STEM CELLS 2011;29:1176-1185.
机译:激活素/节点信号是维持人类胚胎干细胞(hESC)多能性并诱导其向内胚层分化所必需的。然而,激活素/节点信号传导实现这些相反功能的机制仍不清楚。为了阐明这些机制,我们研究了由Smad2和Smad3在hESC中控制的转录网络,它们代表激活素/节点信号的直接效应子。这些分析表明Smad2 / 3参与了表征多能性的核心转录网络的控制,其中包括Oct-4,Nanog,FoxD3,Dppa4,Tert,Myc和UTF1。另外,对内胚层细胞进行的类似实验证实,指导分化的转录网络的大部分在Smad2 / 3的下游。因此,激活素/节点信号似乎似乎控制hESCs和内胚层中不同的转录网络。重要的是,我们观察到hESCs中Nanog下游的转录网络与Smad2 / 3之间存在重叠。而功能研究表明,这两个因素共同控制多能性基因的表达。因此,激活素/节点信号转导对多能性和分化的影响可能由组织特异性Smad2 / 3伴侣(例如Nanog)决定,解释了信号转导途径可以协调不同细胞命运决定的机制。 STEM CELLS 2011; 29:1176-1185。

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