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利用酿酒酵母中I-SceI诱导的双链DNA断裂高效同时切除多个选择标记盒

Efficient simultaneous excision of multiple selectable marker cassettes using I-SceI-induced double-strand DNA breaks in Saccharomyces cerevisiae.

作者信息

Solis-Escalante Daniel, Kuijpers Niels G A, van der Linden Franka H, Pronk Jack T, Daran Jean-Marc, Daran-Lapujade Pascale

机构信息

Department of Biotechnology, Delft University of Technology, Delft, The Netherlands.

出版信息

FEMS Yeast Res. 2014 Aug;14(5):741-54. doi: 10.1111/1567-1364.12162. Epub 2014 Jun 27.

Abstract

Large strain construction programs and functional analysis studies are becoming commonplace in Saccharomyces cerevisiae and involve construction of strains that carry multiple selectable marker genes. Extensive strain engineering is, however, severely hampered by the limited number of recyclable marker genes and by the reduced genome stability that occurs upon repeated use of heterologous recombinase-based marker removal methods. The present study proposes an efficient method to recycle multiple markers in S. cerevisiae simultaneously, thereby circumventing shortcomings of existing techniques and substantially accelerating the process of selection-excision. This method relies on artificial generation of double-strand breaks around the selection marker cassette by the meganuclease I-SceI and the subsequent repair of these breaks by the yeast homologous recombination machinery, guided by direct repeats. Simultaneous removal of up to three marker cassettes was achieved with high efficiencies (up to 56%), suggesting that I-SceI-based marker removal has the potential to co-excise an even larger number of markers. This locus- and marker-independent method can be used for both dominant and auxotrophy-complementing marker genes. Seven pDS plasmids carrying various selectable markers, which can be used for PCR-based generation of deletion cassettes suited for I-SceI marker recycling, are described and made available to the scientific community.

摘要

大菌株构建计划和功能分析研究在酿酒酵母中已变得很常见,且涉及携带多个选择标记基因的菌株构建。然而,广泛的菌株工程受到可回收标记基因数量有限以及基于异源重组酶的标记去除方法反复使用时基因组稳定性降低的严重阻碍。本研究提出了一种在酿酒酵母中同时回收多个标记的有效方法,从而规避现有技术的缺点并大幅加速选择 - 切除过程。该方法依赖于巨核酸酶I - SceI在选择标记盒周围人工产生双链断裂,随后由酵母同源重组机制在直接重复序列的引导下修复这些断裂。以高达56%的高效率实现了同时去除多达三个标记盒,这表明基于I - SceI的标记去除有潜力共切除更多数量的标记。这种不依赖位点和标记的方法可用于显性和营养缺陷互补标记基因。描述了七个携带各种选择标记的pDS质粒,它们可用于基于PCR产生适合I - SceI标记回收的缺失盒,并向科学界提供。

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