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QuickStep-Cloning: a sequence-independent, ligation-free method for rapid construction of recombinant plasmids

机译:Quickstep-Cloning:一种快速构建重组质粒的序列无关,无连接方法

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摘要

BackgroundududMolecular cloning is an essential step in biological engineering. Methods involving megaprimer-based PCR of a whole plasmid are promising alternatives to the traditional restriction-ligation-based molecular cloning. Their widespread use, however, is hampered by some of their inherent characteristics, e.g., linear amplification, use of self-annealing megaprimers and difficulty with performing point insertion of DNA. These limitations result in low product yield and reduced flexibility in the design of a genetic construct.ududResultududHere, we present a novel technique of directional cloning, which overcomes these problems yet retaining the simplicity of whole-plasmid amplification. QuickStep-Cloning utilizes asymmetric PCRs to create a megaprimer pair with 3′-overhangs, and hence, facilitates the subsequent exponential whole-plasmid amplification. QuickStep-Cloning generates nicked-circular plasmids, thereby permitting direct bacterial transformation without DNA ligation. It allows DNA fragment integration into any plasmid at any position, in an efficient, time- and cost-effective manner, without tedious intermediate DNA gel purification, modified oligonucleotides, specialty enzymes and ultra-competent cells. The method is compatible with competent E. coli cells prepared using the conventional calcium chloride method.ududConclusionududQuickStep-Cloning expands the versatility of megaprimer-based cloning. It is an excellent addition to the cloning toolbox, for the benefit of protein engineers, metabolic engineers and synthetic biologists.
机译:背景 ud ud分子克隆是生物工程学中必不可少的步骤。涉及基于兆引物的整个质粒PCR的方法是传统的基于限制性连接的分子克隆的有前途的替代方法。然而,它们的广泛使用受到其某些固有特性的阻碍,例如,线性扩增,自退火大引物的使用以及难以进行DNA的点插入。这些局限性导致产品产量降低和遗传构建体设计灵活性降低。 ud udResult ud ud此处,我们介绍了一种定向克隆的新技术,该技术克服了这些问题,但仍保留了全质粒扩增的简便性。 QuickStep-Cloning利用非对称PCR来创建具有3'-突出端的megaprimer对,因此有助于后续的指数全质粒扩增。 QuickStep-Cloning产生有缺口的环状质粒,从而无需DNA连接即可直接进行细菌转化。它允许DNA片段以有效,省时和经济的方式整合到任何位置的任何质粒中,而无需繁琐的中间DNA凝胶纯化,修饰的寡核苷酸,特异酶和超能力细胞。该方法与使用常规氯化钙方法制备的感受态大肠杆菌细胞兼容。 ud ud结论 ud udQuickStep-Cloning扩展了基于超级引物的克隆的多功能性。它是克隆工具箱的绝佳补充,可以使蛋白质工程师,代谢工程师和合成生物学家受益。

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  • 作者

    Jajesniak P.; Wong T.S.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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