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An Efficient Method for High-Fidelity BAC/PAC Retrofitting with a Selectable Marker for Mammalian Cell Transfection

机译:带有选择性标记的哺乳动物细胞转染的高保真BAC / PAC改造的高效方法

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摘要

Large-scale genomic sequencing projects have provided DNA sequence information for many genes, but the biological functions for most of them will only be known through functional studies. Bacterial artificial chromosomes (BACs) and P1-derived artificial chromosomes (PACs) are large genomic clones stably maintained in bacteria and are very important in functional studies through transfection because of their large size and stability. Because most BAC or PAC vectors do not have a mammalian selection marker, transfecting mammalian cells with genes cloned in BACs or PACs requires the insertion into the BAC/PAC of a mammalian selectable marker. However, currently available procedures are not satisfactory in efficiency and fidelity. We describe a very simple and efficient procedure that allows one to retrofit dozens of BACs in a day with no detectable deletions or unwanted recombination. We use a BAC/PAC retrofitting vector that, on transformation into competent BAC or PAC strains, will catalyze the specific insertion of itself into BAC/PAC vectors through in vivo cre/loxP site-specific recombination.
机译:大规模的基因组测序项目已经为许多基因提供了DNA序列信息,但是其中大多数的生物学功能只有通过功能研究才能知道。细菌人工染色体(BAC)和P1衍生的人工染色体(PAC)是在细菌中稳定维持的大型基因组克隆,由于它们的大尺寸和稳定性,在通过转染进行功能研究中非常重要。由于大多数BAC或PAC载体都没有哺乳动物选择标记,因此要用克隆在BAC或PAC中的基因转染哺乳动物细胞,需要将哺乳动物选择标记插入BAC / PAC中。但是,当前可用的程序在效率和保真度上并不令人满意。我们描述了一种非常简单而有效的程序,该程序允许一天内改造数十个BAC,而没有可检测到的缺失或不需要的重组。我们使用了BAC / PAC改造载体,该载体在转化为感受态BAC或PAC菌株后,将通过体内cre / loxP位点特异性重组催化自身特异性插入BAC / PAC载体。

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