Bacillus subtilis is a well-characterized microorganism and a model for the study of Gram-positive bacteria. The bacterium can produce proteins at high densities and yields, which has made it valuable for industrial bioproduction. Like other cell factories, metabolic modeling of B. subtilis has discovered ways to optimize its metabolism toward various applications. The first genome-scale metabolic model (M-model) of B. subtilis was published more than a decade ago and has been applied extensively to understand metabolism, to predict growth phenotypes, and served as a template to reconstruct models for other Gram-positive bacteria. However, M-models are ill-suited to simulate the production and secretion of proteins as well as their proteomi...
PhD ThesisBiotechnology plays a central role in setting the course for a resource-efficient and sust...
Stress proteins in the cytoplasmic membrane fraction of Bacillus subtilis A primary habitat of the G...
Aims: Overproduced α-amylases in Bacillus subtilis provoke a specific stress response involving the ...
Abstract Bacillus subtilis is a well-characterized microorganism and a model for the study of Gram-p...
Complementing proteomic technologies enable an unbiased view of cellular adaptation and thus may pro...
Abstract Background Genome-scale metabolic models (GEMs) allow predicting metabolic phenotypes from ...
Background: Bacillus subtilis is a favorable host for the production of industrially relevant protei...
Abstract Background Bacillus subtilis is a favorable host for the production of industrially relevan...
The soil bacterium Bacillus subtilis is capable of surviving most of the ensuing environmental stres...
Bacillus subtilis is an effective workhorse for the production of many industrial products. The high...
markdownabstract__Background:__ Bacillus subtilis is an important cell factory for the biotechnologi...
Essential membrane proteins are generally recognized as relevant potential drug targets due to their...
We have determined the time-resolved transcriptome of the model gram-positive organism B. subtilis d...
PhD ThesisBiotechnology plays a central role in setting the course for a resource-efficient and sust...
Stress proteins in the cytoplasmic membrane fraction of Bacillus subtilis A primary habitat of the G...
Aims: Overproduced α-amylases in Bacillus subtilis provoke a specific stress response involving the ...
Abstract Bacillus subtilis is a well-characterized microorganism and a model for the study of Gram-p...
Complementing proteomic technologies enable an unbiased view of cellular adaptation and thus may pro...
Abstract Background Genome-scale metabolic models (GEMs) allow predicting metabolic phenotypes from ...
Background: Bacillus subtilis is a favorable host for the production of industrially relevant protei...
Abstract Background Bacillus subtilis is a favorable host for the production of industrially relevan...
The soil bacterium Bacillus subtilis is capable of surviving most of the ensuing environmental stres...
Bacillus subtilis is an effective workhorse for the production of many industrial products. The high...
markdownabstract__Background:__ Bacillus subtilis is an important cell factory for the biotechnologi...
Essential membrane proteins are generally recognized as relevant potential drug targets due to their...
We have determined the time-resolved transcriptome of the model gram-positive organism B. subtilis d...
PhD ThesisBiotechnology plays a central role in setting the course for a resource-efficient and sust...
Stress proteins in the cytoplasmic membrane fraction of Bacillus subtilis A primary habitat of the G...
Aims: Overproduced α-amylases in Bacillus subtilis provoke a specific stress response involving the ...