Institute of Molecular Life Sciences, University of Zurich, Zurich 8057, Switzerland.
Dev Cell. 2013 Apr 29;25(2):207-19. doi: 10.1016/j.devcel.2013.02.019. Epub 2013 Apr 11.
We created a site-directed UAS-ORF library of 655 growth-regulating genes in Drosophila. This library represents a large collection of genes regulating cell cycle, cell size, and proliferation and will be a valuable resource for studying growth regulation in vivo. By using misexpression of genes, we prevent problems arising from genetic redundancy and can uncover novel gene functions. To validate the usefulness of this library, we screened for Wingless (Wg) pathway components. We used a combination of experimental and bioinformatic approaches to predict candidates and identified three serine/threonine kinases as regulators of Wg signaling. We show that one of these, Nek2, optimizes pathway response by direct phosphorylation of Dishevelled. In addition, we describe functional relations for roughly 5% of all Drosophila genes and identify a large number of genes that regulate cell size, proliferation, and final organ size upon misexpression.
我们在果蝇中创建了一个 655 个生长调节基因的定点 UAS-ORF 文库。这个文库代表了一个调节细胞周期、细胞大小和增殖的大量基因集合,将成为研究体内生长调节的有价值资源。通过使用基因的过表达,我们可以避免遗传冗余带来的问题,并揭示新的基因功能。为了验证这个文库的有用性,我们筛选了 Wingless (Wg) 途径的组成部分。我们使用实验和生物信息学方法的组合来预测候选基因,并鉴定出三种丝氨酸/苏氨酸激酶作为 Wg 信号的调节剂。我们表明,其中之一,Nek2,通过对 Dishevelled 的直接磷酸化来优化途径反应。此外,我们描述了大约 5%的所有果蝇基因的功能关系,并鉴定出大量通过过表达调节细胞大小、增殖和最终器官大小的基因。