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使用含有R6Kγ复制起点的新型穿梭载体对细菌人工染色体(BAC)进行高效修饰。

Highly efficient modification of bacterial artificial chromosomes (BACs) using novel shuttle vectors containing the R6Kgamma origin of replication.

作者信息

Gong Shiaoching, Yang Xiangdong William, Li Chenjian, Heintz Nathaniel

机构信息

Laboratory of Molecular Biology, The Rockefeller University, New York, New York 10021, USA.

出版信息

Genome Res. 2002 Dec;12(12):1992-8. doi: 10.1101/gr.476202.

Abstract

Bacterial artificial chromosome (BAC) mediated transgenesis has proven to be a highly reliable way to obtain accurate transgene expression for in vivo studies of gene expression and function. A rate-limiting step in use of this technology to characterize large numbers of genes has been the process with which BACs can be modified by homologous recombination in Escherichia coli. We report here a highly efficient method for modifying BACs by using a novel set of shuttle vectors that contain the R6Kgamma origin for DNA replication, the E. coli RecA gene for recombination, and the SacB gene for negative selection. These new vectors greatly increased the ease with which one can clone the shuttle vectors, as well as screen for co-integrated and resolved clones. Furthermore, we simplify the shuttle vector cloning to one step by incorporation of a "built-in" resolution cassette for rapid removal of the unwanted vector sequences. This new system has been used to modify a dozen BACs. It is well suited for efficient production of modified BACs for use in a variety of in vivo studies.

摘要

细菌人工染色体(BAC)介导的转基因技术已被证明是一种高度可靠的方法,可用于在体内研究基因表达和功能时获得准确的转基因表达。在使用该技术表征大量基因的过程中,一个限速步骤是在大肠杆菌中通过同源重组对BAC进行修饰的过程。我们在此报告一种高效的方法,通过使用一组新型穿梭载体来修饰BAC,这些穿梭载体包含用于DNA复制的R6Kγ 起源、用于重组的大肠杆菌RecA基因以及用于负选择的SacB基因。这些新载体极大地提高了克隆穿梭载体以及筛选共整合和分离克隆的便利性。此外,我们通过并入一个“内置”的分辨率盒来快速去除不需要的载体序列,将穿梭载体克隆简化为一步。这个新系统已被用于修饰十几个BAC。它非常适合高效生产用于各种体内研究的修饰BAC。

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