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无限制(RF)克隆程序在分子操作和蛋白质表达中的应用。

Applications of the Restriction Free (RF) cloning procedure for molecular manipulations and protein expression.

机构信息

Department of Structural Biology, The Israel Structural Proteomics Center (ISPC), Weizmann Institute of Science, Rehovot, Israel.

出版信息

J Struct Biol. 2010 Oct;172(1):34-44. doi: 10.1016/j.jsb.2010.06.016. Epub 2010 Jun 25.

Abstract

Molecular manipulations, including DNA cloning and mutagenesis are basic tools used on a routine basis in all life-science disciplines. Over the last decade new methodologies have emerged that facilitated and expanded the applications for DNA cloning and mutagenesis. Ligation-Independent Cloning (LIC) techniques were developed and replaced the classical Ligation Dependent Cloning (LDC) platform. Restriction Free (RF) cloning was originally developed for introduction of foreign DNA into a plasmid at any predetermined position. RF cloning is based on PCR amplification of a DNA fragment, which serves as a mega-primer for the linear amplification of the vector and insert. Here we present several novel applications of the Restriction Free (RF) cloning platform for DNA cloning and mutagenesis. The new applications include simultaneous cloning of several DNA fragments into distinct positions within an expression vector, simultaneous multi-component assembly, and parallel cloning of the same PCR product into a series of different vectors. In addition, we have expanded the application of the RF cloning platform for multiple alterations of the target DNA, including simultaneous multiple-site mutagenesis and simultaneous introduction of deletions and insertions at different positions. We further demonstrate the robustness of the new applications for facilitating recombinant protein expression in the Escherichia coli system.

摘要

分子操作,包括 DNA 克隆和诱变,是所有生命科学学科中常规使用的基本工具。在过去的十年中,出现了新的方法,这些方法促进和扩展了 DNA 克隆和诱变的应用。连接独立克隆 (LIC) 技术被开发出来并取代了经典的连接依赖克隆 (LDC) 平台。无限制 (RF) 克隆最初是为了在任何预定位置将外源 DNA 引入质粒而开发的。RF 克隆基于 DNA 片段的 PCR 扩增,该片段用作线性扩增载体和插入物的 mega-引物。在这里,我们介绍了几种用于 DNA 克隆和诱变的新的无限制 (RF) 克隆平台应用。新的应用包括将几个 DNA 片段同时克隆到表达载体中的不同位置、同时多组分组装和将相同的 PCR 产物平行克隆到一系列不同的载体中。此外,我们还扩展了 RF 克隆平台在目标 DNA 的多种改变中的应用,包括同时进行多位点诱变以及在不同位置同时引入缺失和插入。我们进一步证明了这些新应用在促进大肠杆菌系统中重组蛋白表达方面的稳健性。

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