Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell adaptation to extracellular stimuli. Exposure of yeast to osmostress leads to activation of the Hog1 SAPK, which controls cell cycle at G1 by the targeting of Sic1. Here, we show that survival to osmostress also requires regulation of G2 progression. Activated Hog1 interacts and directly phosphorylates a residue within the Hsl7-docking site of the Hsl1 checkpoint kinase, which results in delocalization of Hsl7 from the septin ring and leads to Swe1 accumulation. Upon Hog1 activation, cells containing a nonphosphorylatable Hsl1 by Hog1 are unable to promote Hsl7 delocalization, fail to arrest at G2 and become sensitive to osmostress. Together,...
Upon exposure to environmental stressors, cells transiently arrest the cell cycle while they adapt a...
Cells trigger massive changes in gene expression upon environmental fluctuations. The Hog1 stress-ac...
The HOG/p38 MAP kinase route is an important stress-activated signal transduction pathway that is we...
Exposure of yeast to increases in extracellular osmolarity activates the stress-activated Hog1 MAP k...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Mitogen-activated protein kinases (MAPKs) have a number of targets which they regulate at transcript...
During evolution, cells have developed a plethora of mechanisms to optimize survival in a changing a...
AbstractThe yeast HOG pathway is activated in response to increased osmolarity and affects many cell...
Adaptation to environmental changes is crucial for cell fitness. In Saccharomyces cerevisiae, variat...
For efficient transcription, RNA PolII must overcome the presence of nucleosomes. The p38-related MA...
Control of cell cycle by Stress Activated Protein Kinases (SAPKs) is an essential aspect for adaptat...
Many different signaling pathways share common components but nevertheless invoke distinct physiolog...
Yeast cells are exposed to a wide variety of environment stresses, among them changes in the osmotic...
Upon exposure to environmental stressors, cells transiently arrest the cell cycle while they adapt a...
Cells trigger massive changes in gene expression upon environmental fluctuations. The Hog1 stress-ac...
The HOG/p38 MAP kinase route is an important stress-activated signal transduction pathway that is we...
Exposure of yeast to increases in extracellular osmolarity activates the stress-activated Hog1 MAP k...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Mitogen-activated protein kinases (MAPKs) have a number of targets which they regulate at transcript...
During evolution, cells have developed a plethora of mechanisms to optimize survival in a changing a...
AbstractThe yeast HOG pathway is activated in response to increased osmolarity and affects many cell...
Adaptation to environmental changes is crucial for cell fitness. In Saccharomyces cerevisiae, variat...
For efficient transcription, RNA PolII must overcome the presence of nucleosomes. The p38-related MA...
Control of cell cycle by Stress Activated Protein Kinases (SAPKs) is an essential aspect for adaptat...
Many different signaling pathways share common components but nevertheless invoke distinct physiolog...
Yeast cells are exposed to a wide variety of environment stresses, among them changes in the osmotic...
Upon exposure to environmental stressors, cells transiently arrest the cell cycle while they adapt a...
Cells trigger massive changes in gene expression upon environmental fluctuations. The Hog1 stress-ac...
The HOG/p38 MAP kinase route is an important stress-activated signal transduction pathway that is we...