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SpeedyGenes: an improved gene synthesis method for the efficient production of error-corrected synthetic protein libraries for directed evolution

机译:SpeedyGenes:一种改进的基因合成方法可有效产生经纠错的合成蛋白质库用于定向进化

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摘要

The de novo synthesis of genes is becoming increasingly common in synthetic biology studies. However, the inherent error rate (introduced by errors incurred during oligonucleotide synthesis) limits its use in synthesising protein libraries to only short genes. Here we introduce SpeedyGenes, a PCR-based method for the synthesis of diverse protein libraries that includes an error-correction procedure, enabling the efficient synthesis of large genes for use directly in functional screening. First, we demonstrate an accurate gene synthesis method by synthesising and directly screening (without pre-selection) a 747 bp gene for green fluorescent protein (yielding 85% fluorescent colonies) and a larger 1518 bp gene (a monoamine oxidase, producing 76% colonies with full catalytic activity, a 4-fold improvement over previous methods). Secondly, we show that SpeedyGenes can accommodate multiple and combinatorial variant sequences while maintaining efficient enzymatic error correction, which is particularly crucial for larger genes. In its first application for directed evolution, we demonstrate the use of SpeedyGenes in the synthesis and screening of large libraries of MAO-N variants. Using this method, libraries are synthesised, transformed and screened within 3 days. Importantly, as each mutation we introduce is controlled by the oligonucleotide sequence, SpeedyGenes enables the synthesis of large, diverse, yet controlled variant sequences for the purposes of directed evolution.
机译:基因的从头合成在合成生物学研究中变得越来越普遍。但是,固有的错误率(由寡核苷酸合成过程中产生的错误引起)限制了它在合成蛋白质文库中仅用于短基因。在这里,我们介绍SpeedyGenes,这是一种基于PCR的合成各种蛋白质文库的方法,其中包括一个错误校正程序,可以有效地合成大型基因,直接用于功能筛选。首先,我们通过合成和直接筛选(无预选)绿色荧光蛋白的747 bp基因(产生85%的荧光菌落)和更大的1518 bp的基因(单胺氧化酶,产生76%的菌落)展示了一种准确的基因合成方法具有完全的催化活性,比以前的方法提高了4倍)。其次,我们显示SpeedyGenes可以容纳多个和组合的变异序列,同时保持有效的酶促错误校正,这对于较大的基因尤其重要。在其定向进化的第一个应用中,我们证明了SpeedyGenes在MAO-N变体大型文库的合成和筛选中的用途。使用这种方法,可以在3天内合成,转化和筛选文库。重要的是,由于我们引入的每个突变均受寡核苷酸序列控制,因此SpeedyGenes可以合成大型,多样但受控制的变异序列,以进行定向进化。

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