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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A Gain-of-Function Screen for Genes That Influence Axon Guidance Identifies the NF-?B Protein Dorsal and Reveals a Requirement for the Kinase Pelle in Drosophila Photoreceptor Axon Targeting
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A Gain-of-Function Screen for Genes That Influence Axon Guidance Identifies the NF-?B Protein Dorsal and Reveals a Requirement for the Kinase Pelle in Drosophila Photoreceptor Axon Targeting

机译:影响轴突指导的基因的功能增益屏幕识别NF-ΔB蛋白背侧,并揭示了果蝇感光受体轴突靶向激酶颗粒的需求。

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To identify novel regulators of nervous system development, we used the GAL4-UAS misexpression system in Drosophila to screen for genes that influence axon guidance in developing embryos. We mobilized the Gene Search (GS) P element and identified 42 lines with insertions in unique loci, including leak/roundabout2 , which encodes an axon guidance receptor and confirms the utility of our screen. The genes we identified encode proteins of diverse classes, some acting near the cell surface and others in the cytoplasm or nucleus. We found that one GS line drove misexpression of the NF-κB transcription factor Dorsal, causing motor axons to bypass their correct termination sites. In the developing visual system, Dorsal misexpression also caused photoreceptor axons to reach incorrect positions within the optic lobe. This mistargeting occurred without observable changes of cell fate and correlated with localization of ectopic Dorsal in distal axons. We found that Dorsal and its inhibitor Cactus are expressed in photoreceptors, though neither was required for axon targeting. However, mutation analyses of genes known to act upstream of Dorsal revealed a requirement for the interleukin receptor-associated kinase family kinase Pelle for layer-specific targeting of photoreceptor axons, validating our screen as a means to identify new molecular determinants of nervous system development in vivo .
机译:为了确定神经系统发育的新型调节剂,我们在果蝇中使用了GAL4-UAS错误表达系统来筛选影响发育中的轴突指导的基因。我们动员了基因搜索(GS)P元件,并鉴定了42条在独特位点插入的细胞系,包括泄漏/回旋区2,其编码轴突导向受体并确认了我们的筛查的实用性。我们鉴定出的基因编码不同种类的蛋白质,有些作用于细胞表面,而另一些作用于细胞质或细胞核。我们发现一条GS线驱动NF-κB转录因子Dorsal的错误表达,导致运动轴突绕过其正确的终止位点。在发育中的视觉系统中,背侧错误表达还导致感光轴突到达视神经瓣内的错误位置。这种误导发生时没有细胞命运的明显变化,并与远端轴突中异位背侧的定位相关。我们发现背侧及其抑制剂仙人掌在光感受器中表达,尽管轴突靶向均不需要。然而,对已知在背侧上游起作用的基因的突变分析显示,白介素受体相关的激酶家族激酶Pelle需要对光感受器轴突进行层特异性靶向,这验证了我们的筛选方法可作为鉴定神经系统发育新分子决定因素的一种方法体内。

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