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Two different activities of Suppressor of Hairless during wing development in Drosophila.

机译:果蝇翅膀发育过程中无毛抑制子的两种不同活动。

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The Notch pathway plays a crucial and universal role in the assignation of cell fates during development. In Drosophila, Notch is a transmembrane protein that acts as a receptor of two ligands Serrate and delta. The current model of Notch signal transduction proposes that Notch is activated upon binding its ligands and that this leads to the cleavage and release of its intracellular domain (also called Nintra). Nintra translocates to the nucleus where it forms a dimeric transcription activator with the Su(H) protein. In contrast with this activation model, experiments with the vertebrate homologue of Su(H), CBF1, suggest that, in vertebrates, Nintra converts CBF1 from a repressor into an activator. Here we have assessed the role of Su(H) in Notch signalling during the development of the wing of Drosophila. Our results show that, during this process, Su(H) can activate the expression of some Notch target genes and that it can do so without the activation of the Notch pathway or the presence of Nintra. In contrast, the activation of other Notch target genes requires both Su(H) and Nintra, and, in the absence of Nintra, Su(H) acts as a repressor. We also find that the Hairless protein interacts with Notch signalling during wing development and inhibits the activity of Su(H). Our results suggest that, in Drosophila, the activation of Su(H) by Notch involve the release of Su(H) from an inhibitory complex, which contains the Hairless protein. After its release Su(H) can activate gene expression in absence of Nintra.
机译:Notch途径在发育过程中的细胞命运分配中起着至关重要的普遍作用。在果蝇中,Notch是一种跨膜蛋白,可充当两个配体Serrate和delta的受体。当前的Notch信号转导模型提出,Notch在结合其配体后即被激活,并导致其胞内结构域(也称为Nintra)的裂解和释放。 Nintra易位至细胞核,与Su(H)蛋白形成二聚体转录激活因子。与这种激活模型相反,对Su(H)的脊椎动物同源物CBF1进行的实验表明,在脊椎动物中,Nintra将CBF1从阻遏物转化为激活物。在这里,我们评估了果蝇翅膀发育过程中Su(H)在Notch信号中的作用。我们的结果表明,在此过程中,Su(H)可以激活某些Notch靶基因的表达,并且无需激活Notch途径或Nintra即可激活它。相反,其他Notch靶基因的激活需要Su(H)和Nintra,并且在没有Nintra的情况下,Su(H)充当阻遏物。我们还发现,无毛蛋白在机翼发育过程中与Notch信号相互作用,并抑制Su(H)的活性。我们的结果表明,在果蝇中,Notch对Su(H)的激活涉及从抑制复合物中释放Su(H),该复合物中含有无毛蛋白。 Su(H)释放后,在没有Nintra的情况下可以激活基因表达。

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