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Biphasic Role of Chondroitin Sulfate in Cardiac Differentiation of Embryonic Stem Cells through Inhibition of Wnt/β-Catenin Signaling

机译:硫酸软骨素通过抑制Wnt /β-Catenin信号传导在胚胎干细胞心脏分化中的两相作用

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摘要

The glycosaminoglycan chondroitin sulfate is a critical component of proteoglycans on the cell surface and in the extracellular matrix. As such, chondroitin sulfate side chains and the sulfation balance of chondroitin play important roles in the control of signaling pathways, and have a functional importance in human disease. In contrast, very little is known about the roles of chondroitin sulfate molecules and sulfation patterns during mammalian development and cell lineage specification. Here, we report a novel biphasic role of chondroitin sulfate in the specification of the cardiac cell lineage during embryonic stem cell differentiation through modulation of Wnt/beta-catenin signaling. Lineage marker analysis demonstrates that enzymatic elimination of endogenous chondroitin sulfates leads to defects specifically in cardiac differentiation. This is accompanied by a reduction in the number of beating cardiac foci. Mechanistically, we show that endogenous chondroitin sulfate controls cardiac differentiation in a temporal biphasic manner through inhibition of the Wnt/beta-catenin pathway, a known regulatory pathway for the cardiac lineage. Treatment with a specific exogenous chondroitin sulfate, CS-E, could mimic these biphasic effects on cardiac differentiation and Wnt/beta-catenin signaling. These results establish chondroitin sulfate and its sulfation balance as important regulators of cardiac cell lineage decisions through control of the Wnt/beta-catenin pathway. Our work suggests that targeting the chondroitin biosynthesis and sulfation machinery is a novel promising avenue in regenerative strategies after heart injury.
机译:糖胺聚糖硫酸软骨素是细胞表面和细胞外基质中蛋白聚糖的重要组成部分。这样,硫酸软骨素侧链和软骨素的硫酸化平衡在控制信号传导途径中起重要作用,并且在人类疾病中具有功能重要性。相比之下,关于硫酸软骨素分子和硫酸化模式在哺乳动物发育和细胞谱系规范中的作用知之甚少。在这里,我们报告了硫酸软骨素在胚胎干细胞分化过程中通过调节Wnt /β-catenin信号传导在心脏细胞谱系规范中的新型两相作用。谱系标记分析表明,内源性硫酸软骨素的酶促消除会导致心脏分化方面的缺陷。这伴随着跳动的心脏病灶数量的减少。从机制上讲,我们显示内源性硫酸软骨素通过抑制Wnt /β-catenin途径(一种已知的心脏谱系调节途径),以暂时的双相方式控制心脏分化。用特定的外源性硫酸软骨素CS-E进行治疗可以模拟这些对心脏分化和Wnt /β-catenin信号传导的双相作用。这些结果通过控制Wnt /β-catenin途径,确立了硫酸软骨素及其硫酸盐平衡作为心肌细胞谱系决定的重要调节剂。我们的工作表明,针对软骨素的生物合成和硫酸化机制,是心脏损伤后再生策略中的一种新的有希望的途径。

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