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Sequential Notch Signalling at the Boundary of Fringe Expressing and Non-Expressing Cells

机译:连续Notch信号在边缘的边界表达和非表达细胞

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摘要

Wing development in Drosophila requires the activation of Wingless (Wg) in a small stripe along the boundary of Fringe (Fng) expressing and non-expressing cells (FB), which coincides with the dorso-ventral (D/V) boundary of the wing imaginal disc. The expression of Wg is induced by interactions between dorsal and ventral cells mediated by the Notch signalling pathway. It appears that mutual signalling from dorsal to ventral and ventral to dorsal cells by the Notch ligands Serrate (Ser) and Delta (Dl) respectively establishes a symmetric domain of Wg that straddles the D/V boundary. The directional signalling of these ligands requires the modification of Notch in dorsal cells by the glycosyltransferase Fng and is based on the restricted expression of the ligands with Ser expression to the dorsal and that of Dl to the ventral side of the wing anlage. In order to further investigate the mechanism of Notch signalling at the FB, we analysed the function of Fng, Ser and Dl during wing development at an ectopic FB and at the D/V boundary. We find that Notch signalling is initiated in an asymmetric fashion on only one side of the FB. During this initial asymmetric phase, only one ligand is required, with Ser initiating Notch-signalling at the D/V and Dl at the ectopic FB. Furthermore, our analysis suggests that Fng has also a positive effect on Ser signalling. Because of these additional properties, differential expression of the ligands, which has been a prerequisite to restrict Notch activation to the FB in the current model, is not required to restrict Notch signalling to the FB.
机译:果蝇的机翼发育需要沿表达(Fng)和未表达细胞(FB)的边缘的小条纹激活无翅(Wg),这与机翼的背腹(D / V)边界重合虚盘。 Wg的表达是由Notch信号通路介导的背侧和腹侧细胞之间的相互作用诱导的。看来,Notch配体Serrate(Ser)和Delta(D1)分别从背侧到腹侧和腹侧到背侧细胞的相互信号传导建立了横跨D / V边界的Wg对称域。这些配体的定向信号传导需要通过糖基转移酶Fng修饰背侧细胞中的Notch,并且基于配体的限制性表达,其中Ser向背侧表达,而D1向翼侧腹侧表达。为了进一步研究在Notch在FB处的信号传导机制,我们分析了Fng,Ser和Dl在机翼发育过程中在异位FB和D / V边界处的功能。我们发现,Notch信号仅在FB的一侧以非对称方式启动。在该初始不对称阶段期间,仅需要一个配体,其中Ser在D / V处启动Notch信号传递,在异位FB处启动D1信号。此外,我们的分析表明Fng对Ser信号传导也具有积极作用。由于具有这些附加属性,因此不需要将Notch信号限制在FB上,而将配体的差异表达作为限制Notch激活到FB的先决条件。

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    Tobias Troost; Thomas Klein;

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  • 年(卷),期 -1(7),11
  • 年度 -1
  • 页码 e49007
  • 总页数 16
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