首页> 美国卫生研究院文献>The Journal of Neuroscience >Ventral Neural Progenitors Switch toward an Oligodendroglial Fate in Response to Increased Sonic Hedgehog (Shh) Activity: Involvement of Sulfatase 1 in Modulating Shh Signaling in the Ventral Spinal Cord
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Ventral Neural Progenitors Switch toward an Oligodendroglial Fate in Response to Increased Sonic Hedgehog (Shh) Activity: Involvement of Sulfatase 1 in Modulating Shh Signaling in the Ventral Spinal Cord

机译:腹侧神经祖细胞响应于增加的声波刺猬(Shh)活性而转向少突神经胶质命运:硫酸酯酶1参与调节脊髓脊髓Shh信号。

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摘要

In the embryonic chick ventral spinal cord, the initial emergence of oligodendrocytes is a relatively late event that depends on prolonged Sonic hedgehog (Shh) signaling. In this report, we show that specification of oligodendrocyte precursors (OLPs) from ventral Nkx2.2-expressing neural progenitors occurs precisely when these progenitors stop generating neurons, indicating that the mechanism of the neuronal/oligodendroglial switch is a common feature of ventral OLP specification. We further show that an experimental early increase in the concentration of Shh is sufficient to induce premature specification of OLPs at the expense of neuronal genesis indicating that the relative doses of Shh received by ventral progenitors determine whether they become neurons or glia. Accordingly, we observe that the Shh protein accumulates at the apical surface of Nkx2.2-expressing cells just before OLP specification, providing direct evidence that these cells are subjected to a higher concentration of the morphogen when they switch to an oligodendroglial fate. Finally, we show that this abrupt change in Shh distribution is most likely attributable to the timely activity of Sulfatase 1 (Sulf1), a secreted enzym that modulates the sulfation state of heparan sulfate proteoglycans. Sulf1 is expressed in the ventral neuroepithelium just before OLP specification, and we show that its experimental overexpression leads to apical concentration of Shh on neuroepithelial cells, a decisive event for the switch of ventral neural progenitors toward an oligodendroglial fate.
机译:在胚胎小鸡腹侧脊髓中,少突胶质细胞的初始出现是一个相对较晚的事件,这取决于声波刺猬(Shh)信号的延长。在此报告中,我们表明,表达Nkx2.2的腹侧神经祖细胞的少突胶质细胞前体(OLP)规范恰好发生在这些祖细胞停止生成神经元时,这表明神经元/少突神经胶质转换的机制是腹侧OLP规范的共同特征。我们进一步表明,实验性Shh浓度的早期增加足以以神经元发生为代价诱导OLP的过早规范,表明腹侧祖细胞接受的Shh相对剂量决定了它们是否成为神经元或神经胶质。因此,我们观察到Shh蛋白正好在OLP规范之前在表达Nkx2.2的细胞的顶表面积累,提供了直接证据,证明这些细胞在转换成少突胶质细胞命运时会承受较高浓度的吗啡原。最后,我们表明,Shh分布的这种突然变化最有可能归因于硫酸酯酶1(Sulf1)的及时活性,该酶是一种调节硫酸乙酰肝素蛋白聚糖硫酸化状态的分泌酶。 Sulf1正好在OLP规范之前在腹侧神经上皮中表达,我们证明了它的实验过度表达导致Shh在神经上皮细胞上的顶端浓度,这是腹侧神经祖细胞向少突胶质细胞命运转变的决定性事件。

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