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  • Targeted Large-Scale Deletion of Bacterial Genomes Using CRISPR-Nickases.

Targeted Large-Scale Deletion of Bacterial Genomes Using CRISPR-Nickases.

ACS synthetic biology (2015-10-10)
Kylie Standage-Beier, Qi Zhang, Xiao Wang
ABSTRACT

Programmable CRISPR-Cas systems have augmented our ability to produce precise genome manipulations. Here we demonstrate and characterize the ability of CRISPR-Cas derived nickases to direct targeted recombination of both small and large genomic regions flanked by repetitive elements in Escherichia coli. While CRISPR directed double-stranded DNA breaks are highly lethal in many bacteria, we show that CRISPR-guided nickase systems can be programmed to make precise, nonlethal, single-stranded incisions in targeted genomic regions. This induces recombination events and leads to targeted deletion. We demonstrate that dual-targeted nicking enables deletion of 36 and 97 Kb of the genome. Furthermore, multiplex targeting enables deletion of 133 Kb, accounting for approximately 3% of the entire E. coli genome. This technology provides a framework for methods to manipulate bacterial genomes using CRISPR-nickase systems. We envision this system working synergistically with preexisting bacterial genome engineering methods.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
GenElute Bacterial Genomic DNA Kits, sufficient for 70 purifications
Sigma-Aldrich
GenElute PCR Clean-Up Kit, sufficient for 70 purifications