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针对黑腹果蝇Notch信号通路功能的遗传修饰因子进行的一个EP过表达筛选。

An EP overexpression screen for genetic modifiers of Notch pathway function in Drosophila melanogaster.

作者信息

Hall Lauren E, Alexander Shauna J, Chang Michael, Woodling Nathaniel S, Yedvobnick Barry

机构信息

Department of Biology, Emory University, Atlanta, GA 30322, USA.

出版信息

Genet Res. 2004 Apr;83(2):71-82. doi: 10.1017/s0016672304006731.

Abstract

The Notch pathway comprises a signal transduction cascade required for the proper formation of multiple tissues during metazoan development. Originally described in Drosophila for its role in nervous system formation, the pathway has attracted much wider interest owing to its fundamental roles in a range of developmental and disease-related processes. Despite extensive analysis, Notch signaling is not completely understood and it appears that additional components of the pathway remain to be identified and characterized. Here, we describe a novel genetic strategy to screen for additional Notch pathway genes. The strategy combines partial loss of function for pathway activity with Enhancer-promoter (EP)-induced overexpression of random loci across the dorsoventral wing margin. Mastermind (Mam) is a nuclear component of the Notch signaling cascade. Using a GAL4-UAS-driven dominant-negative form of Mam, we created a genotype that exhibits a completely penetrant dominant wing-nicking phenotype. This phenotype was assayed for enhancement or suppression after outcrossing to several thousand EP lines. The screen identified known components or modifiers of Notch pathway function, as well as several potential new components. Our results suggest that a genetic screen that combines partial loss of function with random gene overexpression might be a useful strategy in the analysis of developmental pathways.

摘要

Notch信号通路包含一个信号转导级联反应,该反应是后生动物发育过程中多种组织正常形成所必需的。该通路最初是在果蝇中因其在神经系统形成中的作用而被描述的,由于其在一系列发育和疾病相关过程中的基础作用,它引起了更广泛的关注。尽管进行了广泛的分析,但Notch信号传导仍未被完全理解,而且该通路的其他成分似乎仍有待鉴定和表征。在这里,我们描述了一种筛选Notch信号通路其他基因的新遗传策略。该策略将通路活性的部分功能丧失与增强子-启动子(EP)诱导的背腹翅边缘随机位点的过表达相结合。Mastermind(Mam)是Notch信号级联反应的一个核成分。我们使用GAL4-UAS驱动的Mam显性负性形式,创建了一种表现出完全显性翅刻痕表型的基因型。将该表型与数千个EP品系进行杂交后,检测其增强或抑制情况。该筛选鉴定出了Notch信号通路功能的已知成分或调节因子,以及几个潜在的新成分。我们的结果表明,将部分功能丧失与随机基因过表达相结合的遗传筛选可能是分析发育通路的一种有用策略。

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