清脆的
生物
合成生物学
基因组编辑
计算生物学
Cas9
酵母
酿酒酵母
基因组工程
质粒
芽殖酵母
遗传学
DNA
同源重组
基因组学
基因组
基因
作者
Yu Zhao,Camila Coelho,Stephanie Lauer,Miłosz Majewski,Jon M Laurent,Ran Brosh,Jef D. Boeke
摘要
Use of synthetic genomics to design and build 'big' DNA has revolutionized our ability to answer fundamental biological questions by employing a bottom-up approach. Saccharomyces cerevisiae, or budding yeast, has become the major platform to assemble large synthetic constructs thanks to its powerful homologous recombination machinery and the availability of well-established molecular biology techniques. However, introducing designer variations to episomal assemblies with high efficiency and fidelity remains challenging. Here we describe CRISPR Engineering of EPisomes in Yeast, or CREEPY, a method for rapid engineering of large synthetic episomal DNA constructs. We demonstrate that CRISPR editing of circular episomes presents unique challenges compared to modifying native yeast chromosomes. We optimize CREEPY for efficient and precise multiplex editing of >100 kb yeast episomes, providing an expanded toolkit for synthetic genomics.
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