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A Simple and Accurate Two-Step Long DNA Sequences Synthesis Strategy to Improve Heterologous Gene Expression in Pichia

机译:一种简单准确的两步长DNA序列合成策略,可提高毕赤酵母中的异源基因表达

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摘要

In vitro gene chemical synthesis is a powerful tool to improve the expression of gene in heterologous system. In this study, a two-step gene synthesis strategy that combines an assembly PCR and an overlap extension PCR (AOE) was developed. In this strategy, the chemically synthesized oligonucleotides were assembled into several 200–500 bp fragments with 20–25 bp overlap at each end by assembly PCR, and then an overlap extension PCR was conducted to assemble all these fragments into a full length DNA sequence. Using this method, we de novo designed and optimized the codon of Rhizopus oryzae lipase gene ROL (810 bp) and Aspergillus niger phytase gene phyA (1404 bp). Compared with the original ROL gene and phyA gene, the codon-optimized genes expressed at a significantly higher level in yeasts after methanol induction. We believe this AOE method to be of special interest as it is simple, accurate and has no limitation with respect to the size of the gene to be synthesized. Combined with de novo design, this method allows the rapid synthesis of a gene optimized for expression in the system of choice and production of sufficient biological material for molecular characterization and biotechnological application.
机译:体外基因化学合成是改善异源系统中基因表达的强大工具。在这项研究中,结合了组装PCR和重叠延伸PCR(AOE)的两步基因合成策略得以开发。在该策略中,化学合成的寡核苷酸通过组装PCR组装成多个200–500 bp片段,每个末端具有20–25 bp重叠,然后进行重叠延伸PCR将所有这些片段组装成全长DNA序列。使用这种方法,我们从头设计并优化了米根霉脂肪酶基因ROL(810 bp)和黑曲霉植酸酶基因phyA(1404 bp)的密码子。与原始的ROL基因和phyA基因相比,密码子优化的基因在甲醇诱导后在酵母中的表达水平明显更高。我们相信这种AOE方法具有特别的意义,因为它简单,准确并且对要合成的基因的大小没有限制。结合从头设计,该方法可以快速合成优化用于在选择系统中表达的基因,并生产足够的生物材料用于分子表征和生物技术应用。

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