Multiple roles of the Dcdc42 GTPase during wing development in Drosophila melanogaster.

M Baron, V O'Leary, D A Evans, M Hicks, K Hudson
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引用次数: 24

Abstract

The Rho sub-family of GTPases, comprising Rho, Rac and Cdc42. regulates many biological processes, including morphogenesis, cell polarity, migration, the cell cycle and gene expression. It is important to develop genetic approaches to allow the dissection, in vivo, of the mechanisms of GTPase regulation and signal transmission, and their biological consequences. In this regard, wing development in Drosophila melanogaster is an excellent model system. To investigate the functions of the Drosophila Cdc42 GTPase (Dcdc42), we generated phenotypes during wing development, by expression of the dominant-negative N17 and L89 mutants of Dcdc42. We have identified roles for Dcdc42 in wing growth, and in cell fate choice during the development of the wing veins and the peripheral nervous system. Reduction of Dcdc42 signalling following over-expression of Dcdc42N17 resulted in a broader but more diffuse domain characterised by wing-margin sensory bristles. This was correlated with a broadened stripe of wingless expression along the dorsal-ventral boundary of third-instar wing imaginal discs. Together with genetic interactions with loss- and gain-of-function Notch alleles, these data support a role for wild-type Dcdc42 as a negative regulator of Notch signalling.

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Dcdc42 GTPase在果蝇翅膀发育过程中的多重作用。
GTPases的Rho亚家族,包括Rho, Rac和Cdc42。调控许多生物过程,包括形态发生、细胞极性、迁移、细胞周期和基因表达。重要的是要发展遗传学方法,允许解剖,体内的GTPase调节和信号传递的机制,以及它们的生物学后果。在这方面,果蝇的翅膀发育是一个很好的模式系统。为了研究果蝇Cdc42 GTPase (Dcdc42)的功能,我们通过表达Dcdc42的显性阴性N17和L89突变体,在翅膀发育过程中产生表型。我们已经确定了Dcdc42在翅膀生长中的作用,以及在翼静脉和周围神经系统发育过程中细胞命运的选择。Dcdc42N17过表达后,Dcdc42信号传导减少,导致更广泛但更分散的区域,以翼缘感觉刚毛为特征。这与沿三龄翼影像盘背腹边界的无翼表达条纹变宽有关。结合与功能缺失和功能获得的Notch等位基因的遗传相互作用,这些数据支持野生型Dcdc42作为Notch信号传导的负调节因子的作用。
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