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A Method for Multiplex Gene Synthesis Employing Error Correction Based on Expression

机译:基于表达式的纠错多基因合成方法

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摘要

Our ability to engineer organisms with new biosynthetic pathways and genetic circuits is limited by the availability of protein characterization data and the cost of synthetic DNA. With new tools for reading and writing DNA, there are opportunities for scalable assays that more efficiently and cost effectively mine for biochemical protein characteristics. To that end, we have developed the Multiplex Library Synthesis and Expression Correction (MuLSEC) method for rapid assembly, error correction, and expression characterization of many genes as a pooled library. This methodology enables gene synthesis from microarray-synthesized oligonucleotide pools with a one-pot technique, eliminating the need for robotic liquid handling. Post assembly, the gene library is subjected to an ampicillin based quality control selection, which serves as both an error correction step and a selection for proteins that are properly expressed and folded in E. coli. Next generation sequencing of post selection DNA enables quantitative analysis of gene expression characteristics. We demonstrate the feasibility of this approach by building and testing over 90 genes for empirical evidence of soluble expression. This technique reduces the problem of part characterization to multiplex oligonucleotide synthesis and deep sequencing, two technologies under extensive development with projected cost reduction.
机译:我们利用新的生物合成途径和遗传途径改造生物的能力受到蛋白质表征数据的可用性和合成DNA成本的限制。借助用于读取和写入DNA的新工具,可以进行可扩展的测定,从而更有效,更具成本效益地挖掘生化蛋白质特征。为此,我们已经开发了多重文库合成和表达校正(MuLSEC)方法,用于快速组装,错误校正和将许多基因的表达特征表征为库。这种方法可以通过一锅技术从微阵列合成的寡核苷酸池进行基因合成,从而无需进行机器人液体处理。组装后,对基因库进行基于氨苄青霉素的质量控制选择,这既是错误纠正步骤,也是对在大肠杆菌中正确表达和折叠的蛋白质的选择。后选DNA的下一代测序可对基因表达特征进行定量分析。我们通过建立和测试90个以上基因作为可溶性表达的经验证据,证明了这种方法的可行性。该技术减少了零件表征以进行多重寡核苷酸合成和深度测序的问题,这是两项正在广泛开发且预计可降低成本的技术。

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