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利用设计的DNA片段快速构建细菌人工染色体(BAC)表达载体。

Rapid construction of a Bacterial Artificial Chromosomal (BAC) expression vector using designer DNA fragments.

作者信息

Chen Chao, Zhao Xinqing, Jin Yingyu, Zhao Zongbao Kent, Suh Joo-Won

机构信息

School of Life Science and Biotechnology, Dalian University of Technology, Dalian 116024, China.

School of Life Science and Biotechnology, Dalian University of Technology, Dalian 116024, China.

出版信息

Plasmid. 2014 Nov;76:79-86. doi: 10.1016/j.plasmid.2014.10.002. Epub 2014 Oct 17.

Abstract

Bacterial artificial chromosomal (BAC) vectors are increasingly being used in cloning large DNA fragments containing complex biosynthetic pathways to facilitate heterologous production of microbial metabolites for drug development. To express inserted genes using Streptomyces species as the production hosts, an integration expression cassette is required to be inserted into the BAC vector, which includes genetic elements encoding a phage-specific attachment site, an integrase, an origin of transfer, a selection marker and a promoter. Due to the large sizes of DNA inserted into the BAC vectors, it is normally inefficient and time-consuming to assemble these fragments by routine PCR amplifications and restriction-ligations. Here we present a rapid method to insert fragments to construct BAC-based expression vectors. A DNA fragment of about 130 bp was designed, which contains upstream and downstream homologous sequences of both BAC vector and pIB139 plasmid carrying the whole integration expression cassette. In-Fusion cloning was performed using the designer DNA fragment to modify pIB139, followed by λ-RED-mediated recombination to obtain the BAC-based expression vector. We demonstrated the effectiveness of this method by rapid construction of a BAC-based expression vector with an insert of about 120 kb that contains the entire gene cluster for biosynthesis of immunosuppressant FK506. The empty BAC-based expression vector constructed in this study can be conveniently used for construction of BAC libraries using either microbial pure culture or environmental DNA, and the selected BAC clones can be directly used for heterologous expression. Alternatively, if a BAC library has already been constructed using a commercial BAC vector, the selected BAC vectors can be manipulated using the method described here to get the BAC-based expression vectors with desired gene clusters for heterologous expression. The rapid construction of a BAC-based expression vector facilitates heterologous expression of large gene clusters for drug discovery.

摘要

细菌人工染色体(BAC)载体越来越多地用于克隆包含复杂生物合成途径的大片段DNA,以促进微生物代谢产物的异源生产,用于药物开发。为了使用链霉菌属物种作为生产宿主来表达插入基因,需要将一个整合表达盒插入BAC载体,该整合表达盒包括编码噬菌体特异性附着位点、整合酶、转移起点、选择标记和启动子的遗传元件。由于插入BAC载体的DNA片段较大,通过常规PCR扩增和限制性连接来组装这些片段通常效率低下且耗时。在此,我们提出一种快速插入片段以构建基于BAC的表达载体的方法。设计了一个约130 bp的DNA片段,其包含携带整个整合表达盒的BAC载体和pIB139质粒的上游和下游同源序列。使用设计的DNA片段通过In-Fusion克隆对pIB139进行修饰,随后通过λ-RED介导的重组获得基于BAC的表达载体。我们通过快速构建一个基于BAC的表达载体证明了该方法的有效性,该载体插入了一个约120 kb的片段,其中包含免疫抑制剂FK506生物合成的整个基因簇。本研究构建的空的基于BAC的表达载体可方便地用于使用微生物纯培养物或环境DNA构建BAC文库,并且所选的BAC克隆可直接用于异源表达。或者,如果已经使用商业BAC载体构建了BAC文库,则可以使用此处描述的方法对所选的BAC载体进行操作,以获得具有用于异源表达的所需基因簇的基于BAC的表达载体。基于BAC的表达载体的快速构建促进了用于药物发现的大基因簇的异源表达。

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