Control of the expression levels of multiple enzymes in transgenic yeasts is essential for the effective production of complex molecules through fermentation. Here, we propose a tunable strategy for the control of expression levels based on the design of terminator regions and other gene-expression control elements in <i>Saccharomyces cerevisiae</i>. Our genome-integrated system, which is capable of producing high expression levels over a wide dynamic range, will broadly enable metabolic engineering and synthetic biology. We demonstrated that the activities of multiple cellulases and the production of ethanol were doubled in a transgenic yeast constructed with our system compared with those achieved with a standard expression system
Metabolic engineering of the yeast Saccharomyces cerevisiae by altering the abundance of native gene...
The most well characterized eukaryote model organism Saccharomyces cerevisiae is not only preferred ...
Living systems contain enormous potential to solve many pressing engineering problems, including the...
textMetabolic engineering has enabled the advancement of biotechnology over the past few decades thr...
Synthetic biology is founded on the idea that cells are living machines that execute genetically enc...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
The generation of novel yeast cell factories for production of high-value industrial biotechnologica...
Biotechnological production of fuels, chemicals and proteins is dependent on efficient production sy...
A fundamental undertaking of metabolic engineering involves identifying and troubleshooting metaboli...
Synthetic biology requires efficient systems that support the well-coordinated co-expression of mult...
Metabolic engineering, defined as the practice of manipulating cells\u27 genetic and regulatory proc...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
Fine control of the expression levels of proteins constitutes a major challenge in synthetic biology...
Constant progress in genetic engineering has given rise to a number of promising areas of research t...
Background: To achieve an economical cellulosic ethanol production, a host that can do both cellulos...
Metabolic engineering of the yeast Saccharomyces cerevisiae by altering the abundance of native gene...
The most well characterized eukaryote model organism Saccharomyces cerevisiae is not only preferred ...
Living systems contain enormous potential to solve many pressing engineering problems, including the...
textMetabolic engineering has enabled the advancement of biotechnology over the past few decades thr...
Synthetic biology is founded on the idea that cells are living machines that execute genetically enc...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
The generation of novel yeast cell factories for production of high-value industrial biotechnologica...
Biotechnological production of fuels, chemicals and proteins is dependent on efficient production sy...
A fundamental undertaking of metabolic engineering involves identifying and troubleshooting metaboli...
Synthetic biology requires efficient systems that support the well-coordinated co-expression of mult...
Metabolic engineering, defined as the practice of manipulating cells\u27 genetic and regulatory proc...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
Fine control of the expression levels of proteins constitutes a major challenge in synthetic biology...
Constant progress in genetic engineering has given rise to a number of promising areas of research t...
Background: To achieve an economical cellulosic ethanol production, a host that can do both cellulos...
Metabolic engineering of the yeast Saccharomyces cerevisiae by altering the abundance of native gene...
The most well characterized eukaryote model organism Saccharomyces cerevisiae is not only preferred ...
Living systems contain enormous potential to solve many pressing engineering problems, including the...