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Genetic dissection of neural circuits by Tol2 transposon-mediated Gal4 gene and enhancer trapping in zebrafish

机译:Tol2转座子介导的Gal4基因对神经回路的遗传解剖及斑马鱼的增强子捕获

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摘要

Targeted gene expression is a powerful approach to study the function of genes and cells in vivo. In Drosophila, the P element-mediated Gal4-UAS method has been successfully used for this purpose. However, similar methods have not been established in vertebrates. Here we report the development of a targeted gene expression methodology in zebrafish based on the Tol2 transposable element and its application to the functional study of neural circuits. First, we developed gene trap and enhancer trap constructs carrying an engineered yeast Gal4 transcription activator (Gal4FF) and transgenic reporter fish carrying the GFP or the RFP gene downstream of the Gal4 recognition sequence (UAS) and showed that the Gal4FF can activate transcription through UAS in zebrafish. Second, by using this Gal4FF-UAS system, we performed large-scale screens and generated a large collection of fish lines that expressed Gal4FF in specific tissues, cells, and organs. Finally, we developed transgenic effector fish carrying the tetanus toxin light chain (TeTxLC) gene downstream of UAS, which is known to block synaptic transmission. We crossed the Gal4FF fish with the UAS:TeTxLC fish and analyzed double transgenic embryos for defects in touch response. From this analysis, we discovered that targeted expression of TeTxLC in distinct populations of neurons in the brain and the spinal cord caused distinct abnormalities in the touch response behavior. These studies illustrate that our Gal4FF gene trap and enhancer trap methods should be an important resource for genetic analysis of neuronal functions and behavior in vertebrates.
机译:靶向基因表达是研究体内基因和细胞功能的有力方法。在果蝇中,P元素介导的Gal4-UAS方法已成功用于此目的。但是,在脊椎动物中尚未建立类似的方法。在这里,我们报告了基于Tol2转座因子的斑马鱼靶向基因表达方法的发展及其在神经回路功能研究中的应用。首先,我们开发了带有工程酵母Gal4转录激活因子(Gal4FF)的基因陷阱和增强子陷阱构建体,以及在Gal4识别序列(UAS)下游带有GFP或RFP基因的转基因报告鱼,并证明Gal4FF可以通过UAS激活转录在斑马鱼。其次,通过使用此Gal4FF-UAS系统,我们进行了大规模筛选,并生成了大量在特定组织,细胞和器官中表达Gal4FF的鱼系。最后,我们开发了在UAS下游携带破伤风毒素轻链(TeTxLC)基因的转基因效应鱼,已知该基因可阻断突触传递。我们将Gal4FF鱼与UAS:TeTxLC鱼杂交,并分析了双转基因胚胎在触觉响应方面的缺陷。从此分析中,我们发现TeTxLC在大脑和脊髓的不同神经元群体中的靶向表达导致了触摸响应行为的明显异常。这些研究表明,我们的Gal4FF基因捕获和增强子捕获方法应该是对脊椎动物神经元功能和行为进行遗传分析的重要资源。

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