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NPR-A regulates self-renewal and pluripotency of embryonic stem cells

机译:NPR-A调节胚胎干细胞的自我更新和多能性

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Self-renewal and pluripotency of embryonic stem (ES) cells are maintained by several signaling cascades and by expression of intrinsic factors, such as Oct4, Nanog and Sox2. The mechanism regulating these signaling cascades in ES cells is of great interest. Recently, we have demonstrated that natriuretic peptide receptor A (NPR-A), a specific receptor for atrial and brain natriuretic peptides (ANP and BNP, respectively), is expressed in pre-implantation embryos and in ES cells. Here, we examined whether NPR-A is involved in the maintenance of ES cell pluripotency. RNA interference-mediated knockdown of NPR-A resulted in phenotypic changes, indicative of differentiation, downregulation of pluripotency factors (such as Oct4, Nanog and Sox2) and upregulation of differentiation genes. NPR-A knockdown also resulted in a marked downregulation of phosphorylated Akt. Furthermore, NPR-A knockdown induced accumulation of ES cells in the G1 phase of the cell cycle. Interestingly, we found that ANP was expressed in self-renewing ES cells, whereas its level was reduced after ES cell differentiation. Treatment of ES cells with ANP upregulated the expression of Oct4, Nanog and phosphorylated Akt, and this upregulation depended on NPR-A signaling, because it was completely reversed by pretreatment with either an NPR-A antagonist or a cGMP-dependent protein kinase inhibitor. These findings provide a novel role for NPR-A in the maintenance of self-renewal and pluripotency of ES cells.. ? 2011 Macmillan Publishers Limited
机译:胚胎干(ES)细胞的自我更新和多能性通过几个信号级联和内在因素(例如Oct4,Nanog和Sox2)的表达来维持。调节ES细胞中这些信号传导级联的机制引起了极大的兴趣。最近,我们已经证明,利钠肽受体A(NPR-A)是心钠素和脑利钠肽(分别为ANP和BNP)的特异性受体,在植入前的胚胎和ES细胞中表达。在这里,我们检查了NPR-A是否参与ES细胞多能性的维持。 RNA干扰介导的NPR-A敲低导致表型变化,指示分化,多能性因子(例如Oct4,Nanog和Sox2)的下调和分化基因的上调。 NPR-A敲低还导致磷酸化的Akt明显下调。此外,NPR-A敲低诱导ES细胞在细胞周期的G1期积累。有趣的是,我们发现ANP在自我更新的ES细胞中表达,而在ES细胞分化后其水平降低。用ANP处理ES细胞会上调Oct4,Nanog和磷酸化的Akt的表达,而这种上调取决于NPR-A信号传导,因为用NPR-A拮抗剂或cGMP依赖性蛋白激酶抑制剂预处理可以完全逆转它。这些发现为NPR-A在维持ES细胞的自我更新和多能性方面提供了新的作用。 2011 Macmillan Publishers Limited

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