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REPLACR-mutagenesis, a one-step method for site-directed mutagenesis by recombineering

机译:替换诱变,通过重组定导地点诱变的一步法

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Mutagenesis is an important tool to study gene regulation, model disease-causing mutations and for functional characterisation of proteins. Most of the current methods for mutagenesis involve multiple step procedures. One of the most accurate methods for genetically altering DNA is recombineering , which uses bacteria expressing viral recombination proteins. Recently, the use of in vitro seamless assembly systems using purified enzymes for multiple-fragment cloning as well as mutagenesis is gaining ground. Although these in vitro isothermal reactions are useful when cloning multiple fragments, for site-directed mutagenesis it is unnecessary. Moreover, the use of purified enzymes in vitro is not only expensive but also more inaccurate than the high-fidelity recombination inside bacteria. Here we present a single-step method, named REPLACR-mutagenesis ( R ecombineering of E nds of linearised PLA smids after P CR ), for creating mutations (deletions, substitutions and additions) in plasmids by in vivo recombineering. REPLACR-mutagenesis only involves transformation of PCR products in bacteria expressing Red/ET recombineering proteins. Modifications in a variety of plasmids up to bacterial artificial chromosomes (BACs; 144?kb deletion) have been achieved by this method. The presented method is more robust, involves fewer steps and is cost-efficient.
机译:诱变是研究基因调控,模型疾病导致突变和蛋白质功能表征的重要工具。大多数用于诱变的方法涉及多个步骤程序。基因改变DNA最准确的方法之一是重组,其使用表达病毒重组蛋白的细菌。最近,使用纯化酶的体外无缝组装系统用于多碎片克隆以及诱变是突变的。虽然当克隆多个片段时,这些体外等温反应是有用的,但是对于点定向诱变,虽然是指导的诱变。不需要。此外,在体外使用纯化的酶不仅昂贵,而且比细菌内的高保真重组更具不准确。在这里,我们提出了一种单步方法,称为替代诱变(在P CR之后的线性化PLA Smids的E NDS的e Ecombineering),用于通过体内重组制剂在质粒中产生突变(缺失,取代和添加)。替换诱变仅涉及表达红/等重组蛋白的细菌中PCR产物的转化。通过这种方法已经实现了多种细菌人工染色体(BAC; 144 kB缺失)各种质粒的修饰。呈现的方法更加强大,涉及更少的步骤并且具有成本效益。

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