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An efficient method to assemble linear DNA templates for in vitro screening and selection systems

机译:组装线性DNA模板用于体外筛选和选择系统的有效方法

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摘要

A method is presented to assemble a gene of interest into a linear DNA template with all the components necessary for in vitro transcription and translation in ∼90 min. Assembly is achieved using a coupled uracil excision–ligation strategy based on USER Enzyme and T4 DNA ligase, which allows the simultaneous and seamless assembly of three different PCR products. The method is suitable for screening and selection systems of very high throughput as up to 1011 molecules can be efficiently assembled and purified in reaction volumes of 100 μl. The method is exemplified with the gene coding for a mutant version of O6-alkylguanine alkyltransferase, which is efficiently assembled with an N-terminal peptide tag and its 5′- and 3′-untranslated regions that include a T7 promoter, ribosome binding site and T7 terminator. The utility of the method is further corroborated by assembling error-prone PCR libraries and regenerating templates following model affinity selections. This fast and robust method should find widespread application in directed evolution for the assembly of gene libraries and the regeneration of linear DNA templates between successive screening and selection cycles.
机译:提出了一种将目的基因组装到线性DNA模板中的方法,该模板具有在约90分钟内体外转录和翻译所需的所有组件。组装是通过基于USER Enzyme和T4 DNA连接酶的尿嘧啶切除-连接策略实现的,该策略可同时无缝组装三种不同的PCR产物。该方法适用于非常高通量的筛选和选择系统,因为可以在100μl的反应体积中有效组装和纯化多达1011个分子。该方法以编码O6-烷基鸟嘌呤烷基转移酶的突变型的基因为例,该基因可以与N端肽标签及其5'-和3'-非翻译区有效组装,该区域包括T7启动子,核糖体结合位点和T7终结者。通过在模型亲和力选择后组装易于出错的PCR文库并重新生成模板,进一步证实了该方法的实用性。这种快速而稳健的方法应在定向进化中得到广泛应用,用于基因库的组装以及线性DNA模板在连续筛选和选择循环之间的再生。

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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