Metabolic heterogeneity between individual cells of a population harbors significant challenges for fundamental and applied research. Identifying metabolic heterogeneity and investigating its emergence require tools to zoom into metabolism of individual cells. While methods exist to measure metabolite levels in single cells, we lack capability to measure metabolic flux, i.e., the ultimate functional output of metabolic activity, on the single-cell level. Here, combining promoter engineering, computational protein design, biochemical methods, proteomics, and metabolomics, we developed a biosensor to measure glycolytic flux in single yeast cells. Therefore, drawing on the robust cell-intrinsic correlation between glycolytic flux and levels of...
The cAMP-PKA signalling cascade in budding yeast regulates adaptation to changing environments. We d...
Dynamic environments are commonplace in the natural world, from fluctuations in nutrient sources tha...
BACKGROUND: Mitogen activated protein kinases (MAPK) play an essential role in integrating extra-cel...
Metabolic heterogeneity between individual cells of a population harbors significant challenges for ...
RNA-based sensors for intracellular metabolites are a promising solution to the emerging issue of me...
RNA-based sensors for intracellular metabolites are a promising solution to the emerging issue of me...
Single-cell level measurements are necessary to characterize the intrinsic biological variability in...
Our lab has recently discovered metabolic oscillations in single cells of baker’s yeast, where cruci...
Using protein counts sampled from single cell proteomics distributions to constrain fluxes through a...
In this unit, we provide a clear exposition of the methodology employed to study dynamic responses i...
Motorized fluorescence microscopy combined with high-throughput microfluidic chips is a powerful met...
Fluorescent biosensors are powerful tools allowing the concentration of metabolites and small molecu...
With the expanding interest in cellular responses to dynamic environments, microfluidic devices have...
The cAMP-PKA signaling cascade in budding yeast regulates adaptation to changing environments. We de...
Adenosine 5-triphosphate (ATP) is the main free energy carrier in metabolism. In budding yeast, shif...
The cAMP-PKA signalling cascade in budding yeast regulates adaptation to changing environments. We d...
Dynamic environments are commonplace in the natural world, from fluctuations in nutrient sources tha...
BACKGROUND: Mitogen activated protein kinases (MAPK) play an essential role in integrating extra-cel...
Metabolic heterogeneity between individual cells of a population harbors significant challenges for ...
RNA-based sensors for intracellular metabolites are a promising solution to the emerging issue of me...
RNA-based sensors for intracellular metabolites are a promising solution to the emerging issue of me...
Single-cell level measurements are necessary to characterize the intrinsic biological variability in...
Our lab has recently discovered metabolic oscillations in single cells of baker’s yeast, where cruci...
Using protein counts sampled from single cell proteomics distributions to constrain fluxes through a...
In this unit, we provide a clear exposition of the methodology employed to study dynamic responses i...
Motorized fluorescence microscopy combined with high-throughput microfluidic chips is a powerful met...
Fluorescent biosensors are powerful tools allowing the concentration of metabolites and small molecu...
With the expanding interest in cellular responses to dynamic environments, microfluidic devices have...
The cAMP-PKA signaling cascade in budding yeast regulates adaptation to changing environments. We de...
Adenosine 5-triphosphate (ATP) is the main free energy carrier in metabolism. In budding yeast, shif...
The cAMP-PKA signalling cascade in budding yeast regulates adaptation to changing environments. We d...
Dynamic environments are commonplace in the natural world, from fluctuations in nutrient sources tha...
BACKGROUND: Mitogen activated protein kinases (MAPK) play an essential role in integrating extra-cel...