首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Tgfbeta/Alk5 signaling is required for shear stress induced klf2 expression in embryonic endothelial cells.
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Tgfbeta/Alk5 signaling is required for shear stress induced klf2 expression in embryonic endothelial cells.

机译:Tgfbeta / Alk5信号是剪应力诱导的胚胎内皮细胞中klf2表达所必需的。

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摘要

Endothelial cells (EC) translate biomechanical forces into functional and phenotypic responses that play important roles in cardiac development. Specifically, EC in areas of high shear stress, i.e., in the cardiac outflow tract and atrioventricular canal, are characterized by high expression of Kruppel-like factor 2 (Klf2) and by transforming growth factor-beta (Tgfbeta)-driven endothelial-to-mesenchymal transition. Extraembryonic venous obstruction (venous clip model) results in congenital heart malformations, and venous clip-induced alterations in shear stress-related gene expression are suggestive for an increase in cardiac shear stress. Here, we study the effects of shear stress on Klf2 expression and Tgfbeta-associated signaling in embryonic EC in vivo using the venous clip model and in vitro by subjecting cultured EC to fluid flow. Cellular responses were assessed by analysis of Klf2, Tgfbeta ligands, and their downstream signaling targets. Results show that, in embryonic EC, shear stress activates Tgfbeta/Alk5 signaling and that induction of Klf2 is an Alk5 dependent process.
机译:内皮细胞(EC)将生物力学力转化为功能和表型反应,在心脏发育中起重要作用。具体而言,高切应力区域(即心脏流出道和房室管腔)中的EC的特征在于Kruppel样因子2(Klf2)的高表达和转化生长因子-β(Tgfbeta)驱动的内皮细胞-间质转化。胚外静脉阻塞(静脉夹模型)导致先天性心脏畸形,并且静脉夹诱导的切应力相关基因表达的改变提示心脏切应力增加。在这里,我们通过静脉夹模型和体外培养的EC流体研究剪切应力对胚胎EC中Klf2表达和Tgfbeta相关信号的影响。通过分析Klf2,Tgfbeta配体及其下游信号传导靶标评估细胞反应。结果表明,在胚胎EC中,剪切应力激活Tgfbeta / Alk5信号传导,而Klf2的诱导是Alk5依赖性过程。

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