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果蝇眼中,卷曲蛋白对Notch信号通路的调控使细胞命运极化。

Frizzled regulation of Notch signalling polarizes cell fate in the Drosophila eye.

作者信息

Cooper M T, Bray S J

机构信息

Department of Anatomy, University of Cambridge, UK.

出版信息

Nature. 1999 Feb 11;397(6719):526-30. doi: 10.1038/17395.

Abstract

The Drosophila eye, a paradigm for epithelial organization, is highly polarized with mirror-image symmetry about the equator. The R3 and R4 photoreceptors in each ommatidium are vital in this polarity; they adopt asymmetrical positions in adult ommatidia and are the site of action for several essential genes. Two such genes are frizzled (fz) and dishevelled (dsh), the products of which are components of a signalling pathway required in R3, and which are thought to be activated by a diffusible signal. Here we show that the transmembrane receptor Notch is required downstream of dsh in R3/R4 for them to adopt distinct fates. By using an enhancer for the Notch target gene Enhancer of split mdelta, we show that Notch becomes activated specifically in R4. We propose that Fz/Dsh promotes activity of the Notch ligand Delta and inhibits Notch receptor activity in R3, creating a difference in Notch signalling capacity between R3 and R4. Subsequent feedback in the Notch pathway ensures that this difference becomes amplified. This interplay between Fz/Dsh and Notch indicates that polarity is established through local comparisons between two cells and explains how a signal from one position (for example, the equator in the eye) could be interpreted by all ommatidia in the field.

摘要

果蝇的眼睛是上皮组织的一个范例,它高度极化,围绕赤道呈镜像对称。每个小眼内的R3和R4光感受器在这种极性中至关重要;它们在成年小眼内占据不对称位置,并且是几个关键基因的作用位点。其中两个这样的基因是卷曲蛋白(fz)和平行失调蛋白(dsh),它们的产物是R3中所需信号通路的组成部分,并且被认为由一种可扩散信号激活。我们在此表明,跨膜受体Notch在R3/R4中dsh的下游发挥作用,使它们具有不同的命运。通过使用Notch靶基因分裂增强子mdelta的一个增强子,我们表明Notch在R4中特异性激活。我们提出,Fz/Dsh促进Notch配体Delta的活性,并抑制R3中的Notch受体活性,从而在R3和R4之间产生Notch信号传导能力的差异。Notch通路中的后续反馈确保这种差异被放大。Fz/Dsh与Notch之间的这种相互作用表明,极性是通过两个细胞之间的局部比较建立的,并解释了来自一个位置(例如眼睛中的赤道)的信号如何被该区域内的所有小眼解读。

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