首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The cellular form of the prion protein is involved in controlling cell cycle dynamics, self-renewal, and the fate of human embryonic stem cell differentiation
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The cellular form of the prion protein is involved in controlling cell cycle dynamics, self-renewal, and the fate of human embryonic stem cell differentiation

机译:ion病毒蛋白的细胞形式参与控制细胞周期动力学,自我更新以及人类胚胎干细胞分化的命运

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Prion protein (PrPC), is a glycoprotein that is expressed on the cell surface. The current study examines the role of PrPC in early human embryogenesis using human embryonic stem cells (hESCs) and tetracycline-regulated lentiviral vectors that up-regulate or suppresses PrPC expression. Here, we show that expression of PrPC in pluripotent hESCs cultured under self-renewal conditions induced cell differentiation toward lineages of three germ layers. Silencing of PrP C in hESCs undergoing spontaneous differentiation altered the dynamics of the cell cycle and changed the balance between the lineages of the three germ layers, where differentiation toward ectodermal lineages was suppressed. Moreover, over-expression of PrPC in hESCs undergoing spontaneous differentiation inhibited differentiation toward lineages of all three germ layers and helped to preserve high proliferation activity. These results illustrate that PrPC is involved in key activities that dictate the status of hESCs including regulation of cell cycle dynamics, controlling the switch between self-renewal and differentiation, and determining the fate of hESCs differentiation. This study suggests that PrPC is at the crossroads of several signaling pathways that regulate the switch between preservation of or departure from the self-renewal state, control cell proliferation activity, and define stem cell fate.
机译:on病毒蛋白(PrPC)是一种在细胞表面表达的糖蛋白。本研究使用人类胚胎干细胞(hESCs)和上调或抑制PrPC表达的四环素调节慢病毒载体,研究了PrPC在早期人类胚胎发生中的作用。在这里,我们显示在自我更新条件下培养的多能hESCs中PrPC的表达诱导细胞分化为三个胚层的谱系。在经历自发分化的hESC中,PrP C的沉默改变了细胞周期的动力学,并改变了三个胚层的谱系之间的平衡,从而抑制了向外胚层谱系的分化。而且,在经历自发分化的hESC中PrPC的过表达抑制了向所有三个胚层的谱系的分化,并有助于保持高增殖活性。这些结果表明,PrPC参与了决定hESCs状态的关键活动,包括调节细胞周期动力学,控制自我更新和分化之间的转换以及确定hESCs分化的命运。这项研究表明,PrPC处于多种信号通路的十字路口,这些信号通路调节着自我更新状态的保留或偏离,控制细胞增殖活性以及确定干细胞命运之间的转换。

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