首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >SCO-spondin from embryonic cerebrospinal fluid is required for neurogenesis during early brain development
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SCO-spondin from embryonic cerebrospinal fluid is required for neurogenesis during early brain development

机译:早期脑发育过程中神经发生需要胚胎脑脊髓液中的SCO-spondin

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摘要

The central nervous system (CNS) develops from the neural tube, a hollow structure filled with embryonic cerebrospinal fluid (eCSF) and surrounded by neuroepithelial cells. Several lines of evidence suggest that the eCSF contains diffusible factors regulating the survival, proliferation, and differentiation of the neuroepithelium, although these factors are only beginning to be uncovered. One possible candidate as eCSF morphogenetic molecule is SCO-spondin, a large glycoprotein whose secretion by the diencephalic roof plate starts at early developmental stages. In vitro, SCO-spondin promotes neuronal survival and differentiation, but its in vivo function still remains to be elucidated. Here we performed in vivo loss of function experiments for SCO-spondin during early brain development by injecting and electroporating a specific shRNA expression vector into the neural tube of chick embryos. We show that SCO-spondin knock down induces an increase in neuroepithelial cells proliferation concomitantly with a decrease in cellular differentiation toward neuronal lineages, leading to hyperplasia in both the diencephalon and the mesencephalon. In addition, SCO-spondin is required for the correct morphogenesis of the posterior commissure and pineal gland. Because SCO-spondin is secreted by the diencephalon, we sought to corroborate the long-range function of this protein in vitro by performing gain and loss of function experiments on mesencephalic explants. We find that culture medium enriched in SCO-spondin causes an increased neurodifferentiation of explanted mesencephalic region. Conversely, inhibitory antibodies against SCO-spondin cause a reduction in neurodifferentiation and an increase of mitosis when such explants are cultured in eCSF. Our results suggest that SCO-spondin is a crucial eCSF diffusible factor regulating the balance between proliferation and differentiation of the brain neuroepithelial cells.
机译:中枢神经系统(CNS)从神经管发展而来,神经管是充满胚胎性脑脊髓液(eCSF)并被神经上皮细胞包围的中空结构。有几条证据表明,eCSF包含调节神经上皮细胞存活,增殖和分化的可扩散因素,尽管这些因素才刚刚开始被发现。作为eCSF形态发生分子的一种可能的候选药物是SCO-spondin,这是一种大的糖蛋白,其双脑顶板的分泌开始于发育的早期阶段。在体外,SCO-spondin促进神经元的存活和分化,但是其体内功能仍有待阐明。在这里,我们通过将特定的shRNA表达载体注射并电穿孔到雏鸡胚胎的神经管中,在早期大脑发育过程中进行了SCO-spondin的体内功能丧失实验。我们显示,SCO spondin击倒诱导神经上皮细胞增殖的增加与向神经元谱系的细胞分化的减少,导致在间脑和中脑增生。另外,SCO-spondin是正确的后连合和松果体形态发生所必需的。由于SCO-spondin是由间脑分泌的,因此我们试图通过对中脑外植体进行功能增强和丧失实验来证实该蛋白在体外的远距离功能。我们发现,富含SCO-spondin的培养基会导致中脑外植区神经分化的增加。相反地​​,当在eCSF中培养这种外植体时,针对SCO-spondin的抑制性抗体导致神经分化的减少和有丝分裂的增加。我们的结果表明,SCO-spondin是调节脑神经上皮细胞增殖与分化之间平衡的重要eCSF扩散因子。

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