A MAD7‐based genome editing system for Escherichia coli

Abstract A broad variety of biomolecules is industrially produced in bacteria and yeasts. These microbial expression hosts can be optimized through genetic engineering using CRISPR tools. Here, we designed and characterized such a modular genome editing system based on the Cas12a‐like RNA‐guided nuc...

Full description

Bibliographic Details
Main Authors: Markus Mund, Wadim Weber, Daniel Degreif, Christoph Schiklenk
Format: Article
Language:English
Published: Wiley 2023-05-01
Series:Microbial Biotechnology
Online Access:https://doi.org/10.1111/1751-7915.14234
Description
Summary:Abstract A broad variety of biomolecules is industrially produced in bacteria and yeasts. These microbial expression hosts can be optimized through genetic engineering using CRISPR tools. Here, we designed and characterized such a modular genome editing system based on the Cas12a‐like RNA‐guided nuclease MAD7 in Escherichia coli. This system enables the efficient generation of single nucleotide polymorphisms (SNPs) or gene deletions and can directly be used with donor DNA from benchtop DNA assembly to increase throughput. We combined multiple edits to engineer an E. coli strain with reduced overflow metabolism and increased plasmid yield, highlighting the versatility and industrial applicability of this approach.
ISSN:1751-7915