Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by genetically engineered cell factories. Engineering of complex metabolic routes or cell behavior control systems requires robust and predictable gene expression tools. In this challenging task, orthogonality is a fundamental prerequisite for such tools. In this study, we developed and characterized in depth a comprehensive gene expression toolkit that allows accurate control of gene expression in Saccharomyces cerevisiae without marked interference with native cellular regulation. The toolkit comprises a set of transcription factors, designed to function as synthetic activators or repressors, and transcription-factor-dependent promoters, which to...
Synthetic biology is founded on the idea that cells are living machines that execute genetically enc...
Advances in synthetic biology have resulted in the development of genetic tools that support the des...
The most well characterized eukaryote model organism Saccharomyces cerevisiae is not only preferred ...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
This work describes the development and characterization of a modular synthetic expression system th...
Orthogonal systems for heterologous protein expression as well as for the engineering of synthetic g...
Temporal control of heterologous pathway expression is critical to achieve optimal efficiency in mic...
Metabolic engineering of microbial production hosts with long, heterologous pathways strongly increa...
In synthetic biology, researchers assemble biological components in new ways to produce systems with...
textMetabolic engineering has enabled the advancement of biotechnology over the past few decades thr...
The control of gene expression is an important tool for metabolic engineering, biomedicine, and biom...
Metabolic engineering of yeast is an attractive way to produce advanced biofuels. However, engineeri...
Eukaryotic transcription factors (TFs) perform complex and combinatorial functions within transcript...
Yeast is an ideal organism for the development and application of synthetic biology, yet there remai...
Synthetic biology is founded on the idea that cells are living machines that execute genetically enc...
Advances in synthetic biology have resulted in the development of genetic tools that support the des...
The most well characterized eukaryote model organism Saccharomyces cerevisiae is not only preferred ...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
This work describes the development and characterization of a modular synthetic expression system th...
Orthogonal systems for heterologous protein expression as well as for the engineering of synthetic g...
Temporal control of heterologous pathway expression is critical to achieve optimal efficiency in mic...
Metabolic engineering of microbial production hosts with long, heterologous pathways strongly increa...
In synthetic biology, researchers assemble biological components in new ways to produce systems with...
textMetabolic engineering has enabled the advancement of biotechnology over the past few decades thr...
The control of gene expression is an important tool for metabolic engineering, biomedicine, and biom...
Metabolic engineering of yeast is an attractive way to produce advanced biofuels. However, engineeri...
Eukaryotic transcription factors (TFs) perform complex and combinatorial functions within transcript...
Yeast is an ideal organism for the development and application of synthetic biology, yet there remai...
Synthetic biology is founded on the idea that cells are living machines that execute genetically enc...
Advances in synthetic biology have resulted in the development of genetic tools that support the des...
The most well characterized eukaryote model organism Saccharomyces cerevisiae is not only preferred ...