Cellular signaling systems show astonishing precision in their response to external stimuli despite strong fluctuations in the molecular components that determine pathway activity. To control the effects of noise on signaling most efficiently, living cells employ compensatory mechanisms that reach from simple negative feedback loops to robustly designed signaling architectures. Here, we report on a novel control mechanism that allows living cells to keep precision in their signaling characteristics - stationary pathway output, response amplitude, and relaxation time - in the presence of strong intracellular perturbations. The concept relies on the surprising fact that for systems showing perfect adaptation an exponential signal amplificatio...
In many sensory systems, transmembrane receptors are spatially organized in large clusters. Such arr...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...
Cellular signaling systems show astonishing precision in their response to external stimuli despite ...
Cellular signaling systems show astonishing precision in their response to external stimuli despite ...
Two distinct mechanisms for filtering noise in an input signal are identified in a class of adaptive...
Biological systems are exposed to various perturbations that affect performance of the cellular netw...
Cellular biochemical networks have to function in a noisy environment using imperfect components. In...
<div><p>In many sensory systems, transmembrane receptors are spatially organized in large clusters. ...
Cellular signaling networks have evolved an astonishing ability to function reliably and with high f...
The Escherichia coli chemotaxis-signaling pathway computes time derivatives of chemoeffector concent...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
AbstractSingle-molecule imaging analysis of chemotactic response in eukaryotic cells has revealed a ...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
In many sensory systems, transmembrane receptors are spatially organized in large clusters. Such arr...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...
Cellular signaling systems show astonishing precision in their response to external stimuli despite ...
Cellular signaling systems show astonishing precision in their response to external stimuli despite ...
Two distinct mechanisms for filtering noise in an input signal are identified in a class of adaptive...
Biological systems are exposed to various perturbations that affect performance of the cellular netw...
Cellular biochemical networks have to function in a noisy environment using imperfect components. In...
<div><p>In many sensory systems, transmembrane receptors are spatially organized in large clusters. ...
Cellular signaling networks have evolved an astonishing ability to function reliably and with high f...
The Escherichia coli chemotaxis-signaling pathway computes time derivatives of chemoeffector concent...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
AbstractSingle-molecule imaging analysis of chemotactic response in eukaryotic cells has revealed a ...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
In many sensory systems, transmembrane receptors are spatially organized in large clusters. Such arr...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...