首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Influencing Hematopoietic Differentiation of Mouse Embryonic Stem Cells using Soluble Heparin and Heparan Sulfate Saccharides
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Influencing Hematopoietic Differentiation of Mouse Embryonic Stem Cells using Soluble Heparin and Heparan Sulfate Saccharides

机译:可溶性肝素和硫酸乙酰肝素糖对小鼠胚胎干细胞造血分化的影响

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摘要

Heparan sulfate proteoglycans (HSPG) encompass some of the most abundant macromolecules on the surface of almost every cell type. Heparan sulfate (HS) chains provide a key interaction surface for the binding of numerous proteins such as growth factors and morphogens, helping to define the ability of a cell to respond selectively to environmental cues. The specificity of HS-protein interactions are governed predominantly by the order and positioning of sulfate groups, with distinct cell types expressing unique sets of HS epitopes. Embryos deficient in HS-synthesis (Ext1−/−) exhibit pre-gastrulation lethality and lack recognizable organized mesoderm and extraembryonic tissues. Here we demonstrate that embryonic stem cells (ESCs) derived from Ext1−/− embryos are unable to differentiate into hematopoietic lineages, instead retaining ESC marker expression throughout embryoid body (EB) culture. However hematopoietic differentiation can be restored by the addition of soluble heparin. Consistent with specific size and composition requirements for HS:growth factor signaling, chains measuring at least 12 saccharides were required for partial rescue of hematopoiesis with longer chains (18 saccharides or more) required for complete rescue. Critically N- and 6-O-sulfate groups were essential for rescue. Heparin addition restored the activity of multiple signaling pathways including bone morphogenic protein (BMP) with activation of phospho-SMADs re-established by the addition of heparin. Heparin addition to wild-type cultures also altered the outcome of differentiation, promoting hematopoiesis at low concentrations, yet inhibiting blood formation at high concentrations. Thus altering the levels of HS and HS sulfation within differentiating ESC cultures provides an attractive and accessible mechanism for influencing cell fate.
机译:硫酸乙酰肝素蛋白聚糖(HSPG)包含几乎每种细胞类型表面上最丰富的一些大分子。硫酸乙酰肝素(HS)链为许多蛋白质(例如生长因子和形态发生子)的结合提供了关键的相互作用表面,有助于定义细胞选择性响应环境线索的能力。 HS-蛋白相互作用的特异性主要受硫酸盐基团的顺序和位置支配,其中不同的细胞类型表达独特的HS表位集。缺乏HS合成的胚胎(Ext1 -/-)表现出胎前杀伤力,并且缺乏可识别的有组织的中胚层和胚外组织。在这里,我们证明了从Ext1 -/-胚胎衍生的胚胎干细胞(ESC)无法分化为造血谱系,而是在整个胚状体(EB)培养物中保留了ESC标志物表达。但是,通过添加可溶性肝素可以恢复造血分化。与HS:生长因子信号转导的特定大小和组成要求一致,对至少12个糖类的链进行部分拯救需要完全拯救所需要的更长链(18个糖类或更多)的血细胞生成。至关重要的是,N-和6-O-硫酸酯基团对于救援至关重要。肝素的添加恢复了包括骨形态发生蛋白(BMP)在内的多种信号通路的活性,并激活了通过添加肝素而重新建立的磷酸-SMAD。除了野生型培养物外,肝素还改变了分化的结果,在低浓度时促进造血作用,而在高浓度时抑制血液形成。因此,改变分化的ESC培养物中HS和HS硫酸化的水平提供了影响细胞命运的有吸引力且可及的机制。

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