The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a complex system challenges an understanding in terms of colloidal suspensions. As a fundamental test we employ neutron spectroscopy to measure the diffusion of tracer proteins (immunoglobulins) in a cell-like environment (cell lysate) with explicit control over crowding conditions. In combination with Stokesian dynamics simulation, we address protein diffusion on nanosecond time scales where hydrodynamic interactions dominate over negligible protein collisions. We successfully link the experimental results on these complex, flexible molecules with coarse-grained simulations providing a consistent understanding by colloid theories. Both experiments a...
The crowded environment of biological systems such as the interior of living cells is occupied by ma...
AbstractAs a model for understanding how molecular crowding influences diffusion and transport of pr...
Colloidal particles are model systems for a wide range of phenomena on mesoscopic length scales from...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
Macromolecular crowding in biological media is an essential factor for cellular function. The interp...
The crowded environment of biological systems such as the interior of living cells is occupied by ma...
AbstractWe have studied the diffusion of tracer proteins in highly concentrated random-coil polymer ...
International audienceThe crowded environment of biological systems such as the interior of living c...
The crowded environment of biological systems such as the interior of living cells is occupied by ma...
The crowded environment of biological systems such as the interior of living cells is occupied by ma...
AbstractAs a model for understanding how molecular crowding influences diffusion and transport of pr...
Colloidal particles are model systems for a wide range of phenomena on mesoscopic length scales from...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
The interior of living cells is a dense and polydisperse suspension of macromolecules. Such a comple...
Macromolecular crowding in biological media is an essential factor for cellular function. The interp...
The crowded environment of biological systems such as the interior of living cells is occupied by ma...
AbstractWe have studied the diffusion of tracer proteins in highly concentrated random-coil polymer ...
International audienceThe crowded environment of biological systems such as the interior of living c...
The crowded environment of biological systems such as the interior of living cells is occupied by ma...
The crowded environment of biological systems such as the interior of living cells is occupied by ma...
AbstractAs a model for understanding how molecular crowding influences diffusion and transport of pr...
Colloidal particles are model systems for a wide range of phenomena on mesoscopic length scales from...