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首页> 外文期刊>Development >The Fgf8 signal causes cerebellar differentiation by activating the Ras-ERK signaling pathway.
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The Fgf8 signal causes cerebellar differentiation by activating the Ras-ERK signaling pathway.

机译:Fgf8信号通过激活Ras-ERK信号传导途径引起小脑分化。

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The mes/metencephalic boundary (isthmus) is an organizing center for the optic tectum and cerebellum. Fgf8 is accepted as a crucial organizing signal. Previously, we reported that Fgf8b could induce cerebellum in the mesencephalon, while Fgf8a transformed the presumptive diencephalon into mesencephalon. Since lower doses of Fgf8b exerted similar effects to those of Fgf8a, the type difference could be attributed to the difference in the strength of the signal. It is of great interest to uncover mechanisms of signal transduction pathways downstream of the Fgf8 signal in tectal and cerebellar development, and in this report we have concentrated on the Ras-ERK pathway. In normal embryos, extracellular-signal-regulated kinase (ERK) is activated at the site where Fgf8 mRNA is expressed. Fgf8b activated ERK while Fgf8a or a lower dose of Fgf8b did not activate ERK in the mes/metencephalon. Disruption of the Ras-ERK signaling pathway by a dominant negative form of Ras (RasS17N) changed the fate of the metencephalic alar plate from cerebellum to tectum. RasS17N canceled the effects of Fgf8b, while co-transfection of Fgf8a and RasS17N exerted additive effects. Disruption of Fgf8b, not Fgf8a, by siRNA resulted in posterior extension of the Otx2 expression domain. Our results indicate that the presumptive metencephalon receives a strong Fgf8 signal that activates the Ras-ERK pathway and differentiates into the cerebellum.
机译:中脑/中脑边界(峡部)是视器官和小脑的组织中心。 Fgf8被认为是至关重要的组织信号。以前,我们报道了Fgf8b可以诱导中脑的小脑,而Fgf8a则将假定的二脑转化为中脑。由于较低剂量的Fgf8b发挥了与Fgf8a相似的作用,因此类型差异可归因于信号强度的差异。揭示顶盖和小脑发育中Fgf8信号下游信号转导途径的机制引起了极大的兴趣,在本报告中,我们集中于Ras-ERK途径。在正常胚胎中,细胞外信号调节激酶(ERK)在表达Fgf8 mRNA的位点被激活。 Fgf8b激活了ERK,而Fgf8a或较低剂量的Fgf8b并未激活中脑/中脑的ERK。 Ras占主导地位的阴性形式(RasS17N)破坏了Ras-ERK信号通路,改变了中脑阿拉尔板的命运,从小脑变成了顶盖。 RasS17N取消了Fgf8b的作用,而Fgf8a和RasS17N的共转染则产生累加作用。 siRNA破坏Fgf8b而不是Fgf8a导致Otx2表达域向后延伸。我们的研究结果表明推定的中脑神经元会收到一个很强的Fgf8信号,该信号会激活Ras-ERK通路并分化为小脑。

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