Mitogen-activated protein kinases (MAPKs) have a number of targets which they regulate at transcriptional and post-translational levels to mediate specific responses. The yeast Hog1 MAPK is essential for cell survival under hyperosmotic conditions and it plays multiple roles in gene expression, metabolic regulation, signal fidelity and cell cycle regulation. Here we describe essential and non-essential roles of Hog1 using engineered yeast cells in which osmoadaptation was reconstituted in a Hog1-independent manner. We rewired Hog1-dependent osmotic stress-induced gene expression under the control of Fus3/Kss1 MAPKs, which are activated upon osmostress via crosstalk in hog1Δ cells. This approach revealed that osmotic up-regulation of only tw...
AbstractSignal transduction pathways control cellular responses to extrinsic and intrinsic signals. ...
The yeast high osmolarity glycerol (HOG) signaling pathway can be activated by either of the two ups...
The yeast Hog1 is a stress responsive mitogen activated protein kinase (MAPK) similar to mammalian p...
Yeast cells are exposed to a wide variety of environment stresses, among them changes in the osmotic...
THE ROLE OF HOG MAPK SIGNALING PATHWAY DURING OSMOTIC STRESS IN SACCHAROMYCES CEREVISIAE Budding yea...
Multiple mitogen-activated protein kinases (MAPKs) enable eukaryotic cells to evoke an appropriate r...
AbstractThe yeast HOG pathway is activated in response to increased osmolarity and affects many cell...
The HOG/p38 MAP kinase route is an important stress-activated signal transduction pathway that is we...
Many different signaling pathways share common components but nevertheless invoke distinct physiolog...
Mitogen Activated Protein Kinase (MAPK) cascades are frequently used signal transduction mechanisms ...
Exposure of yeast to increases in extracellular osmolarity activates the stress-activated Hog1 MAP k...
Background Yeast cells live in a highly fluctuating environment with respect to temperature, nutrien...
AbstractUsing a chemical genetic approach, we identified four novel physiological substrates of Hog1...
Osmoregulation encompasses active homeostatic processes that ensure proper cell volume, shape and tu...
In response to high extracellular salt levels, Saccharomyces cerevisiae activates the HOG1 mitogen-a...
AbstractSignal transduction pathways control cellular responses to extrinsic and intrinsic signals. ...
The yeast high osmolarity glycerol (HOG) signaling pathway can be activated by either of the two ups...
The yeast Hog1 is a stress responsive mitogen activated protein kinase (MAPK) similar to mammalian p...
Yeast cells are exposed to a wide variety of environment stresses, among them changes in the osmotic...
THE ROLE OF HOG MAPK SIGNALING PATHWAY DURING OSMOTIC STRESS IN SACCHAROMYCES CEREVISIAE Budding yea...
Multiple mitogen-activated protein kinases (MAPKs) enable eukaryotic cells to evoke an appropriate r...
AbstractThe yeast HOG pathway is activated in response to increased osmolarity and affects many cell...
The HOG/p38 MAP kinase route is an important stress-activated signal transduction pathway that is we...
Many different signaling pathways share common components but nevertheless invoke distinct physiolog...
Mitogen Activated Protein Kinase (MAPK) cascades are frequently used signal transduction mechanisms ...
Exposure of yeast to increases in extracellular osmolarity activates the stress-activated Hog1 MAP k...
Background Yeast cells live in a highly fluctuating environment with respect to temperature, nutrien...
AbstractUsing a chemical genetic approach, we identified four novel physiological substrates of Hog1...
Osmoregulation encompasses active homeostatic processes that ensure proper cell volume, shape and tu...
In response to high extracellular salt levels, Saccharomyces cerevisiae activates the HOG1 mitogen-a...
AbstractSignal transduction pathways control cellular responses to extrinsic and intrinsic signals. ...
The yeast high osmolarity glycerol (HOG) signaling pathway can be activated by either of the two ups...
The yeast Hog1 is a stress responsive mitogen activated protein kinase (MAPK) similar to mammalian p...