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Inhibition of Activin/Nodal signaling promotes specification of human embryonic stem cells into neuroectoderm

机译:激活素/节点信号转导的抑制促进人类胚胎干细胞进入神经外胚层的规范

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Nodal, a member of the TGF-beta family of signaling molecules, has been implicated in pluripotency in human embryonic stem cells (hESCs) [Vallier, L., Reynolds, D., Pedersen, R.A., 2004a. Nodal inhibits differentiation of human embryonic stem cells along the neuroectodermal default pathway. Dev. Biol. 275, 403-421], a finding that seems paradoxical given Nodal's central role in mesoderm/endoderm specification during gastrulation. In this study, we sought to clarify the role of Nodal signaling during hESC differentiation by constitutive overexpression of the endogenous Nodal inhibitors Lefty2 (Lefty) and truncated Cerberus (Cerb-S) and by pharmacological interference using the Nodal receptor antagonist S13431542. Compared to wildtype (WT) controls, embryoid bodies (EBs) derived from either Lefty or Cerb-S overexpressing hESCs showed increased expression of neuroectoderm markers Sox1, Sox3, and Nestin. Conversely, they were negative for a definitive endoderm marker (Sox17) and did not generate beating cardiomyocyte structures in conditions that allowed mesendoderm differentiation from WT hESCs. EBs derived from either Lefty or Cerb-S expressing hESCs also contained a greater abundance of neural rosette structures as compared to controls. Differentiating EBs derived from Lefty expressing hESCs generated a dense network of beta-tubulin III positive neurites, and when Lefty expressing hESCs were grown as a monolayer and allowed to differentiate, they generated significantly higher numbers of beta-tubulin positive neurons as compared to wildtype hESCs. SB431542 treatments reproduced the neuralising effects of Lefty overexpression in hESCs. These results show that inhibition of Nodal signaling promotes neuronal specification, indicating a role for this pathway in controlling early neural development of pluripotent cells. (c) 2007 Elsevier Inc. All rights reserved.
机译:Nodal是TGF-β信号分子家族的成员,已牵涉到人类胚胎干细胞(hESCs)的多能性中[Vallier,L.,Reynolds,D.,Pedersen,R.A.,2004a。 Nodal抑制人胚干细胞沿神经外胚层默认途径的分化。开发人员生物学[第275卷,第403-421页],考虑到Nodal在制胃过程中在中胚层/内胚层规格中的核心作用,这一发现似乎是自相矛盾的。在这项研究中,我们试图通过内源性Nodal抑制剂Lefty2(Lefty)和截短的Cerberus(Cerb-S)的组成性过表达以及通过使用Nodal受体拮抗剂S13431542的药理干预来阐明hESC分化过程中Nodal信号的作用。与野生型(WT)对照相比,源自Lefty或Cerb-S过表达hESC的胚状体(EB)显示神经外胚层标志物Sox1,Sox3和Nestin的表达增加。相反,它们对于定形内胚层标记物(Sox17)呈阴性,在允许中胚层与WT hESC分化的条件下,不会产生跳动的心肌细胞结构。与对照组相比,源自表达Lefty或Cerb-S的hESC的EB还含有大量的神经玫瑰花结结构。源自表达Lefty的hESC的分化EB产生了密集的β-微管蛋白III阳性神经突网络,当表达Lefty的hESC作为单层生长并允许分化时,与野生型hESC相比,它们产生的β-微管蛋白阳性神经元数量明显增加。 。 SB431542处理重现了hESCs中Lefty过表达的神经化作用。这些结果表明,抑制Nodal信号传导可促进神经元规范,表明该途径在控制多能细胞早期神经发育中的作用。 (c)2007 Elsevier Inc.保留所有权利。

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