AbstractMany aquatic microorganisms use gas vesicles to regulate their depth in the water column. The molecular basis for the novel physical properties of these floatation organelles remains mysterious due to the inapplicability of either solution or single crystal structural methods. In the present study, some folding constraints for the ∼7-kDa GvpA building blocks of the vesicles are established via matrix-assisted laser desorption ionization time-of-flight mass spectrometry studies of intact and proteolyzed vesicles from the cyanobacterium Anabaena flos-aquae and the archaea Halobacterium salinarum. The spectra of undigested vesicles show no evidence of posttranslational modification of the GvpA. The extent of carboxypeptidase digestion ...
Halophilic Archaea (Haloarchaea) thrive in salterns containing sodium chloride concentrations up to ...
A range of bacteria and archaea produce intracellular gas-filled proteinaceous structures that funct...
Halobacterium salinarum forms gas vesicles consisting of a protein wall surrounding a gas-filled spa...
Gas vesicles are gas-filled buoyancy organelles with walls that consist almost exclusively of gas ve...
AbstractGas vesicles are gas-filled buoyancy organelles with walls that consist almost exclusively o...
Gas vesicles are organelles that provide buoyancy to the aquatic microorganisms that harbor them. Th...
The interactions of the four gas vesicle proteins GvpA, C, N, and O were investigated by split-GFP a...
Gas vesicles are gas-filled protein structures increasing the buoyancy of cells. The gas vesicle env...
© 2016 Society for Applied Microbiology and John Wiley & Sons Ltd. Different modes of bacterial taxi...
Different modes of bacterial taxis play important roles in environmental adaptation, survival, colon...
Several extremely halophilic archaea produce proteinaceous gas vesicles consisting of a gas-permeabl...
Gas vesicles are proteinaceous, gas-filled nanostructures produced by some bacteria and archaea. The...
Halophilic Archaea (Haloarchaea) thrive in salterns containing sodium chloride concentrations up to ...
The protein that forms the gas vesicle in the cyanobacterium Anabaena flos-aquae has been imaged by ...
Gas vesicles are gas-filled prokaryotic organelles that function as flotation devices. This enables ...
Halophilic Archaea (Haloarchaea) thrive in salterns containing sodium chloride concentrations up to ...
A range of bacteria and archaea produce intracellular gas-filled proteinaceous structures that funct...
Halobacterium salinarum forms gas vesicles consisting of a protein wall surrounding a gas-filled spa...
Gas vesicles are gas-filled buoyancy organelles with walls that consist almost exclusively of gas ve...
AbstractGas vesicles are gas-filled buoyancy organelles with walls that consist almost exclusively o...
Gas vesicles are organelles that provide buoyancy to the aquatic microorganisms that harbor them. Th...
The interactions of the four gas vesicle proteins GvpA, C, N, and O were investigated by split-GFP a...
Gas vesicles are gas-filled protein structures increasing the buoyancy of cells. The gas vesicle env...
© 2016 Society for Applied Microbiology and John Wiley & Sons Ltd. Different modes of bacterial taxi...
Different modes of bacterial taxis play important roles in environmental adaptation, survival, colon...
Several extremely halophilic archaea produce proteinaceous gas vesicles consisting of a gas-permeabl...
Gas vesicles are proteinaceous, gas-filled nanostructures produced by some bacteria and archaea. The...
Halophilic Archaea (Haloarchaea) thrive in salterns containing sodium chloride concentrations up to ...
The protein that forms the gas vesicle in the cyanobacterium Anabaena flos-aquae has been imaged by ...
Gas vesicles are gas-filled prokaryotic organelles that function as flotation devices. This enables ...
Halophilic Archaea (Haloarchaea) thrive in salterns containing sodium chloride concentrations up to ...
A range of bacteria and archaea produce intracellular gas-filled proteinaceous structures that funct...
Halobacterium salinarum forms gas vesicles consisting of a protein wall surrounding a gas-filled spa...