首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Sonic hedgehog promotes neuronal differentiation of murine spinal cord precursors and collaborates with neurotrophin 3 to induce Islet-1.
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Sonic hedgehog promotes neuronal differentiation of murine spinal cord precursors and collaborates with neurotrophin 3 to induce Islet-1.

机译:声波刺猬可促进鼠脊髓前体的神经元分化,并与Neurotrophin 3协同诱导Islet-1。

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摘要

Sonic hedgehog (Shh) is strongly implicated in the development of ventral structures in the nervous system. Addition of Sonic hedgehog protein to chick spinal cord explants induces floor plate and motoneuron development. Whether Shh acts directly to induce these cell types or whether their induction is mediated by additional factors is unknown. To further investigate the role of Shh in spinal neuron development, we have used low-density cultures of murine spinal cord precursor cells. Shh stimulated neuronal differentiation; however, it did not increase the proportion of neurons expressing the first postmitotic motoneuron marker Islet-1. Moreover, Shh did induce Islet-1 expression in neural tube explants, suggesting that it acts in combination with neural tube factors to induce motoneurons. Another factor implicated in motoneuron development is neurotrophin 3 (NT3), and when assayed in isolated precursor cultures, it had no effect on Islet-1 expression. However, the combination of N-terminal Shh and NT3 induced Islet-1 expression in the majority of neurons in low-density cultures of caudal intermediate neural plate. Furthermore, in explant cultures, Shh-mediated Islet-1 expression was blocked by an anti-NT3 antibody. Previous studies have shown expression of NT3 in the region of motoneuron differentiation and that spinal fusimotor neurons are lost in NT3 knock-out animals. Taken together, these findings suggest that Shh can act directly on spinal cord precursors to promote neuronal differentiation, but induction of Islet-1 expression is regulated by factors additional to Shh, including NT3.
机译:声波刺猬(Shh)与神经系统腹侧结构的发展密切相关。将Sonic刺猬蛋白添加到鸡脊髓外植体会诱导底板和运动神经元发育。 Shh是否直接发挥作用来诱导这些细胞类型还是它们的诱导是否由其他因素介导尚不清楚。为了进一步研究Shh在脊髓神经元发育中的作用,我们使用了鼠脊髓前体细胞的低密度培养。嘘刺激神经元分化;但是,它并没有增加表达第一个有丝分裂后运动神经元标记Islet-1的神经元的比例。此外,Shh确实诱导了神经管外植体中Islet-1的表达,这表明它与神经管因子一起诱导运动神经元。涉及运动神经元发育的另一个因素是神经营养蛋白3(NT3),当在分离的前体培养物中进行测定时,它对Islet-1的表达没有影响。然而,N-末端Shh和NT3的组合在尾部中间神经板低密度培养物中诱导了大多数神经元中Islet-1的表达。此外,在外植体培养物中,Shh介导的Islet-1表达被抗NT3抗体阻断。先前的研究表明NT3在运动神经元分化区域表达,并且在NT3基因敲除动物中丧失了脊髓融合运动神经元。综上所述,这些发现表明,Shh可以直接作用于脊髓前体以促进神经元分化,但是Islet-1表达的诱导受Shh以外的其他因子(包括NT3)的调节。

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