The stress protectant trehalose is synthesized in Acinetobacter baumannii from UPD‐glucose and glucose‐6‐phosphase via the OtsA/OtsB pathway. Previous studies proved that deletion of otsB led to a decreased virulence, the inability to grow at 45°C and a slight reduction of growth at high salinities indicating that trehalose is the cause of these phenotypes. We have questioned this conclusion by producing ∆otsA and ∆otsBA mutants and studying their phenotypes. Only deletion of otsB, but not deletion of otsA or otsBA, led to growth impairments at high salt and high temperature. The intracellular concentrations of trehalose and trehalose‐6‐phosphate were measured by NMR or enzymatic assay. Interestingly, none of the mutants accumulated trehalo...
Trehalose biosynthesis is considered an attractive target for the development of antimicrobials agai...
An important prelude to bacterial infection is the ability of a pathogen to survive independently of...
International audienceAdaptation to osmotic stress can be achieved by the accumulation of compatible...
The disaccharide trehalose is considered as a universal stress molecule, protecting cells and biomol...
Mycobacteria contain high levels of the disaccharide trehalose in free form as well as within variou...
ABSTRACT 1 2 Trehalose, a disaccharide accumulated by many microorganisms, acts as a protectant 3 du...
The disaccharide trehalose is considered as a universal stress molecule, protecting cells and biomol...
The current knowledge of trehalose biosynthesis under stress conditions is incomplete and needs furt...
The disaccharide trehalose is considered as a universal stress molecule, protecting cells and biomol...
We investigated the biochemical properties of the enzymes involved in trehalose metabolism in the cy...
Abstract: Candidatus Accumulibacter phosphatis is an important microorganism for enhanced biological...
Trehalose accumulation is a common response to several stresses in the yeast Saccharomyces cerevisia...
The xylem-dwelling plant pathogen Ralstonia solanacearum changes the chemical composition of host xy...
Trehalose is an enigmatic compound that accumulates in Saccharomyces cerevisiae and has been implica...
Not AvailableTrehalose (1-a-D-glucopyranosyl-1-a-D-glucopyranoside), a non-reducing disaccharide is ...
Trehalose biosynthesis is considered an attractive target for the development of antimicrobials agai...
An important prelude to bacterial infection is the ability of a pathogen to survive independently of...
International audienceAdaptation to osmotic stress can be achieved by the accumulation of compatible...
The disaccharide trehalose is considered as a universal stress molecule, protecting cells and biomol...
Mycobacteria contain high levels of the disaccharide trehalose in free form as well as within variou...
ABSTRACT 1 2 Trehalose, a disaccharide accumulated by many microorganisms, acts as a protectant 3 du...
The disaccharide trehalose is considered as a universal stress molecule, protecting cells and biomol...
The current knowledge of trehalose biosynthesis under stress conditions is incomplete and needs furt...
The disaccharide trehalose is considered as a universal stress molecule, protecting cells and biomol...
We investigated the biochemical properties of the enzymes involved in trehalose metabolism in the cy...
Abstract: Candidatus Accumulibacter phosphatis is an important microorganism for enhanced biological...
Trehalose accumulation is a common response to several stresses in the yeast Saccharomyces cerevisia...
The xylem-dwelling plant pathogen Ralstonia solanacearum changes the chemical composition of host xy...
Trehalose is an enigmatic compound that accumulates in Saccharomyces cerevisiae and has been implica...
Not AvailableTrehalose (1-a-D-glucopyranosyl-1-a-D-glucopyranoside), a non-reducing disaccharide is ...
Trehalose biosynthesis is considered an attractive target for the development of antimicrobials agai...
An important prelude to bacterial infection is the ability of a pathogen to survive independently of...
International audienceAdaptation to osmotic stress can be achieved by the accumulation of compatible...