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利用 Golden Gate 方法和 I-SceI 内切酶构建高效克隆系统,用于炭疽芽孢杆菌的靶向基因替换。

Construction of a high-efficiency cloning system using the Golden Gate method and I-SceI endonuclease for targeted gene replacement in Bacillus anthracis.

机构信息

State Key Laboratory of Pathogens and Biosecurity, Beijing Institute of Biotechnology, 20 Dongdajie Street, Fengtai District, Beijng 100071, China.

出版信息

J Biotechnol. 2018 Apr 10;271:8-16. doi: 10.1016/j.jbiotec.2018.02.006. Epub 2018 Feb 10.

DOI:10.1016/j.jbiotec.2018.02.006
PMID:29438783
Abstract

To investigate gene function in Bacillus anthracis, a high-efficiency cloning system is required with an increased rate of allelic exchange. Golden Gate cloning is a molecular cloning strategy allowing researchers to simultaneously and directionally assemble multiple DNA fragments to construct target plasmids using type IIs restriction enzymes and T4 DNA ligase in the same reaction system. Here, a B. anthracis S-layer protein EA1 allelic exchange vector was successfully constructed using the Golden Gate method. No new restriction sites were introduced into this knockout vector, and seamless assembly of the DNA fragments was achieved. To elevate the efficiency of homologous recombination between the allelic exchange vector and chromosomal DNA, we introduced an I-SceI site into the allelic exchange vector. The eag gene was successfully knocked out in B. anthracis using this vector. Simultaneously, the allelic exchange vector construction method was developed into a system for generating B. anthracis allelic exchange vectors. To verify the effectiveness of this system, some other allelic exchange vectors were constructed and gene replacements were performed in B. anthracis. It is speculated that this gene knockout vector construction system and high-efficiency targeted gene replacement using I-SceI endonuclease can be applied to other Bacillus spp.

摘要

为了研究炭疽杆菌中的基因功能,需要一种高效的克隆系统,其等位基因交换率更高。Golden Gate 克隆是一种分子克隆策略,允许研究人员在同一个反应体系中使用类型 II 限制酶和 T4 DNA 连接酶,同时和定向地组装多个 DNA 片段来构建目标质粒。在这里,我们成功地使用 Golden Gate 方法构建了炭疽杆菌 S 层蛋白 EA1 等位基因交换载体。这个敲除载体中没有引入新的限制酶切位点,实现了 DNA 片段的无缝组装。为了提高等位基因交换载体与染色体 DNA 之间同源重组的效率,我们在等位基因交换载体中引入了 I-SceI 位点。使用这个载体,我们成功地敲除了炭疽杆菌中的 eag 基因。同时,我们将等位基因交换载体的构建方法发展成了一种用于构建炭疽杆菌等位基因交换载体的系统。为了验证这个系统的有效性,我们在炭疽杆菌中构建了一些其他的等位基因交换载体并进行了基因替换。据推测,这种基因敲除载体的构建系统和使用 I-SceI 内切酶的高效靶向基因替换可以应用于其他芽孢杆菌属。

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