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Tol2 介导的 Gal4-UAS 基因和增强子捕获方法在斑马鱼中的应用。

The Tol2-mediated Gal4-UAS method for gene and enhancer trapping in zebrafish.

机构信息

Division of Molecular and Developmental Biology, National Institute of Genetics, 1111 Yata, Mishima, Shizuoka 411-8540, Japan.

出版信息

Methods. 2009 Nov;49(3):275-81. doi: 10.1016/j.ymeth.2009.01.004. Epub 2009 Feb 3.

Abstract

The Gal4-UAS system provides powerful tools to analyze the function of genes and cells in vivo and has been extensively employed in Drosophila. The usefulness of this approach relies on the P element-mediated Gal4 enhancer trapping, which can efficiently generate transgenic fly lines expressing Gal4 in specific cells. Similar approaches, however, had not been developed in vertebrate systems due to the lack of an efficient transgenesis method. We have been developing transposon techniques by using the madaka fish Tol2 element. Taking advantage of its ability to generate genome-wide insertions, we developed the Gal4 gene trap and enhancer trap methods in zebrafish that enabled us to create various transgenic fish expressing Gal4 in specific cells. The Gal4-expressing cells can be visualized and manipulated in vivo by crossing the transgenic Gal4 lines with transgenic lines carrying various reporter and effector genes downstream of UAS (upstream activating sequence). Thus, the Gal4 gene trap and enhancer trap methods together with UAS lines now make detailed analyses of genes and cells in zebrafish feasible. Here, we describe the protocols to perform Gal4 gene trap and enhancer trap screens in zebrafish and their application to the studies of vertebrate neural circuits.

摘要

Gal4-UAS 系统为分析基因和细胞在体内的功能提供了强大的工具,已在果蝇中得到广泛应用。这种方法的有效性依赖于 P 元件介导的 Gal4 增强子捕获,它可以有效地生成在特定细胞中表达 Gal4 的转基因果蝇品系。然而,由于缺乏有效的转基因方法,类似的方法尚未在脊椎动物系统中开发出来。我们一直在利用 madaka 鱼 Tol2 元件开发转座子技术。利用其产生全基因组插入的能力,我们在斑马鱼中开发了 Gal4 基因捕获和增强子捕获方法,使我们能够创建各种在特定细胞中表达 Gal4 的转基因鱼。通过将转基因 Gal4 系与携带 UAS(上游激活序列)下游的各种报告基因和效应基因的转基因系杂交,可以在体内对表达 Gal4 的细胞进行可视化和操作。因此,Gal4 基因捕获和增强子捕获方法与 UAS 系一起,使得对斑马鱼中的基因和细胞进行详细分析成为可能。在这里,我们描述了在斑马鱼中进行 Gal4 基因捕获和增强子捕获筛选的方案及其在脊椎动物神经回路研究中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b057/2764541/a6d50ee171db/nihms99839f1.jpg

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