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Wnt/BMP signal integration regulates the balance between proliferation and differentiation of neuroepithelial cells in the dorsal spinal cord

机译:Wnt / BMP信号整合调节脊髓背神经上皮细胞增殖与分化之间的平衡

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摘要

Multiple signaling pathways regulate proliferation and differentiation of neural progenitor cells during early development of the central nervous system (CNS). In the spinal cord, dorsal signaling by bone morphogenic protein (BMP) acts primarily as a patterning signal, while canonical Wnt signaling promotes cell cycle progression in stem and progenitor cells. However, overexpression of Wnt factors or, as shown here, stabilization of the Wnt signaling component beta-catenin has a more prominent effect in the ventral than in the dorsal spinal cord, revealing local differences in signal interpretation. Intriguingly, Wnt signaling is associated with BMP signal activation in the dorsal spinal cord. This points to a spatially restricted interaction between these pathways. Indeed, BMP counteracts proliferation promoted by Wnt in spinal cord neuroepithelial cells. Conversely, Wnt antagonizes BMP-dependent neuronal differentiation. Thus, a mutually inhibitory crosstalk between Wnt and BMP signaling controls the balance between proliferation and differentiation. A model emerges in which dorsal Wnt/BMP signal integration links growth and patterning, thereby maintaining undifferentiated and slow-cycling neural progenitors that form the dorsal confines of the developing spinal cord.
机译:在中枢神经系统(CNS)的早期发育过程中,多种信号通路调节神经祖细胞的增殖和分化。在脊髓中,骨形态发生蛋白(BMP)的背侧信号传导主要充当模式信号,而经典Wnt信号传导则促进干细胞和祖细胞的细胞周期进程。但是,Wnt因子的过表达或Wnt信号成分β-catenin的稳定在腹侧比在脊髓背侧具有更突出的作用,从而揭示了信号解释的局部差异。有趣的是,Wnt信号传导与背脊髓中的BMP信号激活有关。这表明这些途径之间存在空间受限的相互作用。实际上,BMP抵消了Wnt在脊髓神经上皮细胞中促进的增殖。相反,Wnt拮抗BMP依赖的神经元分化。因此,Wnt和BMP信号之间的相互抑制性串扰控制了增殖和分化之间的平衡。出现了一个模型,其中背侧Wnt / BMP信号整合将生长和模式联系在一起,从而保持未分化和缓慢循环的神经祖细胞,这些神经祖细胞形成了发育中的脊髓的背侧区域。

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