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PKG and PKC Are Down-Regulated during Cardiomyocyte Differentiation from Embryonic Stem Cells: Manipulation of These Pathways Enhances Cardiomyocyte Production

机译:PKG和PKC在从胚胎干细胞分化为心肌细胞的过程中被下调:操纵这些途径增强了心肌细胞的产生

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Understanding signal transduction mechanisms that drive differentiation of adult or embryonic stem cells (ESCs) is imperative if they are to be used to cure disease. While the list of signaling pathways regulating stem cell differentiation is growing, it is far from complete. Indentifying regulatory mechanisms and timecourse commitment to cell lineages is needed for generating pure populations terminally differentiated cell types, and in ESCs, suppression of teratoma formation. To this end, we investigated specific signaling mechanisms involved in cardiomyogenesis, followed by manipulation of these pathways to enhance differentiation of ESCs into cardiomyocytes. Subjecting nascent ESC-derived cardiomyocytes to a proteomics assay, we found that cardiomyogenesis is influenced by up- and down-regulation of a number of kinases, one of which, cGMP-dependent protein kinase (PKG), is markedly down-regulated during differentiation. Delving further, we found that manipulating the PKG pathway using PKG-specific inhibitors produced significantly more cardiomyocytes from ESCs when compared to ESCs left to differentiate without inhibitors. In addition, we found combinatorial effects when culturing ESCs in inhibitors to PKG and PKC isotypes. Consequently, we have generated a novel hypothesis: Down-regulation of PKG and specific PKC pathways are necessary for cardiomyogenesis, and when manipulated, these pathways produce significantly more cardiomyocytes than untreated ESCs.
机译:如果要使用信号转导机制来治愈疾病,则必须了解驱动成人或胚胎干细胞(ESC)分化的信号转导机制。尽管调节干细胞分化的信号传导途径清单在增加,但还远远不够。需要识别调控机制和对细胞谱系的时程投入,以产生终末分化细胞类型的纯种群,并在ESC中抑制畸胎瘤的形成。为此,我们研究了参与心肌发生的特定信号传导机制,然后操纵这些途径来增强ESCs向心肌细胞的分化。对新生的ESC衍生的心肌细胞进行蛋白质组学分析,我们发现心肌发生受多种激酶的上调和下调影响,其中一种cGMP依赖性蛋白激酶(PKG)在分化过程中明显下调。 。进一步深入研究,我们发现与不使用抑制剂进行分化的ESC相比,使用PKG特异性抑制剂操纵PKG途径可从ESC产生更多的心肌细胞。此外,我们发现将ESCs培养到PKG和PKC同型抑制剂中时具有组合作用。因此,我们产生了一个新的假说:PKG的下调和特定的PKC途径对于心肌发生是必需的,并且在被操纵时,这些途径产生的心肌细胞明显多于未经处理的ESC。

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