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首页> 外文期刊>Cell death and differentiation >Regulation of endodermal differentiation of human embryonic stem cells through integrin-ECM interactions
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Regulation of endodermal differentiation of human embryonic stem cells through integrin-ECM interactions

机译:通过整合素-ECM相互作用调节人类胚胎干细胞的内胚层分化

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摘要

Many cellular responses during development are regulated by interactions between integrin receptors and extracellular matrix proteins (ECMPs). Although the majority of recent studies in human embryonic stem cell (hESC) differentiation have focused on the role of growth factors, such as FGF, TGF beta, and WNT, relatively little is known about the role of ECMP-integrin signaling in this process. Moreover, current strategies to direct hESC differentiation into various lineages are inefficient and have yet to produce functionally mature cells in vitro. This suggests that additional factors, such as ECMPs, are required for the efficient differentiation of hESCs. Using a high-throughput multifactorial cellular array technology, we investigated the effect of hundreds of ECMP combinations and concentrations on differentiation of several hPSC lines to definitive endoderm (DE), an early embryonic cell population fated to give rise to internal organs such as the lung, liver, pancreas, stomach, and intestine. From this screen we identified fibronectin (FN) and vitronectin (VTN) as ECMP components that promoted DE differentiation. Analysis of integrin expression revealed that differentiation toward DE led to an increase in FN-binding integrin alpha 5 (ITGA5) and VTN-binding integrin alpha V (ITGAV). Conditional short hairpin RNA-mediated knockdown of ITGA5 and ITGAV disrupted hESC differentiation toward DE. Finally, fluorescence-based cell sorting for ITGA5 and ITGAV significantly enriched cells with gene expression signatures associated with DE, demonstrating that these cell surface proteins permit isolation and enrichment of DE from hESCs. These data provide evidence that FN and VTN promote endoderm differentiation of hESCs through interaction with ITGA5 and ITGAV, and that ECMP-integrin interactions are required for hESC differentiation into functionally mature cells. Cell Death and Differentiation (2013) 20, 369-381; doi:10.1038/cdd.2012.138; published online 16 November 2012
机译:发育过程中的许多细胞反应都受整联蛋白受体和细胞外基质蛋白(ECMP)之间相互作用的调节。尽管最近有关人类胚胎干细胞(hESC)分化的研究大多集中在生长因子(例如FGF,TGFβ和WNT)的作用上,但有关ECMP-整联蛋白信号在此过程中的作用知之甚少。而且,目前指导hESC分化为不同谱系的策略是无效的,并且尚未在体外产生功能成熟的细胞。这表明,hESC的有效区分还需要其他因素,例如ECMP。使用高通量多因子细胞阵列技术,我们研究了数百种ECMP组合和浓度对几种hPSC系向定形内胚层(DE)分化的影响,定形内胚层(DE)是注定会引起内部器官(如肺)的早期胚胎细胞,肝脏,胰腺,胃和肠。从该屏幕中,我们确定了纤连蛋白(FN)和玻连蛋白(VTN)作为促进DE分化的ECMP成分。整联蛋白表达的分析表明,向DE的分化导致FN结合整联蛋白α5(ITGA5)和VTN结合整联蛋白αV(ITGAV)的增加。有条件的短发夹RNA介导的ITGA5和ITGAV的敲低破坏了hESC向DE的分化。最后,ITGA5和ITGAV的基于荧光的细胞分选显着富集了具有与DE相关的基因表达特征的细胞,表明这些细胞表面蛋白可从hESC中分离和富集DE。这些数据提供了证据,即FN和VTN通过与ITGA5和ITGAV相互作用来促进hESC的内胚层分化,并且hCMP分化为功能成熟细胞需要ECMP-整合素相互作用。细胞死亡与分化(2013)20,369-381; doi:10.1038 / cdd.2012.138; 2012年11月16日在线发布

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