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loxP-directed cloning: Use Cre recombinase as a universal restriction enzyme

机译:loxP定向克隆:使用Cre重组酶作为通用限制酶

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摘要

We have developed a novel way to use the Cre/loxP system for in vitro manipulation of DNA and a technique to clone DNA into circular episomes. The method is fast, reliable, and allows flexible cloning of DNA fragments into episomes containing a loxP site. We show that a loxP site can serve as a universal target site to clone a DNA fragment digested with any restriction enzyme(s). This technique abolishes the need for compatible restriction sites in cloning vectors and targets by generating custom designed 5', 3', or blunt ends in the desired orientation and reading frame in the vector. Therefore, this method eliminates the limitations encountered when DNA fragments are cloned into vectors with a confined number of cloning sites. The 34-bp loxP sequence assures uniqueness, even when large episomes are manipulated. We present three examples, including the manipulation of a bacterial artificial chromosome. Because DNA manipulation takes place at a loxP site, we refer to this technique as loxP-directed cloning.
机译:我们已经开发出一种使用Cre / loxP系统进行DNA体外操作的新方法,以及一种将DNA克隆到环状附加体中的技术。该方法快速,可靠,并允许将DNA片段灵活克隆到含有loxP位点的附加体中。我们显示loxP位点可以用作通用目标位点,以克隆用任何限制酶消化的DNA片段。该技术通过在载体的所需方向和阅读框中生成定制设计的5',3'或平端,从而消除了克隆载体和靶标中对限制性酶切位点的兼容需求。因此,该方法消除了将DNA片段克隆到具有有限数目克隆位点的载体中时遇到的限制。 34 bp的loxP序列可确保唯一性,即使在操纵较大的附加体时也是如此。我们提出了三个示例,包括操纵细菌人工染色体。因为DNA操作发生在loxP位点,所以我们将此技术称为loxP定向克隆。

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