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Notch和无翅基因调节果蝇翅膀中细胞对Hedgehog信号的反应。

Notch and Wingless modulate the response of cells to Hedgehog signalling in the Drosophila wing.

作者信息

Glise Bruno, Jones D Leanne, Ingham Philip W

机构信息

MRC Intercellular Signalling Group, Centre for Developmental Genetics, University School of Medicine and Biomedical Science, Sheffield, United Kingdom.

出版信息

Dev Biol. 2002 Aug 1;248(1):93-106. doi: 10.1006/dbio.2002.0720.

Abstract

During Drosophila wing development, Hedgehog (Hh) signalling is required to pattern the imaginal disc epithelium along the anterior-posterior (AP) axis. The Notch (N) and Wingless (Wg) signalling pathways organise the dorsal-ventral (DV) axis, including patterning along the presumptive wing margin. Here, we describe a functional hierarchy of these signalling pathways that highlights the importance of competing influences of Hh, N, and Wg in establishing gene expression domains. Investigation of the modulation of Hh target gene expression along the DV axis of the wing disc revealed that collier/knot (col/kn), patched (ptc), and decapentaplegic (dpp) are repressed at the DV boundary by N signalling. Attenuation of Hh signalling activity caused by loss of fused function results in a striking down-regulation of col, ptc, and engrailed (en) symmetrically about the DV boundary. We show that this down-regulation depends on activity of the canonical Wg signalling pathway. We propose that modulation of the response of cells to Hh along the future proximodistal (PD) axis is necessary for generation of the correctly patterned three-dimensional adult wing. Our findings suggest a paradigm of repression of the Hh response by N and/or Wnt signalling that may be applicable to signal integration in vertebrate appendages.

摘要

在果蝇翅膀发育过程中,刺猬信号通路(Hh)对于沿前后轴(AP)对成虫盘上皮进行模式化是必需的。Notch信号通路(N)和无翅信号通路(Wg)组织背腹轴(DV),包括沿假定的翅缘进行模式化。在这里,我们描述了这些信号通路的功能层次结构,突出了Hh、N和Wg的竞争影响在建立基因表达域中的重要性。对沿翅盘背腹轴的Hh靶基因表达调控的研究表明,collier/knot(col/kn)、patched(ptc)和decapentaplegic(dpp)在背腹边界处被N信号通路抑制。由fused功能丧失导致的Hh信号活性减弱,会导致col、ptc和engrailed(en)围绕背腹边界对称地下调。我们表明这种下调依赖于经典Wg信号通路的活性。我们提出,沿未来的近远轴(PD)对细胞对Hh的反应进行调控,对于生成正确模式化的三维成虫翅膀是必要的。我们的发现提示了一种由N和/或Wnt信号通路抑制Hh反应的模式,这可能适用于脊椎动物附肢中的信号整合。

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