Molecular signalling in living cells occurs at low copy numbers and is thereby inherently limited by the noise imposed by thermal diffusion. The precision at which biochemical receptors can count signalling molecules is intimately related to the noise correlation time. In addition to passive thermal diffusion, messenger RNA and vesicle-engulfed signalling molecules can transiently bind to molecular motors and are actively transported across biological cells. Active transport is most beneficial when trafficking occurs over large distances, for instance up to the order of 1 metre in neurons. Here we explain how intermittent active transport allows for faster equilibration upon a change in concentration triggered by biochemical stimuli. Moreov...
Many crucial biological processes operate with surprisingly small numbers of molecules, and there is...
Chemotaxis, or directed motion in chemical gradients, is critical for various biological processes. ...
Rapid communication in the brain relies on the release and diffusion of small transmitter molecules ...
Molecular signalling in living cells occurs at low copy numbers and is thereby inherently limited by...
The accuracy of molecular signaling in biological cells and novel diagnostic devices is ultimately l...
In recent years experiments have demonstrated that living cells can measure low chemical concentrati...
All substances exhibit constant random motion at the microscopic scale. This is a direct consequence...
International audienceNoise affects all biological processes from molecules to cells, organisms and ...
Chemotaxis, the migration of cells in the direction of a chemical gradient, is of utmost importance ...
<div><p>Chemotaxis, the migration of cells in the direction of a chemical gradient, is of utmost imp...
AbstractJuxtacrine signaling is an important class of signaling systems that plays a crucial role in...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
Molecular systems are inherently probabilistic and operate in a noisy environment, yet, despite all ...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
The development of the nervous system requires nerve fibres to be guided accurately over long distan...
Many crucial biological processes operate with surprisingly small numbers of molecules, and there is...
Chemotaxis, or directed motion in chemical gradients, is critical for various biological processes. ...
Rapid communication in the brain relies on the release and diffusion of small transmitter molecules ...
Molecular signalling in living cells occurs at low copy numbers and is thereby inherently limited by...
The accuracy of molecular signaling in biological cells and novel diagnostic devices is ultimately l...
In recent years experiments have demonstrated that living cells can measure low chemical concentrati...
All substances exhibit constant random motion at the microscopic scale. This is a direct consequence...
International audienceNoise affects all biological processes from molecules to cells, organisms and ...
Chemotaxis, the migration of cells in the direction of a chemical gradient, is of utmost importance ...
<div><p>Chemotaxis, the migration of cells in the direction of a chemical gradient, is of utmost imp...
AbstractJuxtacrine signaling is an important class of signaling systems that plays a crucial role in...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
Molecular systems are inherently probabilistic and operate in a noisy environment, yet, despite all ...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
The development of the nervous system requires nerve fibres to be guided accurately over long distan...
Many crucial biological processes operate with surprisingly small numbers of molecules, and there is...
Chemotaxis, or directed motion in chemical gradients, is critical for various biological processes. ...
Rapid communication in the brain relies on the release and diffusion of small transmitter molecules ...