Multiplex genome engineering is a standalone recombineering tool for large-scale programming and accelerated evolution of cells. However, this advanced genome engineering technique has been limited to use in selected bacterial strains. We developed a simple and effective strain-independent method for effective genome engineering in Escherichia coli. The method involves introducing a suicide plasmid carrying the λ Red recombination system into the mutS gene. The suicide plasmid can be excised from the chromosome via selection in the absence of antibiotics, thus allowing transient inactivation of the mismatch repair system during genome engineering. In addition, we developed another suicide plasmid that enables integration of large DNA fragme...
The design and synthesis of entire genomes is a powerful approach that allows the study of biologica...
Genome engineering of microorganisms has become a standard in microbial biotechnologies. Several eff...
Genome engineering methods in E. coli allow for easy to perform manipulations of the chromosome in v...
Multiplex genome engineering is a standalone recombineering tool for large-scale programming and acc...
E. coli K-12 is the workhorse of molecular biology and the platform of choice for production of DN...
Various methods for editing specific sites in the Escherichia coli chromosome are available, and gen...
Metabolic engineering and synthetic biology aim to create a potent bio-systems including bacteria fo...
Our goal is to construct an improved Escherichia coli to serve both as a better model organism and a...
The bacterium Escherichia coli has been well-justified as an effective workhorse for industrial appl...
To improve heterologous protein expression and growth of laboratory strains of Escherichia Coli, cre...
With the use of synthetic biology, we reduced the Escherichia coli K-12 genome by making planned, pr...
We describe an optimized system for the easy, effective, and precise modification of the Escherichia...
We describe an optimized system for the easy, effective, and precise modification of the Escherichia...
We describe an optimized system for the easy, effective, and precise modification of the Escherichia...
Various methods for editing specific sites in the Escherichia coli chromosome are available, and gen...
The design and synthesis of entire genomes is a powerful approach that allows the study of biologica...
Genome engineering of microorganisms has become a standard in microbial biotechnologies. Several eff...
Genome engineering methods in E. coli allow for easy to perform manipulations of the chromosome in v...
Multiplex genome engineering is a standalone recombineering tool for large-scale programming and acc...
E. coli K-12 is the workhorse of molecular biology and the platform of choice for production of DN...
Various methods for editing specific sites in the Escherichia coli chromosome are available, and gen...
Metabolic engineering and synthetic biology aim to create a potent bio-systems including bacteria fo...
Our goal is to construct an improved Escherichia coli to serve both as a better model organism and a...
The bacterium Escherichia coli has been well-justified as an effective workhorse for industrial appl...
To improve heterologous protein expression and growth of laboratory strains of Escherichia Coli, cre...
With the use of synthetic biology, we reduced the Escherichia coli K-12 genome by making planned, pr...
We describe an optimized system for the easy, effective, and precise modification of the Escherichia...
We describe an optimized system for the easy, effective, and precise modification of the Escherichia...
We describe an optimized system for the easy, effective, and precise modification of the Escherichia...
Various methods for editing specific sites in the Escherichia coli chromosome are available, and gen...
The design and synthesis of entire genomes is a powerful approach that allows the study of biologica...
Genome engineering of microorganisms has become a standard in microbial biotechnologies. Several eff...
Genome engineering methods in E. coli allow for easy to perform manipulations of the chromosome in v...