Cells localize (polarize) internal components to specific locations in response to external signals such as spatial gradients. For example, yeast cells form a mating projection toward the source of mating pheromone. There are specific challenges associated with cell polarization including amplification of shallow external gradients of ligand to produce steep internal gradients of protein components (e.g. localized distribution), response over a broad range of ligand concentrations, and tracking of moving signal sources. In this work, we investigated the tradeoffs among these performance objectives using a generic model that captures the basic spatial dynamics of polarization in yeast cells, which are small. We varied the positive feedback, ...
Cell polarity is the asymmetric distribution of cellular components and molecules. It is crucially i...
Yeast cells form a single mating projection when exposed to mating pheromone, a classic example of c...
Systems biology has grown immensely in the wake of human genome project. In recent years, there has ...
Cells localize (polarize) internal components to specific locations in response to external signals ...
Cells localize (polarize) internal components to specific locations in response to external signals ...
Cells localize (polarize) internal components to specific locations in response to external signals ...
Cells localize (polarize) internal components to specific locations in response to external signals ...
Yeast cells respond to spatial gradients of mating pheromones by polarizing and pro-jecting up the g...
We have developed a spatial stochastic model of polarisome formation in mating yeast, focusing on th...
Abstract Background Cells sense chemical spatial gradients and respond by polarizing internal compon...
Projecting or moving up a chemical gradient is a universal behavior of living organisms. We tested t...
Projecting or moving up a chemical gradient is a universal behavior of living organisms. We tested t...
Budding yeast cells exist in two mating types, a and α, which use peptide pheromones to communicate ...
Projecting or moving up a chemical gradient is a universal behavior of living organisms. We tested t...
International audienceBudding yeast cells exist in two mating types, a and α, which use peptide pher...
Cell polarity is the asymmetric distribution of cellular components and molecules. It is crucially i...
Yeast cells form a single mating projection when exposed to mating pheromone, a classic example of c...
Systems biology has grown immensely in the wake of human genome project. In recent years, there has ...
Cells localize (polarize) internal components to specific locations in response to external signals ...
Cells localize (polarize) internal components to specific locations in response to external signals ...
Cells localize (polarize) internal components to specific locations in response to external signals ...
Cells localize (polarize) internal components to specific locations in response to external signals ...
Yeast cells respond to spatial gradients of mating pheromones by polarizing and pro-jecting up the g...
We have developed a spatial stochastic model of polarisome formation in mating yeast, focusing on th...
Abstract Background Cells sense chemical spatial gradients and respond by polarizing internal compon...
Projecting or moving up a chemical gradient is a universal behavior of living organisms. We tested t...
Projecting or moving up a chemical gradient is a universal behavior of living organisms. We tested t...
Budding yeast cells exist in two mating types, a and α, which use peptide pheromones to communicate ...
Projecting or moving up a chemical gradient is a universal behavior of living organisms. We tested t...
International audienceBudding yeast cells exist in two mating types, a and α, which use peptide pher...
Cell polarity is the asymmetric distribution of cellular components and molecules. It is crucially i...
Yeast cells form a single mating projection when exposed to mating pheromone, a classic example of c...
Systems biology has grown immensely in the wake of human genome project. In recent years, there has ...