In vitro studies of biological macromolecules are usually performed in dilute, buffered solutions containing one or just a few different biological macromolecules. Under these conditions, the interactions among molecules are diffusion limited. On the contrary, in living systems, macromolecules of a given type are surrounded by many others, at very high total concentrations. In the last few years, there has been an increasing effort to study biological macromolecules directly in natural crowded environments, as in intact bacterial cells or by mimicking natural crowding by adding proteins, polysaccharides, or even synthetic polymers. Here, we propose the use of hen egg white (HEW) as a simple natural medium, with all features of the media of ...
Most biochemical reactions have evolved in crowded intracellular environments. However, the complexi...
My doctoral studies deals with model systems in soft matter. In these model systems, we address ques...
Nuclear magnetic resonance (NMR) is amongst the most powerful and versatile spectroscopic tools for ...
In vitro studies of biological macromolecules are usually performed in dilute, buffered solutions co...
The cytoplasm is crowded, and the concentration of macromolecules can reach ~ 300 g/L, an environmen...
Macromolecular crowding has been shown by previous research to affect the stability of proteins. How...
Macromolecular crowding is important both physiologically and practically. The physiological importa...
Most proteins function in nature under crowded conditions, and crowding can change protein propertie...
<div><p>Inside cells, the concentration of macromolecules can reach up to 400 g/L. In such crowded e...
An understanding of cellular chemistry requires knowledge of how crowded environments affect protein...
Inside cells, the concentration of macromolecules can reach up to 400 g/L. In such crowded environme...
Conventional NMR approaches to detect weak protein binding and aggregation are hindered by the incre...
In all intracellular processes, protein structure and dynamics are subjected to the influence of mac...
In the presence of high concentrations of inert macromolecules, the self-association of proteins is ...
Inside cells, the concentration of macromolecules can reach up to 400 g/L. In such crowded environme...
Most biochemical reactions have evolved in crowded intracellular environments. However, the complexi...
My doctoral studies deals with model systems in soft matter. In these model systems, we address ques...
Nuclear magnetic resonance (NMR) is amongst the most powerful and versatile spectroscopic tools for ...
In vitro studies of biological macromolecules are usually performed in dilute, buffered solutions co...
The cytoplasm is crowded, and the concentration of macromolecules can reach ~ 300 g/L, an environmen...
Macromolecular crowding has been shown by previous research to affect the stability of proteins. How...
Macromolecular crowding is important both physiologically and practically. The physiological importa...
Most proteins function in nature under crowded conditions, and crowding can change protein propertie...
<div><p>Inside cells, the concentration of macromolecules can reach up to 400 g/L. In such crowded e...
An understanding of cellular chemistry requires knowledge of how crowded environments affect protein...
Inside cells, the concentration of macromolecules can reach up to 400 g/L. In such crowded environme...
Conventional NMR approaches to detect weak protein binding and aggregation are hindered by the incre...
In all intracellular processes, protein structure and dynamics are subjected to the influence of mac...
In the presence of high concentrations of inert macromolecules, the self-association of proteins is ...
Inside cells, the concentration of macromolecules can reach up to 400 g/L. In such crowded environme...
Most biochemical reactions have evolved in crowded intracellular environments. However, the complexi...
My doctoral studies deals with model systems in soft matter. In these model systems, we address ques...
Nuclear magnetic resonance (NMR) is amongst the most powerful and versatile spectroscopic tools for ...