首页> 外文期刊>Genesis: the journal of genetics and development >Specific Induction of Cranial Placode Cells From Xenopus Ectoderm by Modulating the Levels of BMP, Wnt, and FGF Signaling
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Specific Induction of Cranial Placode Cells From Xenopus Ectoderm by Modulating the Levels of BMP, Wnt, and FGF Signaling

机译:通过调节BMP,Wnt和FGF信号传导水平,从爪蟾外胚层特异性诱导颅内浆细胞。

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摘要

The neural-epidermal boundary tissues include the neural crest and preplacodal ectoderm (PPE) as primordial constituents. The PPE region is essential for the development of various sensory and endocrine organs, such as the anterior lobe of the pituitary, olfactory epithelium, lens, trigeminal ganglion, and otic vesicles. During gastrulation, a neural region is induced in ectodermal cells that interacts with mesendodermal tissue and responds to several secreted factors. Among them, inhibition of bone morphogenetic protein (BMP) in the presumptive neuroectoderm is essential for the induction of neural regions, and formation of a Wnt and fibroblast growth factor (FGF) signaling gradient along the midline determines anterior-posterior patterning. In this study, we attempted to specifically induce PPE cells from undifferentiated Xenopus cells by regulating BMP, Wnt, and FGF signaling. We showed that the proper level of BMP inhibition with an injection of truncated BMP receptor or treatment with a chemical antagonist triggered the expression of PPE genes. In addition, by varying the amount of injected chordin, we optimized specific expression of the PPE genes. PPE gene expression is increased by adding an appropriate dose of an FGF receptor antagonist. Furthermore, co-injection with either wnt8 or the Wnt inhibitor dkk-1 altered the expression levels of several region-specific genes according to the injected dose. We specifically induced PPE cell differentiation in animal cap cells from early-stage Xenopus embryos by modulating BMP, Wnt, and FGF signaling. This is not the first research on placode induction, but our simple method could potentially be applied to mammalian stem cell systems. (C) 2015 Wiley Periodicals, Inc.
机译:神经-表皮边界组织包括神经c和前胚层外胚层(PPE)作为原始成分。 PPE区对于各种感觉和内分泌器官的发育至关重要,例如垂体的前叶,嗅觉上皮,晶状体,三叉神经节和耳囊。在胃造瘘过程中,在外胚层细胞中诱导了一个神经区域,该区域与中胚层组织相互作用并对几种分泌因子产生反应。其中,抑制推测的神经外胚层中的骨形态发生蛋白(BMP)对于诱导神经区域至关重要,并且沿中线形成Wnt和成纤维细胞生长因子(FGF)信号梯度决定了前后模式。在这项研究中,我们试图通过调节BMP,Wnt和FGF信号传导,从未分化的爪蟾细胞中特异性诱导PPE细胞。我们表明,通过注射截短的BMP受体或用化学拮抗剂治疗,适当的BMP抑制水平会触发PPE基因的表达。另外,通过改变注射的和弦蛋白的量,我们优化了PPE基因的特异性表达。通过添加适当剂量的FGF受体拮抗剂,可以提高PPE基因的表达。此外,根据注射剂量,与wnt8或Wnt抑制剂dkk-1共同注射可改变几种区域特异性基因的表达水平。我们通过调节BMP,Wnt和FGF信号传导,特异性地诱导了非洲爪蟾早期胚胎的动物干细胞中的PPE细胞分化。这不是关于斑块诱导的第一个研究,但是我们的简单方法可以潜在地应用于哺乳动物干细胞系统。 (C)2015年Wiley Periodicals,Inc.

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