Notochord-derived Sonic Hedgehog (Shh) is essential for dorsoventral patterning of the overlying neural tube. Increasing concentration and duration of Shh signal induces progenitors to acquire progressively more ventral fates. We show that Notch signalling augments the response of neuroepithelial cells to Shh, leading to the induction of higher expression levels of the Shh target gene Ptch1 and subsequently induction of more ventral cell fates. Furthermore, we demonstrate that activated Notch1 leads to pronounced accumulation of Smoothened (Smo) within primary cilia and elevated levels of full-length Gli3. Finally, we show that Notch activity promotes longer primary cilia both in vitro and in vivo. Strikingly, these Notch-regulated effects are Shh independent. These data identify Notch signalling as a novel modulator of Shh signalling that acts mechanistically via regulation of ciliary localisation of key components of its transduction machinery.
A conserved role for Notch signaling in priming the cellular response to Shh through ciliary localisation of the key Shh transducer Smo.
Notch 信号在启动细胞对 Shh 的反应中发挥着保守作用,其机制是通过关键 Shh 转导蛋白 Smo 的纤毛定位
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作者:Stasiulewicz Magdalena, Gray Shona D, Mastromina Ioanna, Silva Joana C, Björklund Mia, Seymour Philip A, Booth David, Thompson Calum, Green Richard J, Hall Emma A, Serup Palle, Dale J Kim
| 期刊: | Development | 影响因子: | 3.600 |
| 时间: | 2015 | 起止号: | 2015 Jul 1; 142(13):2291-303 |
| doi: | 10.1242/dev.125237 | 研究方向: | 细胞生物学 |
| 信号通路: | Notch | ||
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