Abstract Background Tailoring gene expression to balance metabolic fluxes is critical for the overproduction of metabolites in yeast hosts, and its implementation requires coordinated regulation at both transcriptional and translational levels. Although synthetic minimal yeast promoters have shown many advantages compared to natural promoters, their transcriptional strength is still limited, which restricts their applications in pathway engineering. Results In this work, we sought to expand the application scope of synthetic minimal yeast promoters by enhancing the corresponding translation levels using specific Kozak sequence variants. Firstly, we chose the reported UASF-E-C-Core1 minimal promoter as a library template and determined its K...
Promoters are key components of cell factory design, allowing precise expression of genes in a heter...
Advances in synthetic biology and our understanding of the rules of promoter architecture have led t...
BackgroundSaccharomyces cerevisiae is an important synthetic biology chassis for microbial productio...
Altering gene expression regulation by promoter engineering is a very effective way to fine-tune het...
Altering gene expression regulation by promoter engineering is a very effective way to finetune hete...
The ease of highly sophisticated genetic manipulations in the yeast Saccharomyces cerevisiae has ini...
Temporal control of heterologous pathway expression is critical to achieve optimal efficiency in mic...
Background: Assembly of heterologous metabolic pathways is commonly required to generate microbial c...
The most well characterized eukaryote model organism Saccharomyces cerevisiae is not only preferred ...
Promoters are indispensable elements of a standardized parts collection for synthetic biology. Regul...
The precise tuning of gene expression levels is essential for optimal performance of transcriptional...
Metabolic engineering of yeast is an attractive way to produce advanced biofuels. However, engineeri...
The GAL promoters are applied in metabolic engineering and synthetic biology to control gene express...
Promoters play an essential role in the regulation of gene expression for fine-tuning genetic circui...
Abstract Background Saccharomyces cerevisiae is an important synthetic biology chassis for microbial...
Promoters are key components of cell factory design, allowing precise expression of genes in a heter...
Advances in synthetic biology and our understanding of the rules of promoter architecture have led t...
BackgroundSaccharomyces cerevisiae is an important synthetic biology chassis for microbial productio...
Altering gene expression regulation by promoter engineering is a very effective way to fine-tune het...
Altering gene expression regulation by promoter engineering is a very effective way to finetune hete...
The ease of highly sophisticated genetic manipulations in the yeast Saccharomyces cerevisiae has ini...
Temporal control of heterologous pathway expression is critical to achieve optimal efficiency in mic...
Background: Assembly of heterologous metabolic pathways is commonly required to generate microbial c...
The most well characterized eukaryote model organism Saccharomyces cerevisiae is not only preferred ...
Promoters are indispensable elements of a standardized parts collection for synthetic biology. Regul...
The precise tuning of gene expression levels is essential for optimal performance of transcriptional...
Metabolic engineering of yeast is an attractive way to produce advanced biofuels. However, engineeri...
The GAL promoters are applied in metabolic engineering and synthetic biology to control gene express...
Promoters play an essential role in the regulation of gene expression for fine-tuning genetic circui...
Abstract Background Saccharomyces cerevisiae is an important synthetic biology chassis for microbial...
Promoters are key components of cell factory design, allowing precise expression of genes in a heter...
Advances in synthetic biology and our understanding of the rules of promoter architecture have led t...
BackgroundSaccharomyces cerevisiae is an important synthetic biology chassis for microbial productio...