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A universal system for streamlined genome integrations with CRISPR-associated transposases

Authors :
Megan Wang
Charles Sanfiorenzo
Raymond J. Zhang
Kaihang Wang
Publication Year :
2022
Publisher :
Cold Spring Harbor Laboratory, 2022.

Abstract

Genome engineering tools in bacteria are limited by their targeting abilities, cargo size capacities, and integration efficiencies. Programmable Cas-directed transposons have been shown to bypass these constraints; however, genome integrations with these Cas-directed transposons require a cargo plasmid carrying the desired DNA payload flanked by directed repeat transposon arms. This cloning pre-requisite significantly hinders the modularity and streamlining capabilities of Cas-directed transposon systems, diminishing their utility for genome engineering. Here, we present a system that can robustly integrate a linear DNA payload into the genome ofE. coliby employing a Type I-F CRISPR-associated transposon fromVibrio cholerae. This system bypasses the traditional limiting factors of Cas-directed transposons by leveraging oligonucleotide design and nested polymerase chain reactions to reconstitute the transposon arms onto a designated cargo. Our findings demonstrate that this programmable linear integration method has high efficiencies in integrating large DNA payloads across multiple genomic loci.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........3d47802ef8158f050edb74676d86e4c5