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一种用于丙酮丁醇梭菌的双质粒诱导型CRISPR/Cas9基因组编辑工具。

A two-plasmid inducible CRISPR/Cas9 genome editing tool for Clostridium acetobutylicum.

作者信息

Wasels François, Jean-Marie Jennifer, Collas Florent, López-Contreras Ana M, Lopes Ferreira Nicolas

机构信息

IFP Energies nouvelles, Biotechnology Department, 1 et 4 avenue de Bois-Préau, 92852 Rueil-Malmaison, France.

IFP Energies nouvelles, Biotechnology Department, 1 et 4 avenue de Bois-Préau, 92852 Rueil-Malmaison, France.

出版信息

J Microbiol Methods. 2017 Sep;140:5-11. doi: 10.1016/j.mimet.2017.06.010. Epub 2017 Jun 10.

Abstract

CRISPR/Cas-based genetic engineering has revolutionised molecular biology in both eukaryotes and prokaryotes. Several tools dedicated to the genomic transformation of the Clostridium genus of Gram-positive bacteria have been described in the literature; however, the integration of large DNA fragments still remains relatively limited. In this study, a CRISPR/Cas9 genome editing tool using a two-plasmid strategy was developed for the solventogenic strain Clostridium acetobutylicum ATCC 824. Codon-optimised cas9 from Streptococcus pyogenes was placed under the control of an anhydrotetracycline-inducible promoter on one plasmid, while the gRNA expression cassettes and editing templates were located on a second plasmid. Through the sequential introduction of these vectors into the cell, we achieved highly accurate genome modifications, including nucleotide substitution, gene deletion and cassette insertion up to 3.6kb. To demonstrate its potential, this genome editing tool was used to generate a marker-free mutant of ATCC 824 that produced an isopropanol-butanol-ethanol mixture. Whole-genome sequencing confirmed that no off-target modifications were present in the mutants. Such a tool is a prerequisite for efficient metabolic engineering in this solventogenic strain and provides an alternative editing strategy that might be applicable to other Clostridium strains.

摘要

基于CRISPR/Cas的基因工程技术彻底改变了真核生物和原核生物的分子生物学。文献中已经描述了几种用于革兰氏阳性菌梭菌属基因组转化的工具;然而,大片段DNA的整合仍然相对有限。在本研究中,我们为产溶剂梭菌丙酮丁醇梭菌ATCC 824开发了一种使用双质粒策略的CRISPR/Cas9基因组编辑工具。来自化脓性链球菌的密码子优化的cas9置于一个质粒上无水四环素诱导型启动子的控制之下,而gRNA表达盒和编辑模板位于第二个质粒上。通过将这些载体依次导入细胞,我们实现了高度精确的基因组修饰,包括核苷酸替换、基因缺失和长达3.6kb的盒式插入。为了证明其潜力,该基因组编辑工具被用于产生一个无标记的ATCC 824突变体,该突变体可产生异丙醇-丁醇-乙醇混合物。全基因组测序证实突变体中不存在脱靶修饰。这样一种工具是该产溶剂菌株高效代谢工程的先决条件,并提供了一种可能适用于其他梭菌菌株的替代编辑策略。

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