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Specific regions within the embryonic midbrain and cerebellum require different levels of FGF signaling during development

机译:胚胎中脑和小脑内的特定区域在发育过程中需要不同水平的FGF信号传导

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摘要

Prospective midbrain and cerebellum formation are coordinated by FGF ligands produced by the isthmic organizer. Previous studies have suggested that midbrain and cerebellum development require different levels of FGF signaling. However, little is known about the extent to which specific regions within these two parts of the brain differ in their requirement for FGF signaling during embryogenesis. Here, we have explored the effects of inhibiting FGF signaling within the embryonic mouse midbrain (mesencephalon) and cerebellum (rhombomere 1) by misexpressing sprouty2 (Spry2) from an early stage. We show that such Spry2 misexpression moderately reduces FGF signaling, and that this reduction causes cell death in the anterior mesencephalon, the region furthest from the source of FGF ligands. Interestingly, the remaining mesencephalon cells develop into anterior midbrain, indicating that a low level of FGF signaling is sufficient to promote only anterior midbrain development. Spry2 misexpression also affects development of the vermis, the part of the cerebellum that spans the midline. We found that, whereas misexpression of Spry2 alone caused loss of the anterior vermis, reducing FGF signaling further, by decreasing Fgf8 gene dose, resulted in loss of the entire vermis. Our data suggest that cell death is not responsible for vermis loss, but rather that it fails to develop because reducing FGF signaling perturbs the balance between vermis and roof plate development in rhombomere 1. We suggest a molecular explanation for this phenomenon by providing evidence that FGF signaling functions to inhibit the BMP signaling that promotes roof plate development.
机译:预期的中脑和小脑的形成由地峡组织者产生的FGF配体协调。先前的研究表明中脑和小脑发育需要不同水平的FGF信号传导。然而,关于这两个部分的特定区域在胚胎发生过程中对FGF信号的需求差异的程度所知甚少。在这里,我们已经探索了通过从早期阶段错误地表达出budy2(Spry2)来抑制胚胎小鼠中脑(mesencephalon)和小脑(rhombomere 1)内FGF信号的作用。我们显示,此类Spry2错误表达可适度降低FGF信号传导,并且这种降低会导致前中脑(距FGF配体来源最远的区域)中的细胞死亡。有趣的是,其余的中脑细胞发育成中脑前部,表明低水平的FGF信号传导足以促进中脑前部的发育。 Spry2的错误表达也会影响the的发展,ver是跨越中线的小脑部分。我们发现,虽然单独表达Spry2会导致前loss骨丢失,但通过降低Fgf8基因剂量进一步降低FGF信号传导会导致整个ver骨丢失。我们的数据表明,细胞死亡不是造成角质层丢失的原因,而是它未能发展,因为减少FGF信号干扰了菱形1的角质层和屋顶板发育之间的平衡。我们通过提供证据证明FGF来对此现象进行分子解释信号传导功能可抑制促进屋顶发展的BMP信号传导。

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