AbstractStudies of protein-protein interactions, carried out in polymer solutions, are designed to mimic the crowded environment inside living cells. It was shown that crowding enhances oligomerization and polymerization of macromolecules. Conversely, we have shown that crowding has only a small effect on the rate of association of protein complexes. Here, we investigated the equilibrium effects of crowding on protein heterodimerization of TEM1-β-lactamase with β-lactamase inhibitor protein (BLIP) and barnase with barstar. We also contrasted these with the effect of crowding on the weak binding pair CyPet-YPet. We measured the association and dissociation rates as well as the affinities and thermodynamic parameters of these interactions in ...
Macromolecular crowding within the cell can impact both protein folding and binding. Earlier models ...
Abstract: The intracellular environment represents an extremely crowded milieu, with a limited amoun...
AbstractIn a typical cell, proteins function in the crowded cytoplasmic environment where 30% of the...
AbstractThe crowded environment of cells poses a challenge for rapid protein-protein association. Ye...
AbstractThe crowded environment of cells poses a challenge for rapid protein-protein association. Ye...
AbstractIn a typical cell, proteins function in the crowded cytoplasmic environment where 30% of the...
AbstractMacromolecular crowding has long been known to significantly affect protein oligomerization,...
AbstractTraditionally, biochemical studies are performed in dilute homogenous solutions, which are v...
The intracellular environment represents an extremely crowded milieu, with a limited amount of free ...
ABSTRACT In a typical cell, proteins function in the crowded cytoplasmic environment where 30 % of t...
The intracellular environment represents an extremely crowded milieu, with a limited amount of free ...
Macromolecular crowding within the cell can impact both protein folding and binding. Earlier models ...
Intrinsically disordered proteins (IDPs) abound in cellular regulation. Their interactions are often...
<div><p>Macromolecular crowding within the cell can impact both protein folding and binding. Earlier...
Intrinsically disordered proteins (IDPs) abound in cellular regulation. Their interactions are often...
Macromolecular crowding within the cell can impact both protein folding and binding. Earlier models ...
Abstract: The intracellular environment represents an extremely crowded milieu, with a limited amoun...
AbstractIn a typical cell, proteins function in the crowded cytoplasmic environment where 30% of the...
AbstractThe crowded environment of cells poses a challenge for rapid protein-protein association. Ye...
AbstractThe crowded environment of cells poses a challenge for rapid protein-protein association. Ye...
AbstractIn a typical cell, proteins function in the crowded cytoplasmic environment where 30% of the...
AbstractMacromolecular crowding has long been known to significantly affect protein oligomerization,...
AbstractTraditionally, biochemical studies are performed in dilute homogenous solutions, which are v...
The intracellular environment represents an extremely crowded milieu, with a limited amount of free ...
ABSTRACT In a typical cell, proteins function in the crowded cytoplasmic environment where 30 % of t...
The intracellular environment represents an extremely crowded milieu, with a limited amount of free ...
Macromolecular crowding within the cell can impact both protein folding and binding. Earlier models ...
Intrinsically disordered proteins (IDPs) abound in cellular regulation. Their interactions are often...
<div><p>Macromolecular crowding within the cell can impact both protein folding and binding. Earlier...
Intrinsically disordered proteins (IDPs) abound in cellular regulation. Their interactions are often...
Macromolecular crowding within the cell can impact both protein folding and binding. Earlier models ...
Abstract: The intracellular environment represents an extremely crowded milieu, with a limited amoun...
AbstractIn a typical cell, proteins function in the crowded cytoplasmic environment where 30% of the...