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Robust orthogonal recombination system for versatile genomic elements rearrangement in yeast Saccharomyces Cerevisiae

机译:强大的正交重组系统用于酿酒酵母中的通用基因组元件重排

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摘要

Rearrangement of genomic DNA elements in a dynamic controlled fashion is a fundamental challenge. Site-specific DNA recombinases have been tamed as a powerful tool in genome editing. Here, we reported a DNA element rearrangement on the basis of a pairwise orthogonal recombination system which is comprised of two site-specific recombinases of Vika/vox and Cre/loxp in yeast Saccharomyces Creevisiae. Taking the advantage of the robust pairwise orthogonality, we showed that multi gene elements could be organized in a programmed way, in which rationally designed pattern of loxP and vox determined the final genotype after expressing corresponding recombinases. Finally, it was demonstrated that the pairwise orthogonal recombination system could be utilized to refine synthetic chromosome rearrangement and modification by loxP-mediated evolution, SCRaMbLE, in yeast cell carrying a completely synthesized chromosome III.
机译:以动态受控方式重排基因组DNA元素是一项根本性的挑战。位点特异性DNA重组酶已被驯化为基因组编辑中的强大工具。在这里,我们报告了基于成对正交重组系统的DNA元素重排,该系统由酵母酿酒酵母中的Vika / vox和Cre / loxp的两个位点特异性重组酶组成。利用稳健的成对正交的优势,我们表明可以通过编程的方式组织多基因元件,其中合理设计的loxP和vox模式在表达相应的重组酶后决定了最终的基因型。最后,证明了成对的正交重组系统可用于通过loxP介导的进化SCRaMbLE在携带完全合成的III号染色体的酵母细胞中改善合成的染色体重排和修饰。

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