<div><p>All eukaryotes have the ability to detect and respond to environmental and hormonal signals. In many cases these signals evoke cellular changes that are incompatible and must therefore be orchestrated by the responding cell. In the yeast <em>Saccharomyces cerevisiae</em>, hyperosmotic stress and mating pheromones initiate signaling cascades that each terminate with a MAP kinase, Hog1 and Fus3, respectively. Despite sharing components, these pathways are initiated by distinct inputs and produce distinct cellular behaviors. To understand how these responses are coordinated, we monitored the pheromone response during hyperosmotic conditions. We show that hyperosmotic stress limits pheromone signaling in at least three ways. First, stre...
Signal transduction pathways are the cellular information routes with which cells monitor their surr...
Eukaryotes utilize distinct mitogen/messenger-activated protein kinase (MAPK) pathways to evoke appr...
Eukaryotes utilize distinct mitogen/messenger-activated protein kinase (MAPK) pathways to evoke appr...
All eukaryotes have the ability to detect and respond to environmental and hormonal signals. In many...
All eukaryotes have the ability to detect and respond to environmental and hormonal signals. In many...
All eukaryotes have the ability to detect and respond to environmental and hormonal signals. In many...
Budding yeast, Saccharomyces cerevisiae, has been widely used as a model system to study cellular si...
Environmental and internal conditions expose cells to a multiplicity of stimuli whose consequences a...
The assembly of signaling components and transcription factors in ordered subcellular structures is ...
SummaryThe assembly of signaling components and transcription factors in ordered subcellular structu...
Cells detect and respond to a wide diversity of environmental signals. These signals commonly stimul...
Cells continuously adapt cellular processes by integrating external and internal signals. In yeast, ...
An appropriate response and adaptation to hyperosmolarity, i.e., an external osmolarity that is high...
An appropriate response and adaptation to hyperosmolarity, i.e., an external osmolarity that is high...
Cells continuously adapt cellular processes by integrating external and internal signals. In yeast, ...
Signal transduction pathways are the cellular information routes with which cells monitor their surr...
Eukaryotes utilize distinct mitogen/messenger-activated protein kinase (MAPK) pathways to evoke appr...
Eukaryotes utilize distinct mitogen/messenger-activated protein kinase (MAPK) pathways to evoke appr...
All eukaryotes have the ability to detect and respond to environmental and hormonal signals. In many...
All eukaryotes have the ability to detect and respond to environmental and hormonal signals. In many...
All eukaryotes have the ability to detect and respond to environmental and hormonal signals. In many...
Budding yeast, Saccharomyces cerevisiae, has been widely used as a model system to study cellular si...
Environmental and internal conditions expose cells to a multiplicity of stimuli whose consequences a...
The assembly of signaling components and transcription factors in ordered subcellular structures is ...
SummaryThe assembly of signaling components and transcription factors in ordered subcellular structu...
Cells detect and respond to a wide diversity of environmental signals. These signals commonly stimul...
Cells continuously adapt cellular processes by integrating external and internal signals. In yeast, ...
An appropriate response and adaptation to hyperosmolarity, i.e., an external osmolarity that is high...
An appropriate response and adaptation to hyperosmolarity, i.e., an external osmolarity that is high...
Cells continuously adapt cellular processes by integrating external and internal signals. In yeast, ...
Signal transduction pathways are the cellular information routes with which cells monitor their surr...
Eukaryotes utilize distinct mitogen/messenger-activated protein kinase (MAPK) pathways to evoke appr...
Eukaryotes utilize distinct mitogen/messenger-activated protein kinase (MAPK) pathways to evoke appr...