Integration of experimental studies with mathematical modeling allows insight into systems properties, prediction of perturbation effects and generation of hypotheses for further research. We present a comprehensive mathematical description of the cellular response of yeast to hyperosmotic shock. The model integrates a biochemical reaction network comprising receptor stimulation, mitogen-activated protein kinase cascade dynamics, activation of gene expression and adaptation of cellular metabolism with a thermodynamic description of volume regulation and osmotic pressure. Simulations agree well with experimental results obtained under different stress conditions or with specific mutants. The model is predictive since it suggests previously u...
Adaptation is an important property of living organisms enabling them to cope with environmental str...
Background Yeast cells live in a highly fluctuating environment with respect to temperature, nutrien...
Osmoregulation encompasses active homeostatic processes that ensure proper cell volume, shape and tu...
Integration of experimental studies with mathematical modeling allows insight into systems propertie...
Integration of experimental studies with mathematical modeling allows insight into systems propertie...
We present a simple ordinary differential equation (ODE) model of the adaptive response to an osmoti...
Yeast is used as a model system to study the molecular biology, the physiology and the dynamics of c...
Osmoregulation is the active control of the cellular water balance and encompasses homeostatic mecha...
Yeast is used as a model system to study the molecular biology, the physiology and the dynamics of c...
We review the proposed mathematical models of the response to osmotic stress in yeast. These models ...
Molecular and physiological details of osmoadaptation in yeast Saccharomyces cerevisiae are well cha...
Mathematical modeling has become an important tool in biological research, which is reflected in the...
Yeast cells live in a highly fluctuating environment with respect to temperature, nutrients, and esp...
AbstractIn this paper we demonstrate how Morven, a computational framework which can perform qualita...
<p>(A) Schematic depiction of the osmosensing response. After an osmotic stress, the external osmoti...
Adaptation is an important property of living organisms enabling them to cope with environmental str...
Background Yeast cells live in a highly fluctuating environment with respect to temperature, nutrien...
Osmoregulation encompasses active homeostatic processes that ensure proper cell volume, shape and tu...
Integration of experimental studies with mathematical modeling allows insight into systems propertie...
Integration of experimental studies with mathematical modeling allows insight into systems propertie...
We present a simple ordinary differential equation (ODE) model of the adaptive response to an osmoti...
Yeast is used as a model system to study the molecular biology, the physiology and the dynamics of c...
Osmoregulation is the active control of the cellular water balance and encompasses homeostatic mecha...
Yeast is used as a model system to study the molecular biology, the physiology and the dynamics of c...
We review the proposed mathematical models of the response to osmotic stress in yeast. These models ...
Molecular and physiological details of osmoadaptation in yeast Saccharomyces cerevisiae are well cha...
Mathematical modeling has become an important tool in biological research, which is reflected in the...
Yeast cells live in a highly fluctuating environment with respect to temperature, nutrients, and esp...
AbstractIn this paper we demonstrate how Morven, a computational framework which can perform qualita...
<p>(A) Schematic depiction of the osmosensing response. After an osmotic stress, the external osmoti...
Adaptation is an important property of living organisms enabling them to cope with environmental str...
Background Yeast cells live in a highly fluctuating environment with respect to temperature, nutrien...
Osmoregulation encompasses active homeostatic processes that ensure proper cell volume, shape and tu...