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Insulin redirects differentiation from cardiogenic mesoderm and endoderm to neuroectoderm in differentiating human embryonic stem cells.

机译:在分化人类胚胎干细胞中,胰岛素将分化从心源性中胚层和内胚层重定向到神经外胚层。

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摘要

Human embryonic stem cells (hESC) can proliferate indefinitely while retaining the capacity to form derivatives of all three germ layers. We have reported previously that hESC differentiate into cardiomyocytes when cocultured with a visceral endoderm-like cell line (END-2). Insulin/insulin-like growth factors and their intracellular downstream target protein kinase Akt are known to protect many cell types from apoptosis and to promote proliferation, including hESC-derived cardiomyocytes. Here, we show that in the absence of insulin, a threefold increase in the number of beating areas was observed in hESC/END-2 coculture. In agreement, the addition of insulin strongly inhibited cardiac differentiation, as evidenced by a significant reduction in beating areas, as well as in alpha-actinin and beta-myosin heavy chain (beta-MHC)-expressing cells. Real-time reverse transcription-polymerase chain reaction and Western blot analysis showed that insulin inhibited cardiomyogenesis in the early phase of coculture by suppressing the expression of endoderm (Foxa2, GATA-6), mesoderm (brachyury T), and cardiac mesoderm (Nkx2.5, GATA-4). In contrast to previous reports, insulin was not sufficient to maintain hESC in an undifferentiated state, since expression of the pluripotency markers Oct3/4 and nanog declined independently of the presence of insulin during coculture. Instead, insulin promoted the expression of neuroectodermal markers. Since insulin triggered sustained phosphorylation of Akt in hESC, we analyzed the effect of an Akt inhibitor during coculture. Indeed, the inhibition of Akt or insulin-like growth factor-1 receptor reversed the insulin-dependent effects. We conclude that in hESC/END-2 cocultures, insulin does not prevent differentiation but favors the neuroectodermal lineage at the expense of mesendodermal lineages.
机译:人类胚胎干细胞(hESC)可以无限增殖,同时保留了形成所有三个胚层的衍生物的能力。我们先前曾报道过,hESC与内脏内胚层样细胞系(END-2)共培养时会分化为心肌细胞。已知胰岛素/胰岛素样生长因子及其细胞内下游靶蛋白激酶Akt保护许多细胞免受凋亡并促进增殖,包括hESC衍生的心肌细胞。在这里,我们表明,在没有胰岛素的情况下,在hESC / END-2共培养物中观察到搏动区域数量增加了三倍。一致的是,添加胰岛素强烈抑制了心脏的分化,这表现为跳动区域以及表达α-肌动蛋白和表达β-肌球蛋白的重链(β-MHC)的细胞明显减少。实时逆转录聚合酶链反应和Western印迹分析表明,胰岛素通过抑制内胚层(Foxa2,GATA-6),中胚层(brachyury T)和心脏中胚层(Nkx2)的表达来抑制共培养早期的心肌发生。 5,GATA-4)。与以前的报告相反,胰岛素不足以将hESC维持在未分化状态,因为多能性标志物Oct3 / 4和nanog的表达在共培养过程中独立于胰岛素的存在而下降。相反,胰岛素促进了神经外胚层标志物的表达。由于胰岛素触发了hESC中Akt的持续磷酸化,因此我们分析了共培养过程中Akt抑制剂的作用。实际上,抑制Akt或胰岛素样生长因子1受体可以逆转胰岛素依赖性作用。我们得出的结论是,在hESC / END-2共培养中,胰岛素不能阻止分化,但会有利于神经外胚层谱系,但会损害中胚层谱系。

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