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脂肪、四关节、腊肠和达克斯在翅膀从远端到近端信号传导中的作用。

Action of fat, four-jointed, dachsous and dachs in distal-to-proximal wing signaling.

作者信息

Cho Eunjoo, Irvine Kenneth D

机构信息

Howard Hughes Medical Institute, Waksman Institute and Department of Molecular Biology and Biochemistry, Rutgers The State University of New Jersey, Piscataway, NJ 08854, USA.

出版信息

Development. 2004 Sep;131(18):4489-500. doi: 10.1242/dev.01315.

Abstract

In the Drosophila wing, distal cells signal to proximal cells to induce the expression of Wingless, but the basis for this distal-to-proximal signaling is unknown. Here, we show that three genes that act together during the establishment of tissue polarity, fat, four-jointed and dachsous, also influence the expression of Wingless in the proximal wing. fat is required cell autonomously by proximal wing cells to repress Wingless expression, and misexpression of Wingless contributes to proximal wing overgrowth in fat mutant discs. Four-jointed and Dachsous can influence Wingless expression and Fat localization non-autonomously, consistent with the suggestion that they influence signaling to Fat-expressing cells. We also identify dachs as a gene that is genetically required downstream of fat, both for its effects on imaginal disc growth and for the expression of Wingless in the proximal wing. Our observations provide important support for the emerging view that Four-jointed, Dachsous and Fat function in an intercellular signaling pathway, identify a normal role for these proteins in signaling interactions that regulate growth and patterning of the proximal wing, and identify Dachs as a candidate downstream effector of a Fat signaling pathway.

摘要

在果蝇翅膀中,远端细胞向近端细胞发出信号以诱导无翅基因(Wingless)的表达,但这种从远端到近端信号传导的基础尚不清楚。在这里,我们表明在组织极性建立过程中共同起作用的三个基因,即脂肪基因(fat)、四关节基因(four-jointed)和 Dachsous 基因,也会影响近端翅膀中无翅基因的表达。近端翅膀细胞自主需要脂肪基因来抑制无翅基因的表达,并且无翅基因的错误表达会导致脂肪突变体翅盘中近端翅膀过度生长。四关节基因和 Dachsous 基因可以非自主地影响无翅基因的表达和脂肪蛋白的定位,这与它们影响向表达脂肪蛋白的细胞发出信号的观点一致。我们还确定 Dachs 基因是脂肪基因下游在遗传上所必需的一个基因,它对于其对成虫盘生长的影响以及近端翅膀中无翅基因的表达均是必需的。我们的观察结果为以下新出现的观点提供了重要支持:四关节基因、Dachsous 基因和脂肪基因在细胞间信号传导途径中发挥作用,确定了这些蛋白质在调节近端翅膀生长和模式形成的信号相互作用中的正常作用,并确定 Dachs 基因是脂肪信号通路的候选下游效应器。

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