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利用睡眠美人转座子系统生成突变大鼠。

Generating mutant rats using the Sleeping Beauty transposon system.

机构信息

Laboratory of Mammalian Genetics, Division of Genome Dynamics, Creative Research Initiative "Sousei", Hokkaido University, North 10 West 8, Kita-ku, Sapporo 060-0810, Japan.

出版信息

Methods. 2009 Nov;49(3):236-42. doi: 10.1016/j.ymeth.2009.04.010. Epub 2009 May 4.

Abstract

The laboratory rat is an invaluable animal model for biomedical research. However, mutant rat resource is still limited, and development of methods for large-scale generation of mutants is anticipated. We recently utilized the Sleeping Beauty (SB) transposon system to develop a rapid method for generating insertional mutant rats. Firstly, transgenic rats carrying single transgenes, namely the SB transposon vector and SB transposase, were generated. Secondly, these single transgenic rats were interbred to obtain doubly-transgenic rats carrying both transgenes. The SB transposon was mobilized in the germline of these doubly-transgenic rats, reinserted into another location in the genome and heterozygous mutant rats were obtained in the progeny. Gene insertion events were rapidly and non-invasively identified by the green fluorescence protein (GFP) reporter incorporated in the transposon vector, which utilizes a polyA-trap approach. Mutated genes were confirmed by either linker ligation-mediated PCR or 3'-rapid amplification of cDNA ends (3'RACE). Endogenous expression profile of the mutated gene can also be visualized using the LacZ gene incorporated as a promoter-trap unit in the transposon vector. This method is straightforward, readily applicable to other transposon systems, and will be a valuable mutant rat resource to the biomedical research community.

摘要

实验大鼠是生物医学研究中非常有价值的动物模型。然而,突变大鼠资源仍然有限,预计会开发大规模产生突变体的方法。我们最近利用 Sleeping Beauty(SB)转座子系统开发了一种快速生成插入突变大鼠的方法。首先,生成携带单个转基因的转基因大鼠,即 SB 转座子载体和 SB 转座酶。其次,这些单转基因大鼠进行杂交以获得携带两个转基因的双转基因大鼠。SB 转座子在这些双转基因大鼠的生殖系中被动员,重新插入基因组的另一个位置,在后代中获得杂合突变大鼠。通过转座子载体中包含的绿色荧光蛋白(GFP)报告基因,利用聚 A 捕获方法,快速、非侵入性地鉴定基因插入事件。通过链接酶连接介导的 PCR 或 3'-快速扩增 cDNA 末端(3'RACE)确认突变基因。也可以使用转座子载体中包含的 LacZ 基因作为启动子捕获单元来可视化突变基因的内源性表达谱。该方法简单直接,可轻易应用于其他转座子系统,将成为生物医学研究界宝贵的突变大鼠资源。

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