In the budding yeast Saccharomyces cerevisiae, the FUN-LOV (FUNgal Light Oxygen and Voltage) optogenetic switch enables high levels of light-activated gene expression in a reversible and tunable fashion. The FUN-LOV components, under identical promoter and terminator sequences, are encoded in two different plasmids, which limits its future applications in wild and industrial yeast strains. In this work, we aim to expand the molecular versatility of the FUN-LOV switch to increase its biotechnological applications. Initially, we generated new variants of this system by replacing the promoter and terminator sequences and by cloning the system in a single plasmid (FUN-LOVSP). In a second step, we included the nourseothricin (Nat) or hygromycin ...
Abstract The ability to independently control the expression of different genes is important for qua...
The oleaginous yeast Rhodosporidium toruloides is an unconventional yeast species that can accumulat...
Synthetic biology is founded on the idea that cells are living machines that execute genetically enc...
ABSTRACT Optogenetic switches permit accurate control of gene expression upon light stimulation. The...
Optogenetics arises as a valuable tool to precisely control genetic circuits in microbial cell facto...
The tractability of the budding yeast genome has provided many insights into the fundamental mechani...
The synthetic yeast genome constructed by the International Synthetic Yeast Sc2.0 consortium adds th...
The precise spatiotemporal regulation of protein synthesis is essential for many complex biological ...
[[abstract]]Genetic manipulation of Saccharomyces cerevisiae for production of valuable biochemicals...
The GAL promoters are applied in metabolic engineering and synthetic biology to control gene express...
textMetabolic engineering has enabled the advancement of biotechnology over the past few decades thr...
This thesis presents several novel approaches to studying yeast polarity signaling. Cell polarity i...
Cellular processes are astonishing and complex but precise in regulation with great modularity which...
Light is a double-edged sword: it is essential for life on the planet but also causes cellular damag...
Yeasts have been used for thousands of years to make fermented foods and beverages, such as beer, wi...
Abstract The ability to independently control the expression of different genes is important for qua...
The oleaginous yeast Rhodosporidium toruloides is an unconventional yeast species that can accumulat...
Synthetic biology is founded on the idea that cells are living machines that execute genetically enc...
ABSTRACT Optogenetic switches permit accurate control of gene expression upon light stimulation. The...
Optogenetics arises as a valuable tool to precisely control genetic circuits in microbial cell facto...
The tractability of the budding yeast genome has provided many insights into the fundamental mechani...
The synthetic yeast genome constructed by the International Synthetic Yeast Sc2.0 consortium adds th...
The precise spatiotemporal regulation of protein synthesis is essential for many complex biological ...
[[abstract]]Genetic manipulation of Saccharomyces cerevisiae for production of valuable biochemicals...
The GAL promoters are applied in metabolic engineering and synthetic biology to control gene express...
textMetabolic engineering has enabled the advancement of biotechnology over the past few decades thr...
This thesis presents several novel approaches to studying yeast polarity signaling. Cell polarity i...
Cellular processes are astonishing and complex but precise in regulation with great modularity which...
Light is a double-edged sword: it is essential for life on the planet but also causes cellular damag...
Yeasts have been used for thousands of years to make fermented foods and beverages, such as beer, wi...
Abstract The ability to independently control the expression of different genes is important for qua...
The oleaginous yeast Rhodosporidium toruloides is an unconventional yeast species that can accumulat...
Synthetic biology is founded on the idea that cells are living machines that execute genetically enc...