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ovo/svb整合无翅和DER信号通路以控制表皮分化。

ovo/svb integrates Wingless and DER pathways to control epidermis differentiation.

作者信息

Payre F, Vincent A, Carreno S

机构信息

Centre de Biologie du Développement, UMR5547, Toulouse, France.

出版信息

Nature. 1999 Jul 15;400(6741):271-5. doi: 10.1038/22330.

Abstract

In Drosophila, as in mammals, epidermal differentiation is controlled by signalling cascades that include Wnt proteins and the ovo/shavenbaby (svb) family of zinc-finger transcription factors. Ovo/svb is a complex gene with two genetic functions corresponding to separate control regions: ovo is required for female germline development and svb for epidermal morphogenesis. In the Drosophila embryo, the ventral epidermis consists of the segmental alternance of two major cell types that produce either naked cuticle or cytoplasmic extrusions known as denticles. Wingless signalling specifies smooth cells that produce naked cuticle, whereas the activation of the Drosophila epidermal growth factor (EGF) receptor (DER) leads to the production of denticles. Here we show that expression of the ovo/svb gene controls the choice between these cell fates. We find that svb is a key selector gene that, cell autonomously, directs cytoskeletal modifications producing the denticle. The DER pathway promotes denticle formation by activating svb expression. Conversely, Wingless promotes the smooth cell fate through the transcriptional repression of svb by the bipartite nuclear factor Armadillo/dTcf. Our data indicate that transcriptional regulation of svb integrates inputs from the Wingless and DER pathways and controls epidermal differentiation.

摘要

在果蝇中,与哺乳动物一样,表皮分化受信号级联控制,这些信号级联包括Wnt蛋白和锌指转录因子的ovo/无毛宝宝(svb)家族。Ovo/svb是一个复杂的基因,具有两种对应于不同控制区域的遗传功能:ovo是雌性生殖系发育所必需的,而svb是表皮形态发生所必需的。在果蝇胚胎中,腹侧表皮由两种主要细胞类型的节段交替组成,这两种细胞类型分别产生裸露的角质层或称为齿的细胞质突起。无翅信号指定产生裸露角质层的光滑细胞,而果蝇表皮生长因子(EGF)受体(DER)的激活导致齿的产生。在这里,我们表明ovo/svb基因的表达控制着这些细胞命运之间的选择。我们发现svb是一个关键的选择基因,它在细胞自主的情况下指导产生齿的细胞骨架修饰。DER途径通过激活svb表达促进齿的形成。相反,无翅通过双组分核因子犰狳/dTcf对svb的转录抑制促进光滑细胞命运。我们的数据表明,svb的转录调控整合了来自无翅和DER途径的输入,并控制表皮分化。

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