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影响果蝇翅膀背腹边界Notch激活的反馈机制。

Feed-back mechanisms affecting Notch activation at the dorsoventral boundary in the Drosophila wing.

作者信息

de Celis J F, Bray S

机构信息

Department of Genetics, University of Cambridge, UK.

出版信息

Development. 1997 Sep;124(17):3241-51. doi: 10.1242/dev.124.17.3241.

Abstract

Notch function is required at the dorsoventral boundary of the developing Drosophila wing for its normal growth and patterning. We find that clones of cells expressing either Notch or its ligands Delta and Serrate in the wing mimic Notch activation at the dorsoventral boundary producing non-autonomous effects on proliferation, and activating expression of the target genes E(spl), wingless and cut. The analysis of these clones reveals several mechanisms important for maintaining and delimiting Notch function at the dorsoventral boundary. First, Notch activation in the wing leads to increased production of Delta and Serrate generating a positive feedback loop that maintains signalling. We propose that during normal development, wingless co-operates with Notch to reinforce this positive feedback and Cut, which is activated by Notch at late stages, acts antagonistically to prevent Delta and Serrate expression. Second, high levels of Delta and Serrate have a dominant negative effect on Notch, so that at late stages Notch can only be activated in cells next to the ligand-producing cells. Thus the combined effects of Notch and its target genes cut and wingless regulate the expression of Notch ligands which restrict Notch activity to the dorsoventral boundary.

摘要

在果蝇翅膀发育的背腹边界,Notch功能对于其正常生长和模式形成是必需的。我们发现,在翅膀中表达Notch或其配体Delta和Serrate的细胞克隆模拟了背腹边界处的Notch激活,对增殖产生非自主效应,并激活靶基因E(spl)、无翅基因和cut的表达。对这些克隆的分析揭示了几种对于在背腹边界维持和界定Notch功能很重要的机制。首先,翅膀中的Notch激活导致Delta和Serrate的产生增加,从而形成一个维持信号传导的正反馈回路。我们提出,在正常发育过程中,无翅基因与Notch协同作用以加强这种正反馈,而在后期被Notch激活的Cut则起拮抗作用以阻止Delta和Serrate的表达。其次,高水平的Delta和Serrate对Notch具有显性负效应,因此在后期Notch只能在紧邻产生配体细胞的细胞中被激活。因此,Notch及其靶基因cut和无翅基因的综合作用调节Notch配体的表达,从而将Notch活性限制在背腹边界。

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