Akt promotes endocardial-mesenchyme transition.

Kafi N Meadows, Seema Iyer, Mark V Stevens, Duanning Wang, Sharon Shechter, Carole Perruzzi, Todd D Camenisch, Laura E Benjamin
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引用次数: 50

Abstract

Endothelial to mesenchyme transition (EndMT) can be observed during the formation of endocardial cushions from the endocardium, the endothelial lining of the atrioventricular canal (AVC), of the developing heart at embryonic day 9.5 (E9.5). Many regulators of the process have been identified; however, the mechanisms driving the initial commitment decision of endothelial cells to EndMT have been difficult to separate from processes required for mesenchymal proliferation and migration. We have several lines of evidence that suggest a central role for Akt signaling in committing endothelial cells to enter EndMT. Akt1 mRNA was restricted to the endocardium of endocardial cushions while they were forming. The PI3K/Akt signaling pathway is necessary for mesenchyme outgrowth, as sprouting was inhibited in AVC explant cultures treated with the PI3K inhibitor LY294002. Furthermore, endothelial marker, VE-cadherin, was downregulated and mesenchyme markers, N-cadherin and Snail, were induced in response to expression of a constitutively active form of Akt1 (myrAkt1) in endothelial cells. Finally, we isolated the function of Akt1 signaling in the commitment to the transition using a transgenic model where myrAkt1 was pulsed only in endocardial cells and turned off after EndMT initiation. In this way, we determined that increased Akt signaling in the endocardium drives EndMT and discounted its other functions in cushion mesenchymal cells.

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Akt促进心内膜-间质转化。
在胚胎第9.5天(E9.5)心脏发育过程中,可以观察到心内膜向间质转化(EndMT),心内膜是房室管(AVC)的内皮衬里。已经确定了该过程的许多监管机构;然而,驱动内皮细胞向EndMT的初始承诺决定的机制很难与间质增殖和迁移所需的过程分开。我们有几条证据表明Akt信号在内皮细胞进入EndMT过程中起核心作用。在心内膜缓冲垫形成过程中,Akt1 mRNA局限于心内膜。PI3K/Akt信号通路是间质生长所必需的,因为PI3K抑制剂LY294002处理的AVC外植体培养物的发芽受到抑制。此外,内皮细胞标记物VE-cadherin下调,间充质标记物N-cadherin和Snail在内皮细胞中表达构成型活性Akt1 (myrAkt1)时被诱导。最后,我们使用转基因模型分离了Akt1信号在过渡过程中的功能,其中myrAkt1仅在心内膜细胞中被脉冲,并在EndMT启动后被关闭。通过这种方式,我们确定心内膜中Akt信号的增加驱动了EndMT,而忽略了它在缓冲间充质细胞中的其他功能。
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