首页> 外文期刊>Circulation: An Official Journal of the American Heart Association >Modulation of calcium-activated potassium channels induces cardiogenesis of pluripotent stem cells and enrichment of pacemaker-like cells.
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Modulation of calcium-activated potassium channels induces cardiogenesis of pluripotent stem cells and enrichment of pacemaker-like cells.

机译:钙激活钾通道的调节诱导多能干细胞的心脏发生和起搏器样细胞的富集。

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摘要

BACKGROUND: Ion channels are key determinants for the function of excitable cells, but little is known about their role and involvement during cardiac development. Earlier work identified Ca(2+)-activated potassium channels of small and intermediate conductance (SKCas) as important regulators of neural stem cell fate. Here we have investigated their impact on the differentiation of pluripotent cells toward the cardiac lineage. METHODS AND RESULTS: We have applied the SKCa activator 1-ethyl-2-benzimidazolinone on embryonic stem cells and identified this particular ion channel family as a new critical target involved in the generation of cardiac pacemaker-like cells: SKCa activation led to rapid remodeling of the actin cytoskeleton, inhibition of proliferation, induction of differentiation, and diminished teratoma formation. Time-restricted SKCa activation induced cardiac mesoderm and commitment to the cardiac lineage as shown by gene regulation, protein, and functional electrophysiological studies. In addition, the differentiation into cardiomyocytes was modulated in a qualitative fashion, resulting in a strong enrichment of pacemaker-like cells. This was accompanied by induction of the sino-atrial gene program and in parallel by a loss of the chamber-specific myocardium. In addition, SKCa activity induced activation of the Ras-Mek-Erk signaling cascade, a signaling pathway involved in the 1-ethyl-2-benzimidazolinone-induced effects. CONCLUSIONS: SKCa activation drives the fate of pluripotent cells toward mesoderm commitment and cardiomyocyte specification, preferentially into nodal-like cardiomyocytes. This provides a novel strategy for the enrichment of cardiomyocytes and in particular, the generation of a specific subtype of cardiomyocytes, pacemaker-like cells, without genetic modification.
机译:背景:离子通道是可激活细胞功能的关键决定因素,但人们对其在心脏发育过程中的作用和参与程度知之甚少。早期的工作将Ca(2+)激活的中小电导(SKCas)激活的钾通道作为神经干细胞命运的重要调节剂。在这里,我们研究了它们对多能细胞向心脏谱系分化的影响。方法和结果:我们已将SKCa激活剂1-乙基-2-苯并咪唑啉酮应用于胚胎干细胞,并将这一特定的离子通道家族确定为参与心脏起搏器样细胞生成的新关键靶标:SKCa激活导致快速重塑肌动蛋白的细胞骨架,抑制增殖,诱导分化和减少畸胎瘤的形成。时间限制的SKCa激活诱导了中胚层和对心脏谱系的承诺,如基因调控,蛋白质和功能性电生理研究所示。另外,以定性方式调节向心肌细胞的分化,导致起搏器样细胞的大量富集。这伴随着窦房基因程序的诱导,同时伴随着室特异性心肌的丧失。另外,SKCa活性诱导Ras-Mek-Erk信号级联反应的激活,Ras-Mek-Erk信号级联反应是参与1-乙基-2-苯并咪唑啉酮诱导的作用的信号传导途径。结论:SKCa激活将多能细胞的命运推向中胚层定型和心肌细胞规格,优先进入结节样心肌细胞。这为富集心肌细胞,尤其是无需基因修饰的心肌细胞特定亚型,起搏器样细胞的生成提供了一种新的策略。

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