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利用嗜温性spCas9对兼性嗜热菌进行高效基因组编辑。

Efficient Genome Editing of a Facultative Thermophile Using Mesophilic spCas9.

作者信息

Mougiakos Ioannis, Bosma Elleke F, Weenink Koen, Vossen Eric, Goijvaerts Kirsten, van der Oost John, van Kranenburg Richard

机构信息

Laboratory of Microbiology, Wageningen University , Stippeneng 4, 6708 WE Wageningen, The Netherlands.

Corbion , Arkelsedijk 46, 4206 AC Gorinchem, The Netherlands.

出版信息

ACS Synth Biol. 2017 May 19;6(5):849-861. doi: 10.1021/acssynbio.6b00339. Epub 2017 Feb 16.

Abstract

Well-developed genetic tools for thermophilic microorganisms are scarce, despite their industrial and scientific relevance. Whereas highly efficient CRISPR/Cas9-based genome editing is on the rise in prokaryotes, it has never been employed in a thermophile. Here, we apply Streptococcus pyogenes Cas9 (spCas9)-based genome editing to a moderate thermophile, i.e., Bacillus smithii, including a gene deletion, gene knockout via insertion of premature stop codons, and gene insertion. We show that spCas9 is inactive in vivo above 42 °C, and we employ the wide temperature growth range of B. smithii as an induction system for spCas9 expression. Homologous recombination with plasmid-borne editing templates is performed at 45-55 °C, when spCas9 is inactive. Subsequent transfer to 37 °C allows for counterselection through production of active spCas9, which introduces lethal double-stranded DNA breaks to the nonedited cells. The developed method takes 4 days with 90, 100, and 20% efficiencies for gene deletion, knockout, and insertion, respectively. The major advantage of our system is the limited requirement for genetic parts: only one plasmid, one selectable marker, and a promoter are needed, and the promoter does not need to be inducible or well-characterized. Hence, it can be easily applied for genome editing purposes in both mesophilic and thermophilic nonmodel organisms with a limited genetic toolbox and ability to grow at, or tolerate, temperatures of 37 and at or above 42 °C.

摘要

尽管嗜热微生物具有工业和科学价值,但针对它们的成熟遗传工具却很稀缺。虽然基于CRISPR/Cas9的高效基因组编辑在原核生物中越来越普遍,但从未在嗜热菌中应用过。在此,我们将基于化脓性链球菌Cas9(spCas9)的基因组编辑应用于中度嗜热菌,即史氏芽孢杆菌,包括基因缺失、通过插入提前终止密码子进行基因敲除以及基因插入。我们发现spCas9在42℃以上的体内环境中无活性,并且利用史氏芽孢杆菌较宽的温度生长范围作为spCas9表达的诱导系统。当spCas9无活性时,与质粒携带的编辑模板进行同源重组在45-55℃下进行。随后转移至37℃可通过产生有活性的spCas9进行反选择,有活性的spCas9会给未编辑的细胞引入致命的双链DNA断裂。所开发的方法分别以90%、100%和20%的效率进行基因缺失、敲除和插入,耗时4天。我们系统的主要优点是对遗传元件的需求有限:仅需一个质粒、一个选择标记和一个启动子,且该启动子无需是可诱导的或特性明确的。因此,它可轻松应用于遗传工具箱有限且能够在37℃以及42℃或更高温度下生长或耐受的嗜温和嗜热非模式生物的基因组编辑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e8b/5440800/a2df501821d4/sb-2016-00339a_0001.jpg

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