A metabolomic analysis using high resolution 1H NMR spectroscopy coupled with multivariate statistical analysis was used to characterize the alterations in the endo- and exo-metabolome of S. cerevisiae BY4741 during the exponential phase of growth in minimal medium supplemented with different ethanol concentrations (0, 2, 4 and 6% v/v). This study provides evidence that supports the notion that ethanol stress induces reductive stress in yeast cells, which, in turn, appears to be counteracted by the increase in the rate of NAD+ regenerating bioreactions. Metabolomics data also shows increased intra- and extra-cellular accumulation of most amino acids and TCA cycle intermediates in yeast cells growing under ethanol stress suggesting a state o...
Disruption of specific metabolic pathways constitutes the mode of action of many known toxicants and...
In yeast engineering, metabolic burden is often linked to the reprogramming of resources from regula...
An important step toward renewable and sustainable alternative energies is the replacement of liquid...
A metabolomic analysis using high resolution 1H NMR spectroscopy coupled with multivariate statistic...
<div><p>A metabolomic analysis using high resolution <sup>1</sup>H NMR spectroscopy coupled with mul...
The understanding of the metabolic behaviour of complex systems such as eukaryotic cells needs the d...
The understanding of the metabolic behaviour of complex systems such as eukaryotic cells needs the d...
The understanding of the metabolic behaviour of complex systems such as eukaryotic cells needs the d...
Saccharomyces cerevisiae is an important model to understand the eukaryotic cells control mechanisms...
Saccharomyces cerevisiae is an important model to understand the eukaryotic cells control mechanisms...
Saccharomyces cerevisiae is an important model to understand the eukaryotic cells control mechanisms...
AbstractIn this paper the combined use of in vivo 13C-nuclear magnetic resonance spectroscopy and ma...
In vivo NMR spectroscopy, together with selectively 13C-labelled substrates and 'statistical total c...
In vivo NMR spectroscopy, together with selectively 13C-labelled substrates and 'statistical total c...
In vivo NMR spectroscopy, together with selectively 13C-labelled substrates and 'statistical total c...
Disruption of specific metabolic pathways constitutes the mode of action of many known toxicants and...
In yeast engineering, metabolic burden is often linked to the reprogramming of resources from regula...
An important step toward renewable and sustainable alternative energies is the replacement of liquid...
A metabolomic analysis using high resolution 1H NMR spectroscopy coupled with multivariate statistic...
<div><p>A metabolomic analysis using high resolution <sup>1</sup>H NMR spectroscopy coupled with mul...
The understanding of the metabolic behaviour of complex systems such as eukaryotic cells needs the d...
The understanding of the metabolic behaviour of complex systems such as eukaryotic cells needs the d...
The understanding of the metabolic behaviour of complex systems such as eukaryotic cells needs the d...
Saccharomyces cerevisiae is an important model to understand the eukaryotic cells control mechanisms...
Saccharomyces cerevisiae is an important model to understand the eukaryotic cells control mechanisms...
Saccharomyces cerevisiae is an important model to understand the eukaryotic cells control mechanisms...
AbstractIn this paper the combined use of in vivo 13C-nuclear magnetic resonance spectroscopy and ma...
In vivo NMR spectroscopy, together with selectively 13C-labelled substrates and 'statistical total c...
In vivo NMR spectroscopy, together with selectively 13C-labelled substrates and 'statistical total c...
In vivo NMR spectroscopy, together with selectively 13C-labelled substrates and 'statistical total c...
Disruption of specific metabolic pathways constitutes the mode of action of many known toxicants and...
In yeast engineering, metabolic burden is often linked to the reprogramming of resources from regula...
An important step toward renewable and sustainable alternative energies is the replacement of liquid...