Li Gang, Dong Bing-Xue, Liu Yu-Huan, Li Chang-Jie, Zhang Li-Ping
State Key Laboratory of Biocontrol, Sun Yat-sen University, Guangzhou, China.
Methods Mol Biol. 2013;1073:9-17. doi: 10.1007/978-1-62703-625-2_2.
Gene synthesis by chemical methods provides a powerful tool for modifying genes and exploring their structure, expression, and function in the post-genomic era. However, a bottleneck in recent gene synthesis technologies is the high cost of oligonucleotide synthesis and post-synthesis sequencing. Here, we describe a simple, rapid, and low-cost gene synthesis method based on overlap extension PCR (OE-PCR) and the DNAWorks program. This method enables DNA sequences with sizes ranging from 200 bp to 3 kb to be synthesized with few errors, and these errors can be easily corrected by site-directed mutagenesis. Thus, it is amenable to automation for the multiplexed synthesis of different genes and has a potential for high-throughput gene synthesis.
在后基因组时代,化学方法合成基因是一种用于修饰基因并探索其结构、表达和功能的强大工具。然而,近期基因合成技术的一个瓶颈是寡核苷酸合成和合成后测序的高成本。在此,我们描述了一种基于重叠延伸PCR(OE-PCR)和DNAWorks程序的简单、快速且低成本的基因合成方法。该方法能够以较少的错误合成大小从200 bp到3 kb的DNA序列,并且这些错误可以通过定点诱变轻松校正。因此,它适合自动化用于不同基因的多重合成,具有高通量基因合成的潜力。