The effect of osmotic stress on the intracellular diffusion of proteins in Escherichia coli was studied, using a pulsed version of fluorescence recovery after photo-bleaching, pulsed-FRAP. This method employs sequences of laser pulses which only partly bleach the fluorophores in a cell. Because the cell size and geometry are taken into account, pulsed-FRAP enables to measure diffusion in very small cells of different shapes. We found that upon an osmotic upshock from 0.15 to 0.6 Osm, imposed by NaCl or sorbitol, the apparent intracellular diffusion (D) of mobile green fluorescent protein (GFP) decreased from 3.2 to 0.4 µm2 s-1, whereas the membrane permeable glycerol had no effect. Exposing E. coli cells to higher osmolalities (> 0.6 Osm) l...
Inside prokaryotic cells, passive translational diffusion typically limits the rates with which cyto...
<p>Diffusion coefficients of GFP in the cytoplasm of <i>E. coli</i> measured with “conventional FRAP...
Inside prokaryotic cells, passive translational diffusion typically limits the rates with which cyto...
The effect of osmotic stress on the intracellular diffusion of proteins in Escherichia coli was stud...
The effect of osmotic stress on the intracellular diffusion of proteins in Escherichia coli was stud...
AbstractThe physical and mechanical properties of the cell envelope of Escherichia coli are poorly u...
We determined the diffusion coefficients (D) of (macro)molecules of different sizes (from ~0.5 to 60...
Surprisingly little is known about the physical environment inside a prokaryotic cell. Knowledge of ...
We measured translational diffusion of proteins in the cytoplasm and plasma membrane of the Gram-pos...
The rate of protein diffusion in bacterial cytoplasm may constrain a variety of cellular functions a...
Escherichia coli adapts to changing environmental osmolality to survive and maintain growth. It has ...
Diffusion in the bacterial cytoplasm is regarded as the primary method of intracellular protein move...
Background: Macromolecule mobility is often quantified with Fluorescence Recovery After Photobleachi...
Protein mobility affects most cellular processes, such as the rates of enzymatic reactions, signal t...
Fluidity is essential for many biological membrane functions. The basis for understanding membrane s...
Inside prokaryotic cells, passive translational diffusion typically limits the rates with which cyto...
<p>Diffusion coefficients of GFP in the cytoplasm of <i>E. coli</i> measured with “conventional FRAP...
Inside prokaryotic cells, passive translational diffusion typically limits the rates with which cyto...
The effect of osmotic stress on the intracellular diffusion of proteins in Escherichia coli was stud...
The effect of osmotic stress on the intracellular diffusion of proteins in Escherichia coli was stud...
AbstractThe physical and mechanical properties of the cell envelope of Escherichia coli are poorly u...
We determined the diffusion coefficients (D) of (macro)molecules of different sizes (from ~0.5 to 60...
Surprisingly little is known about the physical environment inside a prokaryotic cell. Knowledge of ...
We measured translational diffusion of proteins in the cytoplasm and plasma membrane of the Gram-pos...
The rate of protein diffusion in bacterial cytoplasm may constrain a variety of cellular functions a...
Escherichia coli adapts to changing environmental osmolality to survive and maintain growth. It has ...
Diffusion in the bacterial cytoplasm is regarded as the primary method of intracellular protein move...
Background: Macromolecule mobility is often quantified with Fluorescence Recovery After Photobleachi...
Protein mobility affects most cellular processes, such as the rates of enzymatic reactions, signal t...
Fluidity is essential for many biological membrane functions. The basis for understanding membrane s...
Inside prokaryotic cells, passive translational diffusion typically limits the rates with which cyto...
<p>Diffusion coefficients of GFP in the cytoplasm of <i>E. coli</i> measured with “conventional FRAP...
Inside prokaryotic cells, passive translational diffusion typically limits the rates with which cyto...