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用于乳酸乳球菌基因编辑和质粒消除的易消除且pH调节的CRISPR-Cas9质粒

Easy-Curing and pH-Regulated CRISPR-Cas9 Plasmids for Gene Editing and Plasmid Curing in Lactococcus cremoris.

作者信息

Garay-Novillo Javier Nicolás, Ruiz-Masó José Ángel, Del Solar Gloria, Barra José Luis

机构信息

Departamento de Química Biológica Ranwel Caputto, CIQUIBIC-CONICET, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Córdoba, Argentina.

Departamento de Biotecnología Microbiana y de Plantas, Centro de Investigaciones Biológicas Margarita Salas, Consejo Superior de Investigaciones Científicas, Madrid, Spain.

出版信息

Microb Biotechnol. 2024 Dec;17(12):e70060. doi: 10.1111/1751-7915.70060.

Abstract

In this work, we developed a plasmid-based CRISPR-Cas9 strategy for editing Lactococcus cremoris, which allows easy generation of plasmid-free strains with the desired modification. We constructed versatile shuttle vectors based on the theta-type pAMβ1 promiscuous replicon and p15A ori, expressing both the Cas9 nuclease gene (under pH-regulated promoters derived from P170) and a single-guide RNA for specific targeting (under a strong constitutive promoter). The vectors designed for plasmid targeting were very effective for low- and high-copy-number plasmid curing in L. cremoris, and their targeting efficiency was shown to be tunable by regulating cas9 expression. For chromosome editing, we implemented a host-independent method that enhances double-homologous recombination events using plasmids expressing the genes encoding λRed-phage Redβ recombinase and Escherichia coli single-stranded DNA binding protein (EcSSB). By coupling either the endogenous recombination machinery or the Redβ-EcSSB-assisted recombination system with our novel chromosome-targeting CRISPR-Cas9 plasmids, we efficiently generated and selected thousands of gene-edited cells. Examination of the impact of the constructed CRISPR-Cas9 vectors on host fitness revealed no Cas9-associated toxicity, and, remarkably, these vectors exhibited a very high loss rate when growing the bacterial host cells in the absence of selective pressure.

摘要

在这项工作中,我们开发了一种基于质粒的CRISPR-Cas9策略用于编辑乳酸乳球菌,该策略能够轻松生成具有所需修饰的无质粒菌株。我们基于θ型pAMβ1混杂复制子和p15A ori构建了通用穿梭载体,其表达Cas9核酸酶基因(在源自P170的pH调节启动子控制下)和用于特异性靶向的单向导RNA(在强组成型启动子控制下)。设计用于质粒靶向的载体对乳酸乳球菌中低拷贝数和高拷贝数质粒的消除非常有效,并且通过调节cas9表达显示其靶向效率是可调节的。对于染色体编辑,我们实施了一种不依赖宿主的方法,该方法利用表达编码λRed噬菌体Redβ重组酶和大肠杆菌单链DNA结合蛋白(EcSSB)的基因的质粒增强双同源重组事件。通过将内源性重组机制或Redβ-EcSSB辅助重组系统与我们新型的染色体靶向CRISPR-Cas9质粒相结合,我们高效地生成并筛选了数千个基因编辑细胞。对构建的CRISPR-Cas9载体对宿主适应性影响的检测显示没有与Cas9相关的毒性作用,并且值得注意的是,当在没有选择压力的情况下培养细菌宿主细胞时,这些载体表现出非常高的丢失率。

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