Background: Proteomics is an important tool for the investigation of dynamic physiological responses of microbes under heavy metal stress. To gain insight into how bacteria respond to manganese (II) and identify the proteins involved in Mn (II) oxidation, the shotgun proteomics approach was applied to a potential Mn (II)-oxidizing Serratia marcescens strain cultivated in the absence and presence of Mn (II). Results: The LG1 strain, which grew equally well in the two conditions, was found to express a set of proteins related to cellular processes vital for survival, as well as proteins involved in adaptation and tolerance to Mn (II). The multicopper oxidase CueO was identified, indicating its probable participation in the Mn (II) bio-o...
In this study we demonstrate that the demosponge Suberites domuncula harbors a Mn(II)-oxidizing bact...
The goal of this study was to understand the mechanism by which manganese protects cells against rea...
The marine Bacillus sp. strain SG-1 produces dormant spores that catalyze the oxidation of soluble M...
Abstract Background Proteomics is an important tool for the investigation of dynamic physiological r...
Organisms, in general, respond to environmental stress by altering their pattern of protein expressi...
anganese is an important metal for the maintenance of several biological functions, but it can be to...
Manganese is an essential element for all living things. Manganese plays a role in geochemical cycle...
Acidobacteria represents one of the most dominant bacterial groups across diverse ecosystems. Howeve...
Bacterial manganese (Mn) oxidation plays an important role in the global biogeochemical cycling of M...
Background Cylindrospermopsin is a highly persistent cyanobacterial secondary metabolite toxic to h...
To understand the effects triggered by Mn2+ on Deinococcus radiodurans, the proteome patterns associ...
Microorganisms catalyze the formation of naturally occurring Mn oxides, but little is known about th...
The study’s focus is the manganese oxidation mechanism. This mechanism is crucial, especially in bac...
Manganese (Mn) is an important metal in geochemical cycles. Some microorganisms can oxidize Mn(II) t...
Manganese (Mn) is an important metal in geochemical cycles. Some microorganisms can oxidize Mn (II) ...
In this study we demonstrate that the demosponge Suberites domuncula harbors a Mn(II)-oxidizing bact...
The goal of this study was to understand the mechanism by which manganese protects cells against rea...
The marine Bacillus sp. strain SG-1 produces dormant spores that catalyze the oxidation of soluble M...
Abstract Background Proteomics is an important tool for the investigation of dynamic physiological r...
Organisms, in general, respond to environmental stress by altering their pattern of protein expressi...
anganese is an important metal for the maintenance of several biological functions, but it can be to...
Manganese is an essential element for all living things. Manganese plays a role in geochemical cycle...
Acidobacteria represents one of the most dominant bacterial groups across diverse ecosystems. Howeve...
Bacterial manganese (Mn) oxidation plays an important role in the global biogeochemical cycling of M...
Background Cylindrospermopsin is a highly persistent cyanobacterial secondary metabolite toxic to h...
To understand the effects triggered by Mn2+ on Deinococcus radiodurans, the proteome patterns associ...
Microorganisms catalyze the formation of naturally occurring Mn oxides, but little is known about th...
The study’s focus is the manganese oxidation mechanism. This mechanism is crucial, especially in bac...
Manganese (Mn) is an important metal in geochemical cycles. Some microorganisms can oxidize Mn(II) t...
Manganese (Mn) is an important metal in geochemical cycles. Some microorganisms can oxidize Mn (II) ...
In this study we demonstrate that the demosponge Suberites domuncula harbors a Mn(II)-oxidizing bact...
The goal of this study was to understand the mechanism by which manganese protects cells against rea...
The marine Bacillus sp. strain SG-1 produces dormant spores that catalyze the oxidation of soluble M...