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无翅基因和刺猬基因通过调节短程信号的产生来塑造果蝇的齿带。

Wingless and Hedgehog pattern Drosophila denticle belts by regulating the production of short-range signals.

作者信息

Alexandre C, Lecourtois M, Vincent J

机构信息

National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, UK.

出版信息

Development. 1999 Dec;126(24):5689-98. doi: 10.1242/dev.126.24.5689.

Abstract

The secreted proteins Wingless and Hedgehog are essential to the elaboration of the denticle pattern in the epidermis of Drosophila embryos. We show that signaling by Wingless and Hedgehog regulates the expression of veinlet (rhomboid) and Serrate, two genes expressed in prospective denticle belts. Thus, Serrate and veinlet (rhom) partake in the last layer of the segmentation cascade. Ultimately, Wingless, Hedgehog, Veinlet (an indirect activator of the Egfr) and Serrate (an activator of Notch) are expressed in non-overlapping narrow stripes. The interface between any two stripes allows a reliable prediction of individual denticle types and polarity suggesting that contact-dependent signaling modulates individual cell fates. Attributes of a morphogen can be ascribed to Hedgehog in this system. However, no single morphogen organises the whole denticle pattern.

摘要

分泌蛋白无翅(Wingless)和刺猬索尼克(Hedgehog)对于果蝇胚胎表皮中齿状突起模式的形成至关重要。我们发现,无翅和刺猬索尼克的信号传导调节了小静脉(菱形)和锯齿状(Serrate)的表达,这两个基因在前体齿状带中表达。因此,锯齿状和小静脉(菱形)参与了分节级联反应的最后一层。最终,无翅、刺猬索尼克、小静脉(表皮生长因子受体的间接激活剂)和锯齿状(Notch的激活剂)在不重叠的窄条纹中表达。任意两条条纹之间的界面能够可靠地预测单个齿状突起的类型和极性,这表明接触依赖性信号传导调节了单个细胞的命运。在这个系统中,刺猬索尼克具有形态发生素的特性。然而,没有单一的形态发生素能够组织整个齿状突起模式。

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