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Heparan Sulfate Biosynthesis Enzymes in Embryonic Stem CellBiology

机译:胚胎干细胞中硫酸乙酰肝素的生物合成酶生物学

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摘要

Embryonic stem (ES) cells are derived from the inner cell mass of the blastocyst and can give rise to all cell types in the body. The fate of ES cells depends on the signals they receive from their surrounding environment, which either promote self-renewal or initiate differentiation. Heparan sulfate proteoglycans are macromolecules found on the cell surface and in the extracellular matrix. Acting as low-affinity receptors on the cell surface, heparan sulfate (HS) side chains modulate the functions of numerous growth factors and morphogens, having wide impact on the extracellular information received by cells. ES cells lacking HS fail to differentiate but can be induced to do so by adding heparin. ES cells defective in various components of the HS biosynthesis machinery, thus expressing differently flawed HS, exhibit lineage-specific effects. Here we discuss recent studies on the biological functions of HS in ES cell developmental processes. Since ES cells have significant potential applications in tissue/cell engineering for cell replacement therapies, understanding the functional mechanisms of HS in manipulating ES cell growth in vitro is of utmost importance, if the stem cell regenerative medicine from scientific fiction ever will be made real.
机译:胚胎干(ES)细胞源自胚泡的内部细胞团,可以在体内产生所有细胞类型。 ES细胞的命运取决于它们从周围环境中接收到的信号,这些信号会促进自我更新或引发分化。硫酸乙酰肝素蛋白聚糖是在细胞表面和细胞外基质中发现的大分子。硫酸乙酰肝素(HS)侧链充当细胞表面上的低亲和力受体,可调节多种生长因子和形态发生原的功能,对细胞接收的细胞外信息具有广泛的影响。缺乏HS的ES细胞无法分化,但可以通过添加肝素来诱导分化。在HS生物合成机制的各个组件中有缺陷的ES细胞,因此表达了不同的有缺陷的HS,表现出谱系特异性效应。在这里,我们讨论了HS在ES细胞发育过程中的生物学功能的最新研究。由于ES细胞在组织/细胞工程中用于细胞替代治疗具有重要的潜在应用,因此,如果要使科幻小说中的干细胞再生医学成为现实,那么了解HS在体外控制ES细胞生长中的功能机制至关重要。

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