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通过下调Notch1信号通路诱导胚胎干细胞发生心脏生成。

Induction of cardiogenesis in embryonic stem cells via downregulation of Notch1 signaling.

作者信息

Nemir Mohamed, Croquelois Adrien, Pedrazzini Thierry, Radtke Freddy

机构信息

Ludwig Institute for Cancer Research, Lausanne Branch, University Lausanne, Epalinges VA 1066, Switzerland.

出版信息

Circ Res. 2006 Jun 23;98(12):1471-8. doi: 10.1161/01.RES.0000226497.52052.2a. Epub 2006 May 11.

Abstract

Embryonic stem cells represent an attractive source of cardiomyocytes for cell-replacement therapies. However, before embryonic stem cells can be successfully used for the treatment of cardiac diseases, the precise molecular mechanisms that underlie their cardiogenic differentiation must be identified. A network of intrinsic and extrinsic factors regulates embryonic stem cell self-renewal and differentiation into a variety of different cell lineages. Here, we show that Notch signaling takes place in some but not all embryonic stem cells and that the Notch pathway is shut down during the course of differentiation concomitantly with downregulation of Notch receptor and ligand expression. Moreover, gain- and loss-of-function experiments for Notch signaling components show that this pathway is a crucial regulator of cardiomyocyte differentiation within ES cells. Differentiation of ES cells into cardiomyocytes is favored by inactivation of the Notch1 receptor, whereas endogenous Notch signaling promotes differentiation of ES cells into the neuronal lineage. We conclude that Notch signaling influences the cell fate decision between mesodermal and the neuroectodermal cell fates during embryonic stem cell differentiation. These findings should help to optimize the production of specific cell types via modulation of the Notch pathways and, in particular, to improve the production of embryonic stem cell-derived cardiomyocytes.

摘要

胚胎干细胞是细胞替代疗法中极具吸引力的心肌细胞来源。然而,在胚胎干细胞能够成功用于治疗心脏病之前,必须确定其心肌分化背后的确切分子机制。内在和外在因素网络调节胚胎干细胞的自我更新以及向多种不同细胞谱系的分化。在此,我们表明Notch信号在部分而非所有胚胎干细胞中发生,并且在分化过程中Notch通路会随着Notch受体和配体表达的下调而关闭。此外,针对Notch信号成分的功能获得和功能丧失实验表明,该通路是胚胎干细胞中心肌细胞分化的关键调节因子。Notch1受体失活有利于胚胎干细胞向心肌细胞分化,而内源性Notch信号促进胚胎干细胞向神经谱系分化。我们得出结论,Notch信号在胚胎干细胞分化过程中影响中胚层和神经外胚层细胞命运之间的细胞命运决定。这些发现应有助于通过调节Notch通路来优化特定细胞类型的产生,特别是有助于提高胚胎干细胞衍生心肌细胞的产量。

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